IP Library Granted Patent US 11,807,876
Granted Patent B2
US 11,807,876 · App. 17/107,108 · Granted Nov 7, 2023

P-coumaroyl-CoA:monolignol transferases

Inventors: John Ralph (Madison, WI); Steven D. Karlen (Madison, WI); Rebecca Anne Smith (Madison, WI); Brian Fox (Madison, WI); Emily Beebe (Stoughton, WI); Craig Bingman (Fitchburg, WI)
Assignee: Wisconsin Alumni Research Foundation
C12N9/1029C12N15/8255
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Quick Facts
Patent No.
US 11,807,876
App. No.
17/107,108
Granted
Nov 7, 2023
Kind
B2
Abstract

The invention is directed to p-coumaroyl-CoA:monolignol transferase enzymes, nucleic acids encoding p-coumaroyl-CoA:monolignol transferase enzymes, and inhibitory nucleic acids adapted to inhibit the expression and/or translation of p-coumaroyl-CoA:monolignol transferase RNA; expression cassettes, plant cells, and plants that have or encode such nucleic acids and enzymes; and methods of making and using such nucleic acids, enzymes, expression cassettes, cells, and plants.

Claims (13)

1. A transgenic plant comprising an isolated nucleic acid molecule, wherein the isolated nucleic acid molecule comprises a nucleotide sequence encoding a polypeptide having p-coumaroyl-CoA:monolignol transferase activity, wherein the polypeptide comprises an amino acid sequence having at least 95% amino acid sequence identity to the amino acid sequence as set forth in SEQ ID NO:2, wherein the nucleotide sequence is operably linked to a heterologous promoter functional or active in a plant cell, and wherein expression of the polypeptide in the transgenic plant increases percent of monolignol coumarates in the transgenic plant's lignin as compared to a control plant of the same species lacking the isolated nucleic acid molecule and grown under identical conditions.

2. The transgenic plant of claim 1 , wherein the transgenic plant does not have an increased percent of monolignol ferulates in the transgenic plant's lignin as compared to the control plant.

3. The transgenic plant of claim 1 , wherein genome of the transgenic plant is stably transformed with the isolated nucleic acid molecule.

4. The transgenic plant of claim 1 , wherein the heterologous promoter is functional or active during plant growth or development.

5. The transgenic plant of claim 1 , wherein the heterologous promoter is functional or active in a woody tissue of a plant.

6. The transgenic plant of claim 1 , wherein the polypeptide has the amino acid sequence as set forth in SEQ ID NO:2.

7. A transgenic seed obtained from the transgenic plant of claim 1 , wherein the transgenic seed comprises the isolated nucleic acid molecule.

8. The transgenic seed of claim 7 , wherein the polypeptide has the amino acid sequence as set forth in SEQ ID NO:2.

9. A method for increasing a content of monolignol coumarates in lignin within a plant, comprising: (a) planting the transgenic seed of claim 7 ; and (b) cultivating a transgenic plant germinated from the transgenic seed, wherein expression of the polypeptide in the germinated transgenic plant increases the content of monolignol coumarates in the lignin within the germinated transgenic plant as compared to a control plant lacking the isolated nucleic acid molecule and grown under identical growth conditions.

10. A method of obtaining a plant having increased content of monolignol coumarates in lignin within the plant, comprising the steps:

(i) stably transforming plant cells with an isolated nucleic acid molecule, wherein the isolated nucleic acid molecule comprises a nucleotide sequence encoding a polypeptide having p-coumaroyl-CoA:monolignol transferase activity, wherein the polypeptide comprises an amino acid sequence having at least 95% amino acid sequence identity to the amino acid sequence as set forth in SEQ ID NO:2, wherein the nucleotide sequence is operably linked to a heterologous promoter functional or active in a plant cell; and

(ii) regenerating a transgenic plant with the stably transformed plant cells from step (i), wherein genome of the regenerated transgenic plant is stably transformed with the isolated nucleic acid molecule, and wherein the regenerated transgenic plant has increased percent of monolignol coumarates in the regenerated transgenic plant's lignin as compared to a control plant of the same species lacking the isolated nucleic acid molecule and grown under identical conditions.

11. The method of claim 10 , wherein the polypeptide has the amino acid sequence as set forth in SEQ ID NO:2.

Assignments (2)
CONFIRMATORY LICENSE Recorded Feb 26, 2021
From: UNIVERSITY OF WISCONSIN-MADISON
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 055434/0452 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2020
From: SMITH, REBECCA; BEEBE, EMILY; BINGMAN, CRAIG; FOX, BRIAN; KARLEN, STEVEN; RALPH, JOHN
To: WISCONSIN ALUMNI RESEARCH FOUNDATION
Reel/Frame 054518/0858 →
Continuity (3)
Division 15956089 · Apr 18, 2018
Provisional Application 62486606 · Apr 18, 2017
Related Publication 20210095263A1 · Apr 1, 2021