Nova Patents
EP1560484A2

Refined plant transformation

Abstract

The present invention provides methods for producing transgenic plants based on an optimized transfer of DNA from Agrobacterium to plant cells, and/or on an optimized integration of the transferred DNAs into plant cell genomes. It also provides Agrobacterium-transformation vectors that can be used to limit or eliminate the transfer of undesirable DNA. The present invention can be applied to essentially any species of plants, including many recalcitrant plant species.

Term

Term ended

Projected expiry passed 20 March 2023, 3.5 years ago.

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198 claims: 12 independent, 186 dependent

  1. 1
    Claims of equivalent WO 03079765 A2 WHAT IS CLAIMED IS:1 . A method for producing a transgenic plant, comprising (a) agitating a solution comprising a germinating plant seedling, or explant thereof, and at least one Agrobacterium strain that harbors a plasmid vector carrying a desired polynucleotide;(b) cultivating said seedling to produce a plant;and (c) screening said plant to determine if said desired polynucleotide is integrated into the genome of at least one cell of said plant, wherein said plant is stably transformed, and wherein the step of agitating the solution does not comprise sonication.
  2. 37
    A vector, which can be maintained in Agrobacterium, comprising:(a) a T-DNA or a P-DNA that comprises (i) a desired polynucleotide, and (ii) a selectable marker gene that is operably linked to a terminator not naturally expressed in plants, and (b) a backbone integration marker gene, wherein said desired polynucleotide and said selectable marker gene are positioned between said border sequences of said T-DNA or between said border-like sequences of said P-DNA, and wherein said backbone integration marker gene is not positioned within said T-DNA or within said P-DNA.
  3. 56
    A method for producing a transgenic plant, comprising:(A) infecting plant tissue with an Agrobacterium transformation vector that comprises (i) a T-DNA or a P-DNA that comprises (a) said desired polynucleotide, and (b) a selectable marker gene operably linked to a terminator that is not naturally expressed in plants;and (ii) a backbone integration marker gene, wherein said desired polynucleotide and said selectable marker gene are positioned between said border sequences of said T-DNA or between said border-like sequences of said P-DNA, and wherein said backbone integration marker gene is not positioned within said T-DNA or within said P-DNA;(B) cultivating said seedling to produce plants;and (C) screening said plants for stable integration of said desired polynucleotide.
  4. 79
    A method of modifying the expression of a functional gene in a plant cell comprising:(a) constructing a first T-DNA or P-DNA that comprises a desired polynucleotide that is capable of modifying the expression of a functional gene in a plant cell;(b) constructing a second T-DNA or P-DNA that comprises a selectable marker gene operably linked to a promoter and terminator, wherein said terminator does not naturally occur in plants;(c) exposing germinating plant seedlings to one or more Agrobacterium strains that contain said first T-DNA or P-DNA and said second T-DNA or P-DNA;(d) selecting only those transformed seedlings that transiently express said selectable marker gene;and (e) selecting from the seedlings of (d), a seedling that comprises in its genome said desired polynucleotide but not said selectable marker;wherein expression of said desired polynucleotide in the seedling of (e) modifies the expression of a functional gene in a plant cell in said seedling.
  5. 88
    A method for producing a transgenic plant, comprising:(A) infecting a germinating plant seedling with an Agrobacterium transformation vector that comprises (i) a T-DNA or a P-DNA that comprises (a) said desired polynucleotide, and (b) a gene operably linked to a terminator that is not naturally expressed in plants, wherein said gene confers fertilizer tolerance to plants in which it is expressed;and (ii) a cytokinin gene, wherein said desired polynucleotide and said selectable marker gene are flanked by said border sequences of said T-DNA or by said border-like sequences of said P-DNA;(B) transferring said transformed seedling to soil and allowing them to grow into plants;(C) exposing said plants to 0.05% to 20% hydrogen cyanamide.
  6. 91
    A method for producing a transgenic plant, comprising (a) vortexing a solution comprising a germinating plant seedling and at least one Agrobacterium strain that harbors a vector carrying a desired polynucleotide;(b) transferring said Agrobacterium-transformed seedling to soil, and exposing said transformed seedling to conditions that promote growth;and (d) screening said plants to determine if said desired polynucleotide is integrated into the genome of at least one cell of said plant, wherein a plant comprising said desired polynucleotide in said genome is a transgenic plant.
  7. 120
    1 20. A method for producing a transgenic plant, comprising (a) vortexing a solution comprising a germinating plant seedling and at least one Agrobacterium strain that harbors a vector carrying a desired polynucleotide;(b) (i) producing callus from said transformed seedling;(iii) inducing shoot and root formation from said callus to produce a plantlet;(c) growing said plantlets into plants;and (d) screening said plants to determine if said desired polynucleotide is incorporated into the genome of at least one cell of said plant, wherein a plant comprising said desired polynucleotide in said genome is a transgenic plant.
  8. 161
    1 61 . A polynucleotide that has at least 90% sequence identity to any one of SEQ ID NOs. 1 , 6, or 9.
  9. 162
    1 62. A cyanamide tolerance gene comprising the sequence of SEQ ID NO. 1 .
  10. 163
    1 63. A rice actin-1 gene terminator sequence comprising the sequence of SEQ ID NO. 6.
  11. 164
    1 64. A plant-like promoter, comprising the sequence of SEQ ID NO. 9.
  12. 195
    1 95. A method for producing a transgenic plant, comprising transforming a germinating plant seedling, or explant thereof, with a desired polynucleotide, wherein the seedling is exposed to a chemical prior to, during, and/or after transformation with a chemical that induces double stranded DNA breaks in the genome of a cell of said plant tissue.