EP1516053A2

Xylanases, nucleic adics encoding them and methods for making and using them

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 16 June 2023, 3.3 years ago.

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  5. Today

215 claims: 17 independent, 198 dependent

  1. 1
    Claims of equivalent WO 03106654 A2 WHAT IS CLAIMED IS:1. An isolated or recombinant nucleic acid comprising a nucleic acid sequence having at least 50% sequence identity to SEQ ED NOT, SEQ BD NO:3, SEQ BD NO:5, SEQ ED NO:7, SEQ BD NO:9, SEQ ED NOT 1, SEQ ED NOT3, SEQ ED NOT5, SEQ ED NOT7, SEQ BD NOT9, SEQ BD NO:21, SEQ ID NO:23, SEQ ED NO:25, SEQ BD NO:27, SEQ ED NO:29, SEQ ED NO:31, SEQ BD NO:33, SEQ BD NO:35, SEQ ED NO:37, SEQ BD NO:39, SEQ ED NO:41, SEQ ED NO:43, SEQ BD NO:45, SEQ ED NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ ED NO:53, SEQ BD NO:55, SEQ BD NO:57, SEQ BD NO:59, SEQ ED NO:61, SEQ ED NO:63, SEQ ED NO:65, SEQ BD NO:67, SEQ ED NO:69, SEQ BD NO:71, SEQ ED NO:73, SEQ ED NO:75, SEQ ED NO:77, SEQ BD NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ ED NO:87, SEQ ED NO:89, SEQ ED NO:91, SEQ ED NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ BD NO:99, SEQ ED NOT01, SEQ ID NOT03, SEQ ED NOT05, SEQ BD NOT07, SEQ ED NOT09, SEQ ED NOT11, SEQ ED NOT13, SEQ ED NOT15, SEQ ED NOT 17, SEQ BD NOT19, SEQ BD NOT21, SEQ ID NOT23, SEQ BD NOT25, SEQ BD NOT27, SEQ BD NOT29, SEQ ED NOT31, SEQ ED NOT33, SEQ ED NOT35, SEQ ED NOT37, SEQ ED NOT39, SEQ ID NOT41, SEQ ED NOT43, SEQ ID NOT45, SEQ BD NOT47, SEQ BD NOT49, SEQ ED NOT51, SEQ ED NOT53, SEQ ED NOT55, SEQ ED NOT57, SEQ BD NOT99, SEQ ID NOT61, SEQ BD NOT63, SEQ BD NOT65, SEQ BD NOT67, SEQ ED NOT69, SEQ ED NOT71, SEQ ED NOT73, SEQ ED NOT75, SEQ ED NOT77, SEQ BD NOT79, SEQ ED NOT81, SEQ BD NOT83, SEQ BD NOT85, SEQ ED NOT87, SEQ BD NOT89, SEQ ED NOT91, SEQ ED NOT93, SEQ ED NOT95, SEQ BD NOT97, SEQ ED NOT99, SEQ ED NO:201, SEQ BD NO:203, SEQ BD NO:205, SEQ ED NO:207, SEQ ED NO:209, SEQ BD NO:211, SEQ ED NO:213, SEQ ED NO:215, SEQ BD NO:217, SEQ BD NO:219, SEQ ED NO:221, SEQ ED NO:223, SEQ ED NO:225, SEQ BD NO:227, SEQ BD NO:229, SEQ ED NO:231, SEQ ED NO:233, SEQ ED NO:235, SEQ ED NO:237, SEQ ED NO:239, SEQ ED NO:241, SEQ BD NO:243, SEQ BD NO:245, SEQ BD NO:247, SEQ ED NO:249, SEQ ED NO:251, SEQ BD NO:253, SEQ ED NO:255, SEQ BD NO:257, SEQ ED NO:259, SEQ BD NO:261, SEQ ED NO:263, SEQ ED NO:265, SEQ ED NO:267, SEQ ED NO:269, SEQ ED NO:271, SEQ BD NO:273, SEQ ED NO:275, SEQ ED NO:277, SEQ ED NO:279, SEQ BD NO:281, SEQ BD NO:283, SEQ BD NO:285, SEQ ED NO:287, SEQ ED NO:289, SEQ ED NO:291, SEQ ED NO:293, SEQ ED NO:295, SEQ BD NO:297, SEQ ED NO:299, SEQ BD NO:301, SEQ BD NO:303, SEQ BD NO:305, SEQ ED NO:307, SEQ ED NO:309, SEQ ED NO.311, SEQ BD NO:313, SEQ ED NO:315, SEQ ED NO:317, SEQ ED NO:319, SEQ ED NO:321, SEQ ED NO.323, SEQ BD NO:325, SEQ ED NO:327, SEQ ED NO:329, SEQ ED NO-331, SEQ BD NO:333, SEQ ED NO:335, SEQ ED NO:337, SEQ ED NO:339, SEQ BD NO:341, SEQ ED NO:343, SEQ ED NO:345, SEQ ED NO:347, SEQ ED NO:349, SEQ BD NO:351, SEQ ED NO:353, SEQ ED NO:355, SEQ ED NO:357, SEQ ED NO:359, SEQ ED NO:361, SEQ ED NO:363, SEQ BD NO:365, SEQ BD NO:367, SEQ BD NO:369, SEQ ED NO:371, SEQ ED NO:373, SEQ ED NO:375, SEQ ED NO:377 or SEQ BD NO:379, over a region of at least about 100 residues, wherein the nucleic acid encodes at least one polypeptide having a xylanase activity, and the sequence identities are determined by analysis with a sequence comparison algorithm or by a visual inspection.
  2. 24
    An isolated or recombinant nucleic acid, wherein the nucleic acid comprises a sequence that hybridizes under stringent conditions to a nucleic acid comprising SEQ BD NOT, SEQ ED NO:3, SEQ ED NO:5, SEQ BD NO:7, SEQ ED NO:9, SEQ ID NOT 1, SEQ ED NO13, SEQ BD NO15, SEQ ED NOT7, SEQ ED NOT9, SEQ ED NO:21, SEQ ED NO:23, SEQ ED NO:25, SEQ ED NO:27, SEQ ED NO:29, SEQ ED NO:31, SEQ ED NO:33, SEQ BD NO:35, SEQ BD NO:37, SEQ ED NO:39, SEQ BD NO:41, SEQ ED NO:43, SEQ ED NO:45, SEQ BD NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ ED NO:53, SEQ BD NO:55, SEQ ED NO:57, SEQ ED NO:59, SEQ ED NO:61, SEQ ED NO:63, SEQ ED NO:65, SEQ ED NO:67, SEQ ED NO:69, SEQ ED NO:71, SEQ ED NO:73, SEQ ED NO:75, SEQ ED NO:77, SEQ ED NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ ED NO:87, SEQ BD NO:89, SEQ ED NO:91, SEQ ED NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ ED NOT01, SEQ ED NOT03, SEQ ED NOT05, SEQ ED NOT07, SEQ ED NOT09, SEQED NOT11 SEQ ID NO 113, SEQBDNO: 115, SEQ ED NO117, SEQ ED NOT 19, SEQED NOT21 SEQ ED NO 123, SEQBDNO: 125, SEQ ED NO127, SEQ ED NO: 129, SEQED NOT31 SEQ ID NO 133, SEQ ID NO: 135, SEQ ED NO: 137, SEQ ID NOT 39, SEQED NOT41 SEQ ID NO 143, SEQBDNO: 145, SEQ BD NO147, SEQ ED NO: 149, SEQED NOT51 SEQ ID NO 153, SEQBDNO: 155, SEQ ED NO: 157, SEQEDNOT99, SEQED NOT61 SEQ ID NO 163, SEQBDNO: 165, SEQ ED NO: 167, SEQ ED NOT 69, SEQED NOT71 SEQ ID NO 173, SEQBDNO: 175, SEQ ED NO: 177, SEQEDNOT79, SEQED NOT81 SEQ ED NO 183, SEQBDNO: 185, SEQBD NO187, SEQBD NOT 89, SEQED NOT91 SEQ ID NO 193, SEQ ED NO: 195, SEQ ED NO197, SEQEDNOT99, SEQED NO:201 SEQ ID NO :203, SEQBDNO: 205, SEQ ED NO:207, SEQ ED NO:209, SEQED NO:211 SEQ ED NO :213, SEQBDNO: 215, SEQ ED NO:217, SEQEDNO-219, SEQED NO:221 SEQ ID NO :223, SEQ ED NO: 225, SEQ ED NO:227, SEQ ED NO:229, SEQED NO:231 SEQ ID NO :233, SEQ BD NO: 235, SEQ ED NO:237, SEQ ED NO:239, SEQBD NO:241 SEQ ID NO :243, SEQBDNO: 245, SEQ ED NO:247, SEQ ED NO:249, SEQED NO:251 SEQ ID NO :253, SEQ ED NO: 255, SEQ ED NO:257, SEQ ED NO:259, SEQED NO:261 SEQ ID NO :263, SEQ ED NO: 265, SEQ ED NO:267, SEQ ED NO:269, SEQED NO:271 SEQ ID NO :273, SEQ ED NO: 275, SEQ ED NO:277, SEQ ED NO:279, SEQED NO:281 SEQ ID NO :283, SEQ ED NO: 285, SEQ ED NO:287, SEQ ED NO:289, SEQED NO:291 SEQ ED NO :293, SEQ ED NO: 295, SEQ ED NO:297, SEQ ED NO:299, SEQED NO:301 SEQ ID NO :303, SEQ ED NO: 305, SEQ ED NO:307, SEQ ED NO:309, SEQED NO:311 SEQ ED NO :313,SEQEDNO: 315, SEQBD NO.317, SEQEDNO:319, SEQED NO:321 SEQ ID NO :323, SEQ ED NO: 325, SEQ ED NO:327, SEQ BD NO:329, SEQ BD NO:331, SEQ ID NO:333, SEQ BD NO:335, SEQ ED NO:337, SEQ ED NO:339, SEQ ED NO:341, SEQ ID NO:343, SEQ ED NO:345, SEQ ED NO:347, SEQ ED NO:349, SEQ ED NO:351, SEQ ID NO:353, SEQ ED NO:355, SEQ ED NO:357, SEQ ED NO:359, SEQ ED NO:361, SEQ ID NO:363, SEQ ED NO:365, SEQ BD NO:367, SEQ ED NO:369, SEQ ED NO:371, SEQ ID NO:373, SEQ BD NO:375, SEQ ED NO:377 or SEQ ED NO:379, wherein the nucleic acid encodes a polypeptide having a xylanase activity.
  3. 27
    A nucleic acid probe for identifying a nucleic acid encoding a polypeptide with a xylanase activity, wherein the probe comprises at least 10 consecutive bases of a sequence comprising SEQ ED NOT, SEQ ED NO:3, SEQ BD NO:5, SEQ ED NO:7, SEQ ED NO:9, SEQ ED NOT1, SEQ ED NOT3, SEQ ED NOT5, SEQ ED NO17, SEQ ED NO19, SEQ ED NO:21, SEQ ED NO:23, SEQ ED NO:25, SEQ BD NO:27, SEQ ED NO:29, SEQ ED NO:31, SEQ BD NO:33, SEQ ED NO:35, SEQ ED NO:37, SEQ ED NO:39, SEQ ED NO:41, SEQ ED NO:43, SEQ ED NO:45, SEQ ED NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ ED NO:53, SEQ ED NO:55, SEQ ED NO:57, SEQ ED NO:59, SEQ ED NO:61, SEQ BD NO:63, SEQ ED NO:65, SEQ BD NO:67, SEQ ED NO:69, SEQ ED NO:71, SEQ ED NO:73, SEQ ED NO:75, SEQ ED NO:77, SEQ ED NO:79, SEQ BD NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ ED NO:87, SEQ ED NO:89, SEQ ED NO:91, SEQ ED NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ ED NO101, SEQ ED NO103, SEQ ED NO105, SEQ ED NO107, SEQ ED NO109, SEQ ED NO111, SEQ ED NO113, SEQ ED NO115, SEQ ED NOT17, SEQ BD NOT19, SEQ ED NOT21, SEQ ED NOT23, SEQ ED NOT25, SEQ ED NOT27, SEQ ED NOT29, SEQ BD NOT31, SEQ ED NOT33, SEQ ED NOT35, SEQ ED NOT37, SEQ ED NOT39, SEQ ED NOT41, SEQ ED NOT43, SEQ ED NOT45, SEQ ED NOT47, SEQ BD NOT49, SEQ ED NOT51, SEQ ED NOT53, SEQ ED NOT55, SEQ ED NOT57, SEQ BD NOT99, SEQ BD NOT61, SEQ ED NOT63, SEQ ED NOT65, SEQ ID NOT67, SEQ ED NOT69, SEQ ED NOT71, SEQ ED NOT73, SEQ ED NOT75, SEQ BD NOT77, SEQ ED NOT79, SEQ ED NOT81, SEQ ED NO183, SEQ ED NO185, SEQ ED NO187, SEQ ED NO189, SEQ ED NO191, SEQ ED NO193, SEQ BD NO195, SEQ ED NO197, SEQ ED NO199, SEQ ED NO:201, SEQ ED NO:203, SEQ ED NO:205, SEQ ED NO:207, SEQ ED NO:209, SEQ ED NO:211, SEQ ED NO:213, SEQ ED NO:215, SEQ ED NO:217, SEQ ED NO:219, SEQ ED NO-221, SEQ ED NO:223, SEQ ED NO:225, SEQ ED NO:227, SEQ ED NO:229, SEQ ED NO-231, SEQ ED NO:233, SEQ ED NO:235, SEQ ED NO:237, SEQ ED NO:239, SEQ BD NO-241, SEQ ED NO:243, SEQ ED NO:245, SEQ ED NO:247, SEQ ED NO:249, SEQ BD NO.251, SEQ ED NO:253, SEQ ED NO:255, SEQ BD NO:257, SEQ ED NO:259, SEQ BD NO-261, SEQ ED NO:263, SEQ ED NO:265, SEQ ED NO:267, SEQ ED NO:269, SEQ ED NO-271, SEQ ED NO:273, SEQ ED NO:275, SEQ ED NO:277, SEQ ED NO:279, SEQ ED NO.281, SEQ BD NO:283, SEQ ID NO:285, SEQ ED NO:287, SEQ ED NO:289, SEQ ED NO.291, SEQ ED NO:293, SEQ ED NO:295, SEQ ED NO:297, SEQ ED NO:299, SEQ ED NO-301, SEQ ED NO:303, SEQ ED NO:305, SEQ ED NO:307, SEQ ED NO:309, SEQ ED NO.311, SEQ ED NO:313, SEQ BD NO:315, SEQ ED NO.317, SEQ ED NO:319, SEQ ED NO-321, SEQ ED NO:323, SEQ ED NO:325, SEQ ED NO:327, SEQ ED NO:329, SEQ BD NO.331, SEQ ED NO:333, SEQ ID NO:335, SEQ ED NO:337, SEQ ED NO:339, SEQ ED NO:341, SEQ ED NO:343, SEQ ED NO:345, SEQ ED NO:347, SEQ ED NO:349, SEQ ED NO.351, SEQ ED NO:353, SEQ ED NO:355, SEQ ED NO:357, SEQ ED NO:359, SEQ ED NO:361, SEQ ED NO:363, SEQ ED NO:365, SEQ ED NO:367, SEQ ED NO:369, SEQ ED NO:371, SEQ ED NO:373, SEQ ED NO:375, SEQ ED NO:377 or SEQ ED NO:379, wherein the probe identifies the nucleic acid by binding or hybridization.
  4. 29
    A nucleic acid probe for identifying a nucleic acid encoding a polypeptide having a xylanase activity, wherein the probe comprises a nucleic acid comprising at least about 10 consecutive residues of a nucleic acid sequence having at least 50% sequence identity to SEQ ED NOT, SEQ ED NO:3, SEQ ED NO:5, SEQ ED NO:7, SEQ ED NO:9, SEQ ED NO11, SEQ ED NO13, SEQ ED NO15, SEQ BD NOT7, SEQ ED NOT9, SEQ ED NO:21, SEQ ED NO:23, SEQ ED NO:25, SEQ ED NO:27, SEQ ED NO:29, SEQ ED NO:31, SEQ ED NO:33, SEQ ED NO:35, SEQ ED NO:37, SEQ ED NO:39, SEQ ED NO:41, SEQ ED NO:43, SEQ ED NO:45, SEQ ED NO:47, SEQ ED NO:49, SEQ BD NO:51, SEQ ED NO:53, SEQ ED NO:55, SEQ BD NO:57, SEQ ED NO:59, SEQ ED NO:61, SEQ ED NO:63, SEQ BD NO:65, SEQ ED NO:67, SEQ ED NO:69, SEQ ED NO:71, SEQ ED NO:73, SEQ BD NO:75, SEQ ED NO:77, SEQ BD NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ BD NO:87, SEQ ED NO:89, SEQ ED NO:91, SEQ ED NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ ED NO101, SEQ ID NO103, SEQ ED NO105, SEQ ED NO107, SEQ ED NO109, SEQ ED NO111, SEQ ED NO113, SEQ BD NO115, SEQ BD NO117, SEQ ED NO 119, SEQ ED NO: 121 SEQ ED NO: 123, SEQ ED NO125, SEQ ED NO: 127, SEQ ED NO 129, SEQ BD NO:131 SEQ ED NO133, SEQ ED NO135, SEQ ED NO137, SEQ ED NO 139, SEQ ID NO: 141 SEQ ED NO: 143, SEQ ED NO145, SEQ ED NO147, SEQ ED NO 149, SEQ ED NOT51 SEQ ED NO153, SEQ ED NO155, SEQ ED NO157, SEQ ED NO 199, SEQ ED NO: 161 SEQ ED NO163, SEQ ED NOT65, SEQ ED NO: 167, SEQ BD NO 169, SEQ ED NOT71 SEQ ED NOT73, SEQ ED NOT75, SEQ ED NO177, SEQ ED NO 179, SEQ ED NOT 81 SEQ ED NO: 183, SEQ ED NO: 185, SEQ ED NO187, SEQ ED NO 189, SEQ ED NO191 SEQ ED NOT93, SEQ ED NOT95, SEQ BD NO197, SEQ ED NO 199, SEQ ED NO.201 SEQ BD NO:203, SEQ ED NO:205, SEQ ED NO:207, SEQ ED NO 209, SEQ ED NO:211 SEQ ED NO:213, SEQ ED NO:215, SEQ ED NO:217, SEQ ED NO 219, SEQ ED NO:221 SEQ ED NO:223, SEQ ED NO:225, SEQ ED NO:227, SEQ ED NO :229, SEQ ED NO.231 SEQ ID NO:233, SEQ ED NO:235, SEQ ED NO:237, SEQ BD NO 239, SEQ ED NO.241 SEQ ED NO-.243, SEQ ED NO:245, SEQ ED NO:247, SEQ ED NO 249, SEQ ED NO.251 SEQ ED NO:253, SEQ ED NO:255, SEQ ED NO:257, SEQ ED NO 259, SEQ ED NO:261 SEQ BD NO:263, SEQ ED NO:265, SEQ ED NO:267, SEQ ED NO 269, SEQ ED NO:271 SEQ ED NO:273, SEQ ED NO:275, SEQ ED NO:277, SEQ ED NO :279, SEQ ED NO.281 SEQ ED NO.283, SEQ ED NO:285, SEQ ED NO:287, SEQ ED NO 289, SEQ ED NO.291 SEQ ED NO:293, SEQ ED NO:295, SEQ BD NO:297, SEQ ED NO :299, SEQ ED NO:301 SEQ ED NO:303, SEQ ED NO:305, SEQ BD NO:307, SEQ ED NO 309, SEQ ED NO.311 SEQ ED NO:313, SEQ ED NO:315, SEQ ED NO:317, SEQ ED NO 319, SEQ ED NO:321 SEQ ED NO:323, SEQ ED NO:325, SEQ BD NO:327, SEQ ED NO 329, SEQ ED NO.331 SEQ ED NO:333, SEQ BD NO:335, SEQ ED NO:337, SEQ ED NO 339, SEQ ED NO:341 SEQ ED NO:343, SEQ BD NO:345, SEQ ED NO:347, SEQ BD NO 349, SEQ ED NO.351 SEQ ED NO:353, SEQ BD NO:355, SEQ ED NO:357, SEQ ED NO 359, SEQ BD NO.361 SEQ ED NO:363, SEQ ED NO:365, SEQ ED NO:367, SEQ ED NO 369, SEQ ED NO.371 SEQ ED NO:373, SEQ ED NO:375, SEQ ED NO:377 or SEQ BD NO:379, wherein the sequence identities are determined by analysis with a sequence comparison algorithm or by visual inspection.
  5. 33
    An amplification primer pair, wherein the primer pair comprises a first member having a sequence as set forth by about the first (the 5') 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30 or more residues of SEQ ID NOT, SEQ ED NO:3, SEQ ED NO:5, SEQ ED NO:7, SEQ ED NO:9, SEQ ED NOT1, SEQ ID NOT3, SEQ ED NO: 15, SEQ BD NO: 17, SEQ BD NO: 19, SEQ ID NO:21, SEQ ED NO.23, SEQ BD NO.25, SEQ ED NO:27, SEQ ED NO:29, SEQ ED NO:31, SEQ ED NO:33, SEQ ED NO:35, SEQ ED NO:37, SEQ BD NO:39, SEQ ED NO:41, SEQ ED NO:43, SEQ ED NO:45, SEQ ED NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ ED NO:53, SEQ ED NO:55, SEQ BD NO:57, SEQ ED NO:59, SEQ ED NO:61, SEQ ED NO:63, SEQ ED NO:65, SEQ ED NO:67, SEQ ED NO:69, SEQ ED NO:71, SEQ BD NO:73, SEQ BD NO:75, SEQ ED NO:77, SEQ ED NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ ED NO:87, SEQ ID NO:89, SEQ ED NO:91, SEQ ED NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ ED NOT01, SEQ ED NOT03, SEQ BD NOT05, SEQ ED NOT07, SEQ ED NOT09, SEQ ED NOT11, SEQ BD NOT13, SEQ E NOT15, SEQ BD NOT 17, SEQ ED NOT 19, SEQ ED NOT21, SEQ ED NO: 123, SEQ ED NO: 125, SEQ ED NO: 127, SEQ ED NO: 129, SEQ ED NO: 131, SEQ ED NOT33, SEQ ID NOT35, SEQ ED NO.T37, SEQ ED NOT39, SEQ ED NOT41, SEQ ED NO: 143, SEQ ED NO: 145, SEQ BD NO: 147, SEQ ED NO: 149, SEQ ED NO: 151, SEQ ED NOT53, SEQ ID NOT55, SEQ ED NOT57, SEQ ED NOT99, SEQ ED NOT61, SEQ ED NOT63, SEQ ED NOT65, SEQ ED NOT67, SEQ ED NOT69, SEQ ED NOT71, SEQ ED NOT73, SEQ ED NOT75, SEQ BD NOT77, SEQ ED NOT79, SEQ ED NOT81, SEQ ED NOT83, SEQ ED NOT85, SEQ ED NOT87, SEQ ED NOT89, SEQ ED NOT91, SEQ ED NOT93, SEQ ED NOT95, SEQ BD NOT97, SEQ ED NOT99, SEQ ED NO:201, SEQ BD NO:203, SEQ ED NO:205, SEQ ED NO:207, SEQ ED NO:209, SEQ BD NO.211, SEQ BD NO:213, SEQ ED NO:215, SEQ ED NO:217, SEQ BD NO:219, SEQ ED NO:221, SEQ ED NO:223, SEQ ED NO:225, SEQ ID NO:227, SEQ BD NO:229, SEQ ED NO:231, SEQ ED NO:233, SEQ BD NO:235, SEQ BD NO:237, SEQ ED NO:239, SEQ BD NO:241, SEQ BD NO:243, SEQ ED NO:245, SEQ ED NO:247, SEQ ED NO:249, SEQ BD NO:251, SEQ ED NO:253, SEQ ED NO:255, SEQ ED NO:257, SEQ ED NO:259, SEQ ED NO:261, SEQ ED NO:263, SEQ ED NO:265, SEQ BD NO:267, SEQ ED NO:269, SEQ ED NO:271, SEQ BD NO:273, SEQ ED NO:275, SEQ ED NO:277, SEQ BD NO:279, SEQ ED NO:281, SEQ BD NO:283, SEQ ED NO:285, SEQ ED NO:287, SEQ ED NO:289, SEQ ED NO:291, SEQ ED NO:293, SEQ ED NO:295, SEQ BD NO:297, SEQ ED NO:299, SEQ ED NO:301, SEQ BD NO:303, SEQ ED NO:305, SEQ BD NO:307, SEQ ED NO:309, SEQ ED NO:311, SEQ ED NO:313, SEQ ED NO:315, SEQ BD NO:317, SEQ ED NO:319, SEQ ED NO:321, SEQ BD NO:323, SEQ ED NO:325, SEQ BD NO:327, SEQ ED NO:329, SEQ ED NO:331, SEQ ED NO:333, SEQ BD NO:335, SEQ ED NO:337, SEQ ED NO:339, SEQ BD NO:341, SEQ ED NO:343, SEQ ED NO:345, SEQ BD NO.T47, SEQ ED NO.T49, SEQ ED NO:351, SEQ ED NO:353, SEQ ED NO:355, SEQ ED NO:357, SEQ BD NO:359, SEQ ED NO:361, SEQ BD NO:363, SEQ ED NO:365, SEQ ED NO:367, SEQ ED NO:369, SEQ BD NO:371, SEQ ED NO:373, SEQ ED NO:375, SEQ ED NO:377 or SEQ ED NO:379, and a second member having a sequence as set forth by about the first (the 5') 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30 or more residues of the complementary sfrand of the first member.
  6. 60
    An isolated or recombinant polypeptide (i) having at least 50% sequence identity to SEQ ED NO:2, SEQ ED NO:4, SEQ ED NO:6, SEQ ED NO:8, SEQ ED NOT0, SEQ ED NOT2, SEQ ED NOT4, SEQ ED NOT6, SEQ ED NOT8, SEQ ED NO:20, SEQ ED NO:22, SEQ ED NO:24, SEQ ED NO:26, SEQ ED NO:28, SEQ ED NO:30, SEQ ED NO:32, SEQ BD NO:34, SEQ ED NO:36, SEQ ED NO:38, SEQ ED NO:40, SEQ ED NO:42, SEQ ED NO:44, SEQ ED NO:46, SEQ BD NO:48, SEQ BD NO:50, SEQ ED NO:52, SEQ ED NO:54, SEQ ED NO:56, SEQ ED NO:58, SEQ TD NO:60, SEQ ED NO:62, SEQ BD NO:64, SEQ ED NO:66, SEQ ED NO:68, SEQ ED NO:70, SEQ ED NO:72, SEQ BD NO:74, SEQ BD NO:76, SEQ ED NO:78, SEQ ED NO:80, SEQ ED NO:82, SEQ ED NO:84, SEQ ED NO:86, SEQ BD NO:88, SEQ ED NO:90, SEQ BD NO:92, SEQ BD NO:94, SEQ ED NO:96, SEQ ED NO:98, SEQ ED NOT00, SEQ BD NOT02, SEQ ID NOT04, SEQ ED NOT06, SEQ ED NOT08, SEQ ED NOT 10, SEQ ED NOT 12, SEQ ED NOT 14, SEQ ED NOT16, SEQ ED NOT 18, SEQ ED NOT20, SEQ ED NOT22, SEQ BD NOT24, SEQ BD NOT26, SEQ BD NOT28, SEQ ED NOT30, SEQ ED NOT32;SEQ ED NOT34;SEQ ED NOT36;SEQ ED NOT38;SEQ ED NOT40;SEQ ED NOT42;SEQ ED NO.T44;NOT46, SEQ BD NO148, SEQ ED NO150, SEQ ID NOT52, SEQ ED NOT54, SEQ ED NO156, SEQ ED NO158, SEQ ED NO160, SEQ ID NOT62, SEQ ED NO: 164, SEQ ED NOT66, SEQ ED NOT68, SEQ ED NO: 170, SEQ ID NO: 172, SEQ BD NOT 74, SEQ ED NO: 176, SEQ ED NO: 178, SEQ ED NO: 180, SEQ ID NO: 182, SEQ ED NOT 84, SEQ ED NO: 186, SEQ BD NO: 188, SEQ ED NOT90, SEQ ID NO: 192, SEQ ED NO: 194, SEQ BD NOT96, SEQ BD NOT98, SEQ ED NO:200, SEQ ID NO:202, SEQ ED NO:204, SEQ ED NO:206, SEQ ID NO:208, SEQ ID NO.210, SEQ ID NO:212, SEQ BD NO:214, SEQ ED NO.216, SEQ BD NO-218, SEQ ED NO:220, SEQ ID NO:222, SEQ ED NO:224, SEQ ED NO:226, SEQ ED NO:228, SEQ ED NO:230, SEQ ID NO:232, SEQ ED NO:234, SEQ ED NO:236, SEQ ED NO:238, SEQ ED NO:240, SEQ ID NO:242, SEQ ED NO:244, SEQ BD NO:246, SEQ ED NO:248, SEQ ED NO:250, SEQ ID NO:252, SEQ ED NO:254, SEQ ED NO:256, SEQ ED NO:258, SEQ ED NO:260, SEQ ID NO:262, SEQ BD NO:264, SEQ ED NO:266, SEQ ED NO:268, SEQ BD NO:270, SEQ ID NO:272, SEQ ED NO:274, SEQ ED NO:276, SEQ ED NO:278, SEQ ED NO.280, SEQ ID NO:282, SEQ ED NO:284, SEQ BD NO:286, SEQ BD NO:288, SEQ ED NO:290, SEQ ID NO:292, SEQ ED NO:294, SEQ ED NO:296, SEQ ED NO:298, SEQ ED NO:300, SEQ ED NO:302, SEQ ED NO:304, SEQ ED NO:306, SEQ ED NO:308, SEQ ED NO:310, SEQ ID NO:312, SEQ ED NO:314, SEQ ED NO:316, SEQ ED NO:318, SEQ BD NO:320, SEQ ID NO.T22, SEQ ED NO:324, SEQ ED NO.T26, SEQ ID NO:328, SEQ ED NO:330, SEQ ID NO:332, SEQ ED NO:334, SEQ ED NO:336, SEQ ED NO:338, SEQ ED NO:340, SEQ ID NO:342, SEQ BD NO:344, SEQ ED NO:346, SEQ ED NO:348, SEQ ED NO:350, SEQ BD NO:352, SEQ ED NO:354, SEQ ED NO.T56, SEQ ED NO.358, SEQ ED NO:360, SEQ ID NO:362, SEQ ED NO:364, SEQ ED NO:366, SEQ ED NO:368, SEQ ED NO:370, SEQ ID NO:372, SEQ ED NO:374, SEQ ED NO:376, SEQ ED NO:378 or SEQ BD NO:380, over a region of at least about 100 residues, wherein the sequence identities are determined by analysis with a sequence comparison algorithm or by a visual inspection, or, (ii) encoded by a nucleic acid having at least 50% sequence identity to a sequence as set forth in SEQ ED NOT, SEQ ED NO:3, SEQ ED NO:5, SEQ ED NO:7, SEQ BD NO:9, SEQ ED NOT 1, SEQ BD NO13, SEQ ED NOT5, SEQ ED NOT7, SEQ ED NOT9, SEQ ED NO:21, SEQ BD NO.23, SEQ BD NO:25, SEQ ED NO.27, SEQ ED NO.29, SEQ ED NO:31, SEQ BD NO:33, SEQ ED NO:35, SEQ ED NO:37, SEQ ED NO:39, SEQ BD NO:41, SEQ BD NO:43, SEQ BD NO:45, SEQ ED NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ ED NO:53, SEQ ED NO:55, SEQ BD NO:57, SEQ ED NO:59, SEQ BD NO:61, SEQ ED NO:63, SEQ ED NO:65, SEQ ED NO:67, SEQ ED NO:69, SEQ ED NO:71, SEQ ED NO:73, SEQ ED NO:75, SEQ ED NO:77, SEQ ED NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ BD NO:85, SEQ ED NO:87, SEQ ED NO:89, SEQ ED NO:91, SEQ ED NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ BD NO.T01, SEQ ED NO103, SEQ ID NO 05, SEQ BD NO: 107, SEQ ED NO109, SEQ ED NOT 11, SEQ ED NOT13, SEQ ED NOT15, SEQ ED NOT 17, SEQ ED NO119, SEQ ED NOT21 SEQ ED NOT23, SEQ BD NOT25, SEQ ED NO: 127, SEQ ED NO: 129, SEQ ED NOT31 SEQ ED NO133, SEQ ED NO135, SEQ ED NOT37, SEQ ED NO139, SEQ ED NO: 141 SEQ ED NO143, SEQ ED NO145, SEQ ED NOT47, SEQ ED NO: 149, SEQ ED NOT51 SEQ ED NO153, SEQ ED NO155, SEQ ED NOT57, SEQ ED NO: 199, SEQ ID NO: 161 SEQ ED NO: 163, SEQ ED NO: 165, SEQ ED NO: 167, SEQ ED NO: 169, SEQ ED NOT 71 SEQ ED NO: 173, SEQ BD NO: 175, SEQ ED NO: 177, SEQ ID NO: 179, SEQ ID NO: 181 SEQ ED NOT83, SEQ ED NOT85, SEQ BD NOT87, SEQ ED NNOO: 18899,, SSEEQO EEDD NNOOTT9911, SEQ BD NOT93, SEQ ED NOT95, SEQ ED NO: 197, SEQ ED NOT99, SEQ ED NO:201 SEQ ED NO:203, SEQ ED NO:205, SEQ ED NO:207, SEQ ED NO:209, SEQ ED NO:211 SEQ BD NO:213, SEQ ED NO:215, SEQ ED NO:217, SEQ ED NO:219, SEQ ED NO:221 SEQ ED NO:223, SEQ ED NO:225, SEQ ED NO:227, SEQ ED NO:229, SEQ ED NO:231 SEQ ED NO:233, SEQ ED NO:235, SEQ ED NO:237, SEQ ED NO:239, SEQ ED NO:241 SEQ ED NO:243, SEQ ED NO:245, SEQ ED NO:247, SEQ ED NO:249, SEQ ED NO:251 SEQ ED NO:253, SEQ ED NO:255, SEQ ED NO:257, SEQ ED NO:259, SEQ BD NO:261 SEQ ED NO:263, SEQ ED NO:265, SEQ ED NO:267, SEQ ID NO:269, SEQ BD NO:271 SEQ ED NO:273, SEQ ID NO:275, SEQ ED NO:277, SEQ ED NO:279, SEQ ED NO:281 SEQ ED NO:283, SEQ ED NO:285, SEQ ED NO:287, SEQ ED NO:289, SEQ ED NO:291 SEQ ED NO:293, SEQ ED NO:295, SEQ ED NO:297, SEQ ED NO:299, SEQ ED NO:301 SEQ ED NO:303, SEQ ED NO:305, SEQ ED NO:307, SEQ BD NO:309, SEQ ED NO:311 SEQ ED NO:313, SEQ ED NO:315, SEQ ED NO:317, SEQ ED NO:319, SEQ ED NO:321 SEQ ED NO:323, SEQ ED NO:325, SEQ ED NO:327, SEQ ED NO:329, SEQ ED NO:331 SEQ ED NO:333, SEQ ED NO:335, SEQ ED NO.T37, SEQ BD NNOO::333399,, SSEEQO EBDD NNOO::334411, SEQ ED NO:343, SEQ ED NO:345, SEQ ED NO:347, SEQ ED NO:349, SEQ ED NO:351 SEQ ED NO:353, SEQ ED NO:355, SEQ ED NO:357, SEQ ED NO:359, SEQ BD NO:361 SEQ ED NO:363, SEQ ED NO:365, SEQ ED NO:367, SEQ ED NO:369, SEQ ED NO:371 SEQ ED NO:373, SEQ BD NO:375, SEQ ED NO:377 or SEQ ED NO:379, over a region of at least about 100 residues, and the sequence identities are determined by analysis with a sequence comparison algorithm or by a visual inspection, or encoded by a nucleic acid capable of hybridizing under stringent conditions to a sequence as set forth in SEQ BD NOT, SEQ ED NO:3, SEQ ID NO:5, SEQ ED NO:7, SEQ ED NO:9, SEQ ED NOT1, SEQ ED NOT3, SEQ ED NO: 15, SEQ ID NOT7, SEQ ED NOT9, SEQ ED NO.21, SEQ ED NO:23, SEQ ED NO:25, SEQ ED NO:27, SEQ ED NO:29, SEQ ED NO:31, SEQ ED NO:33, SEQ ED NO:35, SEQ ED NO:37, SEQ BD NO:39, SEQ ED NO.41, SEQ ED NO:43, SEQ BD NO:45, SEQ TD NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ BD NO:53, SEQ ED NO:55, SEQ ED NO:57, SEQ ED NO:59, SEQ ED NO:61, SEQ ED NO:63, SEQ ED NO:65, SEQ ED NO:67, SEQ ED NO:69, SEQ BD NO:71, SEQ ED NO:73, SEQ BD NO:75, SEQ ED NO:77, SEQ ED NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ ED NO:87, SEQ ED NO:89, SEQ ED NO:91, SEQ HD NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ BD NOT01, SEQ ED NOT03, SEQ ED NOT05, SEQ ED NOT07, SEQ ED NOT09, SEQ ED NOTll, SEQ ED NOT13, SEQ BD NOT15, SEQ BD NOT17, SEQ ED NO 119, SEQ ED NO: 121 SEQ ED NOT23, SEQ ED NOT25, SEQ ED NOT27, SEQ ED NO: 129, SEQ ED NO: 131 SEQ ED NOT33, SEQ ID NOT35, SEQ ED NOT37, SEQ ED NO: 139, SEQ ED NOT41 SEQ ED NO.T43, SEQ ED NO.T45, SEQ ED NOT47, SEQ ED NO 149, SEQ ED NOT51 SEQ ED NOT53, SEQ ED NOT55, SEQ ED NOT57, SEQ ED NO 199, SEQ ED NOT61 SEQ ED NOT63, SEQ ED NOT65, SEQ ED NOT67, SEQ ED NO 169, SEQ ED NOT71 SEQ ED NOT73, SEQ ED NOT75, SEQ ED NOT77, SEQ ED NO 179, SEQ ED NOT81 SEQ ED NOT 83, SEQ ED NO: 185, SEQ ED NO: 187, SEQ ED NO: 189, SEQ ED NOT91 SEQ BD NOT93, SEQ ED NOT95, SEQ ED NOT97, SEQ ED NO: 199, SEQ HD NO:201 SEQ ED NO:203, SEQ ED NO:205, SEQ ED NO:207, SEQ ID NO 209, SEQ ID NO:211 SEQ ED NO:213, SEQ ED NO:215, SEQ ED NO:217, SEQ ED NO 219, SEQ ED NO.221 SEQ ED NO:223, SEQ BD NO.225, SEQ ED NO:227, SEQ ID NO: 229, SEQ HD NO:231 SEQ ED NO.233, SEQ BD NO:235, SEQ ED NO:237, SEQ ED NO 239, SEQ HD NO:241 SEQ ED NO:243, SEQ ED NO:245, SEQ ED NO:247, SEQ BD NO 249, SEQ HD NO:251 SEQ BD NO:253, SEQ ED NO:255, SEQ ED NO:257, SEQ ED NO 259, SEQ ΠD NO:261 SEQ BD NO:263, SEQ ED NO:265, SEQ ED NO:267, SEQ ED NO 269, SEQ ΠD NO:271 SEQ ED NO:273, SEQ ED NO:275, SEQ BD NO:277, SEQ ED NO 279, SEQ ΠD NO:281 SEQ BD NO:283, SEQ ED NO:285, SEQ ED NO:287, SEQ ED NO 289, SEQ πD NO:291 SEQ ED NO:293, SEQ ED NO:295, SEQ ED NO:297, SEQ ED NO 299, SEQ ΠD NO:301 SEQ ED NO:303, SEQ ED NO:305, SEQ ED NO:307, SEQ ED NO 309, SEQ ED NO.311 SEQ ED NO:313, SEQ ED NO:315, SEQ ED NO:317, SEQ ED NO 319, SEQ ΠD NO:321 SEQ ED NO:323, SEQ ED NO:325, SEQ BD NO:327, SEQ ED NO :329, SEQ ID NO.331 SEQ ED NO:333, SEQ ED NO:335, SEQ ED NO:337, SEQ ED NO 339, SEQ nD NO:341 SEQ ED NO:343, SEQ ED NO:345, SEQ ED NO:347, SEQ ED NO :349, SEQ ED NO:351 SEQ BD NO:353, SEQ ED NO:355, SEQ ED NO:357, SEQ ED NO:359, SEQ ED NO:361, SEQ ED NO:363, SEQ BD NO:365, SEQ ED NO:367, SEQ ED NO:369, SEQ ED NO-371, SEQ ID NO:373, SEQ ED NO:375, SEQ ED NO:377 or SEQ ED NO:379.
  7. 103
    A method of isolating or identifying a polypeptide with a xylanase activity comprising the steps of:(a) providing an antibody as set forth in claim 100;(b) providing a sample comprising polypeptides;and (c) contacting the sample of step (b) with the antibody of step (a) under conditions wherein the antibody can specifically bind to the polypeptide, thereby isolating or identifying a polypeptide having a xylanase activity.
  8. 108
    A method for identifying a polypeptide having a xylanase activity comprising the following steps:(a) providing a polypeptide as set forth in claim 64;(b) providing a xylanase substrate;and (c) contacting the polypeptide with the subsfrate of step (b) and detecting a decrease in the amount of substrate or an increase in the amount of a reaction product, wherein a decrease in the amount of the substrate or an increase in the amount of the reaction product detects a polypeptide having a xylanase activity.
  9. 110
    A method of determining whether a test compound specifically binds to a polypeptide comprising the following steps:(a) expressing a nucleic acid or a vector comprising the nucleic acid under conditions permissive for translation of the nucleic acid to a polypeptide, wherein the nucleic acid has a sequence as set forth in claim 1 or claim 24;(b) providing a test compound;(c) contacting the polypeptide with the test compound;and (d) determining whether the test compound of step (b) specifically binds to the polypeptide.
  10. 111
    A method of determining whether a test compound specifically binds to a polypeptide comprising the following steps:(a) providing a polypeptide as set forth in claim 60;(b) providing a test compound;(c) contacting the polypeptide with the test compound;and (d) determining whether the test compound of step (b) specifically binds to the polypeptide.
  11. 112
    A method for identifying a modulator of a xylanase activity comprising the following steps:(a) providing a polypeptide as set forth in claim 64;(b) providing a test compound;(c) contacting the polypeptide of step (a) with the test compound of step (b) and measuring an activity of the xylanase, wherein a change in the xylanase activity measured in the presence of the test compound compared to the activity in the absence of the test compound provides a determination that the test compound modulates the xylanase activity.
  12. 126
    A method for isolating or recovering a nucleic acid encoding a polypeptide with a xylanase activity from an environmental sample comprising the steps of:(a) providing an amplification primer sequence pair as set forth in claim 31 or claim 33;(b) isolating a nucleic acid from the environmental sample or treating the environmental sample such that nucleic acid in the sample is accessible for hybridization to the amplification primer pair;and, (c) combining the nucleic acid of step (b) with the amplification primer pair of step (a) and amplifying nucleic acid from the environmental sample, thereby isolating or recovering a nucleic acid encoding a polypeptide with a xylanase activity from an environmental sample.
  13. 128
    A method for isolating or recovering a nucleic acid encoding a polypeptide with a xylanase activity from an environmental sample comprising the steps of:(a) providing a polynucleotide probe comprising a sequence as set forth in claim 1 or claim 24, or a subsequence thereof;(b) isolating a nucleic acid from the environmental sample or treating the environmental sample such that nucleic acid in the sample is accessible for hybridization to a polynucleotide probe of step (a);(c) combining the isolated nucleic acid or the treated environmental sample of step (b) with the polynucleotide probe of step (a);and (d) isolating a nucleic acid that specifically hybridizes with the polynucleotide probe of step (a), thereby isolating or recovering a nucleic acid encoding a polypeptide with a xylanase activity from an environmental sample.
  14. 141
    A method for modifying codons in a nucleic acid encoding a polypeptide with a xylanase activity to increase its expression in a host cell, the method comprising the following steps:(a) providing a nucleic acid encoding a polypeptide with a xylanase activity comprising a sequence as set forth in claim 1 or claim 24;and, (b) identifying a non-prefened or a less prefened codon in the nucleic acid of step (a) and replacing it with a prefened or neutrally used codon encoding the same amino acid as the replaced codon, wherein a prefened codon is a codon over-represented in coding sequences in genes in the host cell and a non-prefened or less prefened codon is a codon under-represented in coding sequences in genes in the host cell, thereby modifying the nucleic acid to increase its expression in a host cell.
  15. 142
    A method for modifying codons in a nucleic acid encoding a xylanase polypeptide, the method comprising the following steps:(a) providing a nucleic acid encoding a polypeptide with a xylanase activity comprising a sequence as set forth in claim 1 or claim 24;and, (b) identifying a codon in the nucleic acid of step (a) and replacing it with a different codon encoding the same amino acid as the replaced codon, thereby modifying codons in a nucleic acid encoding a xylanase.
  16. 143
    A method for modifying codons in a nucleic acid encoding a xylanase polypeptide to increase its expression in a host cell, the method comprising the following steps:(a) providing a nucleic acid encoding a xylanase polypeptide comprising a sequence as set forth in claim 1 or claim 24;and, (b) identifying a non-prefened or a less prefened codon in the nucleic acid of step (a) and replacing it with a prefened or neutrally used codon encoding the same amino acid as the replaced codon, wherein a prefened codon is a codon over-represented in coding sequences in genes in the host cell and a non-prefened or less prefened codon is a codon under-represented in coding sequences in genes in the host cell, thereby modifying the nucleic acid to increase its expression in a host cell.
  17. 144
    A method for modifying a codon in a nucleic acid encoding a polypeptide having a xylanase activity to decrease its expression in a host cell, the method comprising the following steps:(a) providing a nucleic acid encoding a xylanase polypeptide comprising a sequence as set forth in claim 1 or claim 24;and (b) identifying at least one prefened codon in the nucleic acid of step (a) and replacing it with a non-prefened or less prefened codon encoding the same amino acid as the replaced codon, wherein a prefened codon is a codon over-represented in coding sequences in genes in a host cell and a non-prefened or less prefened codon is a codon under- represented in coding sequences in genes in the host cell, thereby modifying the nucleic acid to decrease its expression in a host cell.
  18. 146
    A method for producing a library of nucleic acids encoding a plurality of modified xylanase active sites or substrate binding sites, wherein the modified active sites or subsfrate binding sites are derived from a first nucleic acid comprising a sequence encoding a first active site or a first substrate binding site the method comprising the following steps:(a) providing a first nucleic acid encoding a first active site or first substrate binding site, wherein the first nucleic acid sequence comprises a sequence that hybridizes under stringent conditions to a sequence as set forth in SEQ ED NOT, SEQ BD NO:3, SEQ BD NO:5, SEQ BD NO:7, SEQ ED NO:9, SEQ ID NOT1, SEQ BD NO.T3, SEQ ED NO: 15, SEQ BD NO17, SEQ ED NO19, SEQ ED NO:21, SEQ ED NO:23, SEQ ED NO:25, SEQ BD NO:27, SEQ BD NO:29, SEQ ED NO:31, SEQ BD NO:33, SEQ ED NO:35, SEQ ED NO:37, SEQ BD NO:39, SEQ ED NO:41, SEQ ED NO:43, SEQ BD NO:45, SEQ ED NO:47, SEQ ED NO:49, SEQ ED NO:51, SEQ ED NO:53, SEQ ED NO:55, SEQ ED NO:57, SEQ ED NO:59, SEQ ED NO:61, SEQ BD NO:63, SEQ ED NO:65, SEQ ED NO:67, SEQ BD NO:69, SEQ ED NO:71, SEQ BD NO:73, SEQ ED NO:75, SEQ ED NO:77, SEQ ED NO:79, SEQ ED NO:81, SEQ ED NO:83, SEQ ED NO:85, SEQ ED NO:87, SEQ ED NO:89, SEQ ED NO.91, SEQ ID NO:93, SEQ ED NO:95, SEQ ED NO:97, SEQ ED NO:99, SEQ ED NOT01, SEQ ID NO103, SEQ ED NOT05, SEQ ED NO: 107, SEQ ED NO: 109, SEQ ED NOT11, SEQ BD NOT13, SEQ ED NO: 115, SEQBD O 117, SEQ ED NO 119,SEQBDNOT21 SEQ ED NO: 123, SEQED NOT25, SEQ ED NO 127, SEQ ED NO 129,SEQEDNOT31 SEQBDNOT33,SEQED NOT35, SEQ ED NO 137, SEQ ED NO T39, SEQ ED NO: 141 SEQ ED NO: 143, SEQED NOT45, SEQ ED NO 147, SEQ ED NO T49, SEQEDNOT51 SEQEDNOT53,SEQED NO: 155, SEQ ED NO 157, SEQBD NO T99, SEQEDNOT61 SEQ ED NOT63, SEQBD NO165, SEQBDNO 167, SEQBDNO 169, SEQEDNOT71 SEQEDNOT73,SEQED NO: 175, SEQ ED NO 177, SEQBD NO 179, SEQ ED NOT 81 SEQ ED NO: 183, SEQED NOT85, SEQB NO 187, SEQ ED NO 189, SEQEDNOT91 SEQ BDNOT93, SEQED NOT95, SEQ ED NO 197, SEQ BD NO 199, SEQ ED NO:201 SEQ ED NO:203, SEQ ID NO.205, SEQ ED NO 207, SEQ ED NO 209, SEQEDNO.211 SEQ ED NO.213, SEQ ED NO.215, SEQ ED NO 217, SEQ ED NO 219, SEQEDNO.221 SEQ ED NO:223, SEQ ED NO:225, SEQ ED NO 227, SEQ ED NO 229, SEQEDNO.231 SEQ ED NO:233, SEQ ED NO:235, SEQ ED NO 237, SEQ ED NO 239, SEQ ED NO:241 SEQ ED NO:243, SEQ ED NO:245, SEQ ED NO 247, SEQ ED NO 249, SEQ ED NO.251 SEQ ED NO.253, SEQ BD NO:255, SEQ ED NO 257, SEQ ED NO 259, SEQEDNO.261 SEQ ED NO:263, SEQ ED NO:265, SEQ BD NO 267, SEQ BD NO: 269, SEQ ED NO:271 SEQ ED NO:273, SEQ ED NO:275, SEQ ED NO 277, SEQ ED NO 279, SEQBD NO.281 SEQ BD NO:283, SEQ ED NO:285, SEQ ED NO 287, SEQ ED NO 289, SEQ ED NO:291 SEQ ED NO:293, SEQ ED NO.295, SEQ ED NO 297, SEQ BD NO: 299, SEQ ED NO:301 SEQ BD NO:303, SEQ ED NO:305, SEQ ED NO 307, SEQ BD NO: 309, SEQBDNO:311 SEQ ED NO.313, SEQBD NO.315, SEQ ED NO 317, SEQ ED NO: 319, SEQEDNO.321 SEQ ED NO:323, SEQ ED NO:325, SEQ ED NO 327, SEQ ED NO 329, SEQEDNO:331 SEQ ED NO:333, SEQ ED NO.335, SEQ ED NO 337, SEQ ED NO: 339, SEQ ED NO.T41 SEQ ED NO:343, SEQ ED NO:345, SEQ ED NO:347, SEQ ED NO:349, SEQ ED NO.351, SEQ ED NO:353, SEQ BD NO:355, SEQ BD NO:357, SEQ ED NO:359, SEQ ED NO:361, SEQ ED NO:363, SEQ BD NO:365, SEQ BD NO:367, SEQ ED NO:369, SEQ ED NO-371, SEQ ED NO:373, SEQ ED NO:375, SEQ ED NO:377 or SEQ ED NO:379, or a subsequence thereof, and the nucleic acid encodes a xylanase active site or a xylanase subsfrate binding site;(b) providing a set of mutagenic oligonucleotides that encode naturally- occurring amino acid variants at a plurality of targeted codons in the first nucleic acid;and, (c) using the set of mutagenic oligonucleotides to generate a set of active site- encoding or substrate binding site-encoding variant nucleic acids encoding a range of amino acid variations at each amino acid codon that was mutagenized, thereby producing a library of nucleic acids encoding a plurality of modified xylanase active sites or substrate binding sites.
  19. 151
    A method for modifying a small molecule comprising the following steps:(a) providing a xylanase enzyme, wherein the enzyme comprises a polypeptide as set forth in claim 64, or a polypeptide encoded by a nucleic acid comprising a nucleic acid sequence as set forth in claim 1 or claim 24;(b) providing a small molecule;and (c) reacting the enzyme of step (a) with the small nolecule of step (b) under conditions that facilitate an enzymatic reaction catalyzed by the xylanase enzyme, thereby modifying a small molecule by a xylanase enzymatic reaction.
  20. 156
    A method for determining a functional fragment of a xylanase enzyme comprising the steps of:(a) providing a xylanase enzyme, wherein the enzyme comprises a polypeptide as set forth in claim 64, or a polypeptide encoded by a nucleic acid as set forth in claim 1 or claim 24;and (b) deleting a plurality of amino acid residues from the sequence of step (a) and testing the remaining subsequence for a xylanase activity, thereby determining a functional fragment of a xylanase enzyme.
  21. 158
    A method for whole cell engineering of new or modified phenotypes by using real-time metabolic flux analysis, the method comprising the following steps:(a) making a modified cell by modifying the genetic composition of a cell, wherein the genetic composition is modified by addition to the cell of a nucleic acid comprising a sequence as set forth in claim 1 or claim 24;(b) culturing the modified cell to generate a plurality of modified cells;(c) measuring at least one metabolic parameter of the cell by monitoring the cell culture of step (b) in real time;and, (d) analyzing the data of step (c) to determine if the measured parameter differs from a comparable measurement in an unmodified cell under similar conditions, thereby identifying an engineered phenotype in the cell using real-time metabolic flux analysis.
  22. 162
    An isolated or recombinant signal sequence consisting of a sequence as set forth in residues 1 to 14, 1 to 15, 1 to 16, 1 to 17, 1 to 18, 1 to 19, 1 to 20, 1 to 21, 1 to 22, 1 to 23, 1 to 24, 1 to 25, 1 to 26, 1 to 27, 1 to 28, 1 to 28, 1 to 30, 1 to 31, 1 to 32, 1 to 33, 1 to 34, 1 to 35, 1 to 36, 1 to 37, 1 to 38, 1 to 40, 1 to 41, 1 to 42, 1 to 43 or 1 to 44, of SEQ ED NO:2, SEQ ID NO:4, SEQ ED NO:6, SEQ ED NO:8, SEQ BD NO: 10, SEQ TD NO: 12, SEQ HD NOT4, SEQ BD NO.T6, SEQ ED NOT8, SEQ ED NO:20, SEQ BD NO:22, SEQ ED NO:24, SEQ BD NO:26, SEQ ED NO:28, SEQ ED NO:30, SEQ ED NO:32, SEQ ED NO:34, SEQ ED NO:36, SEQ ED NO:38, SEQ ED NO:40, SEQ ED NO:42, SEQ ED NO:44, SEQ ED NO:46, SEQ BD NO:48, SEQ HD NO:50, SEQ BD NO:52, SEQ ED NO:54, SEQ ED NO:56, SEQ ED NO:58, SEQ ED NO:60, SEQ ED NO:62, SEQ ED NO:64, SEQ ID NO:66, SEQ BD NO:68, SEQ ED NO:70, SEQ ED NO:72, SEQ BD NO:74, SEQ BD NO:76, SEQ HD NO:78, SEQ ED NO:80, SEQ ED NO:82, SEQ ED NO:84, SEQ ED NO:86, SEQ BD NO:88, SEQ ED NO:90, SEQ ED NO:92, SEQ ED NO:94, SEQ ED NO:96, SEQ BD NO:98, SEQ ED NO: 100, SEQ ED NOT02, SEQ ID NOT04, SEQ BD NOT06, SEQ ED NO.T08, SEQ ED NOT 10, SEQ ED NOT 12, SEQ ID NOT 14, SEQ ED NOT 16, SEQ ED NOT 18, SEQ BD NO: 120, SEQ ED NOT22, SEQ ID NOT24, SEQ ED NO.T26, SEQ BD NOT28, SEQ ED NO.130, SEQ ID NO132;SEQ ID NO134;SEQ ED NO.T36;SEQ ED NO.138;SEQ BD NO140;SEQ ED NO.142;SEQ ID NO144;NO146, SEQ ED NO148, SEQ ED NO150, SEQ ED NO: 152, SEQ ED NOT 54, SEQ BD NO: 156, SEQ ED NO: 158, SEQ ED NO: 160, SEQ BD NOT62, SEQ ED NO.T64, SEQ ED NOT66, SEQ ED NOT68, SEQ ED NO170, SEQ ED NO: 172, SEQ ED NO: 174, SEQ BD NO: 176, SEQ ED NO: 178, SEQ ED NO: 180, SEQ ED NO: 182, SEQ ED NO: 184, SEQ ED NO: 186, SEQ BD NO: 188, SEQ BD NO: 190, SEQ ED NOT92, SEQ ED NO.T94, SEQ ED NOT96, SEQ ED NOT98, SEQ ED NO:200, SEQ ED NO:202, SEQ ED NO:204, SEQ ED NO.206, SEQ ID NO:208, SEQ ED NO.210, SEQ ED NO:212, SEQ ED NO:214, SEQ ED NO.216, SEQ ED NO:218, SEQ ED NO:220, SEQ BD NO:222, SEQ ED NO:224, SEQ BD NO:226, SEQ ED NO:228, SEQ ED NO:230, SEQ ED NO:232, SEQ ED NO:234, SEQ ED NO:236, SEQ BD NO:238, SEQ BD NO:240, SEQ BD NO:242, SEQ ED NO:244, SEQ ED NO:246, SEQ ED NO:248, SEQ ED NO:250, SEQ BD NO:252, SEQ ED NO:254, SEQ ED NO:256, SEQ ED NO:258, SEQ ED NO:260, SEQ ED NO:262, SEQ BD NO:264, SEQ BD NO:266, SEQ ED NO:268, SEQ ED NO:270, SEQ ED NO-.272, SEQ BD NO:274, SEQ ED NO:276, SEQ ED NO:278, SEQ BD NO:280, SEQ ED NO:282, SEQ ED NO:284, SEQ BD NO:286, SEQ ED NO:288, SEQ ED NO:290, SEQ ED NO-.292, SEQ BD NO:294, SEQ ED NO:296, SEQ ED NO:298, SEQ ED NO:300, SEQ BD NO:302, SEQ ID NO:304, SEQ ED NO:306, SEQ ED NO:308, SEQ ED NO:310, SEQ ED NO-.312, SEQ ED NO:314, SEQ ED NO:316, SEQ ED NO:318, SEQ ED NO:320, SEQ ED NO:322, SEQ ED NO:324, SEQ ED NO:326, SEQ ED NO:328, SEQ ED NO:330, SEQ ID NO:332, SEQ BD NO:334, SEQ ED NO:336, SEQ ED NO:338, SEQ ED NO:340, SEQ BD NO:342, SEQ ED NO:344, SEQ ED NO:346, SEQ ED NO:348, SEQ ED NO:350, SEQ ED NO:352, SEQ ED NO:354, SEQ ED NO:356, SEQ ED NO-358, SEQ ED NO:360, SEQ ED NO:362, SEQ ED NO:364, SEQ ED NO:366, SEQ ED NO:368, SEQ ED NO:370, SEQ ED NO:372, SEQ BD NO:374, SEQ BD NO:376, SEQ ID NO:378 or SEQ ID NO.380;or, consisting of a sequence as set forth in Table 4.
  23. 169
    A method of making a fransgenic plant comprising the following steps:(a) introducing a heterologous nucleic acid sequence into the cell, wherein the heterologous nucleic sequence comprises a sequence as set forth in claim 1 or claim 24, thereby producing a transformed plant cell;(b) producing a transgenic plant from the transformed cell.
  24. 172
    A method of expressing a heterologous nucleic acid sequence in a plant cell comprising the following steps:(a) transforming the plant cell with a heterologous nucleic acid sequence operably linked to a promoter, wherein the heterologous nucleic sequence comprises a sequence as set forth in claim 1 or claim 24;(b) growing the plant under conditions wherein the heterologous nucleic acids sequence is expressed in the plant cell.
  25. 173
    A method for hydrolyzing, breaking up or disrupting a xylan- comprising composition comprising the following steps:(a) providing a polypeptide having a xylanase activity as set forth in claim 64, or a polypeptide encoded by a nucleic acid as set forth in claim 1 or claim 24;(b) providing a composition comprising a xylan;and (c) contacting the polypeptide of step (a) with the composition of step (b) under conditions wherein the xylanase hydrolyzes, breaks up or disrupts the xylan- comprising composition.
  26. 187
    An edible enzyme delivery matrix comprising a thermostable recombinant xylanase enzyme.
  27. 189
    A method for delivering a xylanase supplement to an animal, the method comprising:preparing an edible enzyme delivery matrix in the form of pellets comprising a granulate edible carrier and a thermostable recombinant xylanase enzyme, wherein the pellets readily disperse the xylanase enzyme contained therein into aqueous media, and administering the edible enzyme delivery matrix to the animal.
  28. 200
    An isolated or recombinant nucleic acid comprising a sequence as set forth in SEQ ED NO:189, wherein SEQ BD NO: 189 contains one or more of the following mutations: the nucleotides at positions 22 to 24 are TTC, the nucleotides at positions 31 to 33 are CAC, the nucleotides at positions 34 to 36 are TTG, the nucleotides at positions 49 to 51 are ATA, the nucleotides at positions 31 to 33 are CAT, the nucleotides at positions 67 to 69 are ACG, the nucleotides at positions 178 to 180 are CAC, the nucleotides at positions 190 to 192 are TGT, the nucleotides at positions 190 to 192 are GTA, the nucleotides at positions 190 to 192 are GTT, the nucleotides at positions 193 to 195 are GTG, the nucleotides at positions 202 to 204 are GCT, the nucleotides at positions 235 to 237 are CCA, or the nucleotides at positions 235 to 237 are CCC.
  29. 202
    An isolated or recombinant polypeptide comprising an amino acid sequence comprising SEQ BD NO:190, wherein SEQ ED NO: 190 contains one or more of the following mutations: the aspartic acid at amino acid position 8 is phenylalanine, the glutamine at amino acid position 11 is histidine, the asparagine at amino acid position 12 is leucine, the glycine at amino acid position 17 is isoleucine, the threonine at amino acid position 23 is threonine encoded by a codon other than the wild type codon, the glycine at amino acid position 60 is histidine, the proline at amino acid position 64 is cysteine, the proline at amino acid position 64 is valine, the serine at amino acid position 65 is valine, the glycine at amino acid position 68 is isoleucine, the glycine at amino acid position 68 is alanine, or the valine at amino acid position 79 is proline.
  30. 209
    An isolated or recombinant nucleic acid comprising SEQ ED NOT 89, wherein SEQ ED NOT 89 comprises one or more or all of the following sequence variations:the nucleotides at positions 22 to 24 are TTC, the nucleotides at positions 22 to 24 are TTT, the nucleotides at positions 31 to 33 are CAC, the nucleotides at positions 31 to 33 are CAT, the nucleotides at positions 34 to 36 are TTG, the nucleotides at positions 34 to 36 are TTA, the nucleotides at positions 34 to 36 are CTC, the nucleotides at positions 34 to 36 are CTT, the nucleotides at positions 34 to 36 are CTA, the nucleotides at positions 34 to 36 are CTG, the nucleotides at positions 49 to 51 are ATA, the nucleotides at positions 49 to 51 are ATT, the nucleotides at positions 49 to 51 are ATC, the nucleotides at positions 178 to 180 are CAC, the nucleotides at positions 178 to 180 are CAT, the nucleotides at positions 190 to 192 are TGT, the nucleotides at positions 190 to 192 are TGC, the nucleotides at positions 190 to 192 are GTA, the nucleotides at positions 190 to 192 are GTT, the nucleotides at positions 190 to 192 are GTC, the nucleotides at positions 190 to 192 are GTG, the nucleotides at positions 193 to 195 are GTG, the nucleotides at positions 193 to 195 are GTC, the nucleotides at positions 193 to 195 are GTA, the nucleotides at positions 193 to 195 are GTT, the nucleotides at positions 202 to 204 are ATA, the nucleotides at positions 202 to 204 are ATT, the nucleotides at positions 202 to 204 are ATC, the nucleotides at positions 202 to 204 are GCT, the nucleotides at positions 202 to 204 are GCG, the nucleotides at positions 202 to 204 are GCC, the nucleotides at positions 202 to 204 are GCA, the nucleotides at positions 235 to 237 are CCA, the nucleotides at positions 235 to 237 are CCC, or the nucleotides at positions 235 to 237 are CCG.
  31. 210
    An isolated or recombinant polypeptide comprising an amino acid sequence comprising SEQ ED NO:190, wherein SEQ ED NO: 190 comprises one or more or all of the following sequence variations: the aspartic acid at amino acid position 8 is phenylalanine, the glutamine at amino acid position 11 is histidine, the asparagine at amino acid position 12 is leucine, the glycine at amino acid position 17 is isoleucine, the threonine at amino acid position 23 is threonine encoded by a codon other than the wild type codon, the glycine at amino acid position 60 is histidine, the proline at amino acid position 64 is cysteine, the proline at amino acid position 64 is valine, the serine at amino acid position 65 is valine, the glycine at amino acid position 68 is isoleucine, the glycine at amino acid position 68 is alanine, or the serine at amino acid position 79 is proline.
  32. 211
    An isolated or recombinant nucleic acid comprising SEQ ED NO:189, wherein SEQ ED NO: 189 comprises one or more or all sequence variations set forth in Table l or Table 2.
  33. 213
    An isolated or recombinant nucleic acid comprising SEQ ID NO:379, wherein SEQ BD NO:379 comprises one or more or all of the following sequence variations: the nucleotides at positions 22 to 24 are TTC, the nucleotides at positions 31 to 33 are CAC, the nucleotides at positions 49 to 51 are ATA, the nucleotides at positions 178 to 180 are CAC, the nucleotides at positions 193 to 195 are GTG, the nucleotides at positions 202 to 204 are GCT.
  34. 214
    An isolated or recombinant polypeptide comprising SEQ ID NO:380, wherein SEQ BD NO:380 comprises one or more or all of the following sequence variations: D8F, Q11H, G17I, G60H, S65N and/or G68A.
Independent claims34