IP Library › Granted Patent US 11,168,334
Granted Patent B2
US 11,168,334 · App. 16/342,794 · Granted Nov 9, 2021

Constructs and methods to improve abiotic stress tolerance in plants

Inventors: Guangwu Chen (Beijing, CN); Chengfeng Du (Beijing, CN); Yang Gao (Beijing, CN); Zantang Li (Beijing, CN); Guihua Lu (Beijing, CN); Guanfan Mao (Beijing, CN); Changgui Wang (Beijing, CN); Guokui Wang (Beijing, CN)
C12N15/8273C07K14/415C12N9/22C12N15/11C12N15/8213C12N15/8218C12N15/8261C12N15/8271C12Q1/68C12Q1/6895C12N2310/20C12N2800/80Y02A40/146
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Quick Facts
Patent No.
US 11,168,334
App. No.
16/342,794
Granted
Nov 9, 2021
Kind
B2
Abstract

Isolated polynucleotides and polypeptides, and recombinant DNA constructs, suppression DNA constructs and CRISPR/Cas9 DNA constructs are provided. Compositions (such as plants or seeds) with modified expression or activity of the isolated polypeptides are obtained by transforming the regenerable plant cell with a suppression DNA construct or CRISPR/Cas construct. The plants with improving drought tolerance are obtained by decreasing the expression or activity of the isolated polynucleotide.

Claims (11)

1. A transgenic plant transformed with a recombinant nucleic acid molecule comprising an expression cassette which comprises a heterologous promoter operably linked to a DNA sequence encoding a gRNA molecule which targets one or more nucleotides in a regulatory element of a genomic region of a gene, wherein said gene encodes a polypeptide comprising an amino acid sequence that is at least 95% identical to the amino acid sequence as set forth in SEQ ID NO: 13, wherein said gRNA molecule produces genetic modifications in said regulatory element of said gene which is endogenous to said transformed plant, wherein said gRNA molecule and said genetic modifications are produced using CRISPR/Cas system, wherein the genetic modifications decreases the expression of said polypeptide when compared to the expression of the polypeptide in a control plant of the same species lacking said recombinant nucleic acid molecule, and wherein said genetic modifications in said transgenic plant result in at least one phenotype selected from the group consisting of increased drought tolerance, increased grain yield, increased abiotic stress tolerance and increased biomass, as compared to the control plant.

2. The transgenic plant of claim 1 , wherein the genetic modifications comprising one or more nucleotide modifications in the genomic region of the gene comprising a nucleotide sequence having at least 90% nucleotide sequence identity to the nucleotide sequence as set forth in SEQ ID NO: 12.

3. The transgenic plant of claim 1 , wherein the transgenic plant exhibits increased drought tolerance.

4. The transgenic plant of claim 1 , wherein the transgenic plant is selected from the group consisting of rice, maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, barley, millet, sugarcane and switchgrass.

5. A method of increasing drought tolerance in a plant, comprising:

(i) transforming plant cells with a recombinant nucleic acid molecule comprising an expression cassette which comprises a heterologous promoter operably linked to a DNA sequence encoding a gRNA molecule which targets one or more nucleotides in a regulatory element of a genomic region of a gene, wherein said gene encodes a polypeptide comprising an amino acid sequence that is at least 95% identical to the amino acid sequence as set forth in SEQ ID NO: 13, wherein said gRNA molecule produces genetic modifications in said regulatory element of said gene which is endogenous to said transformed plant, wherein said gRNA molecule and said genetic modifications are produced using CRISPR/Cas system, wherein the genetic modifications decrease the expression of said polypeptide when compared to the expression of the polypeptide in a control plant of the same species lacking said recombinant nucleic acid molecule;

(ii) regenerating transgenic plants from said transformed plant cells of step (i); and

(iii) selecting a transgenic plant from said regenerated transgenic plants of step (ii) that expresses said gRNA molecule in said selected transgenic plant and exhibits increase in drought tolerance as compared to the control plant of the same species lacking said recombinant nucleic acid molecule.

6. The method of claim 5 , wherein the genetic modifications comprising one or more nucleotide modifications in the genomic region of the gene comprising a nucleotide sequence having at least 90% nucleotide sequence identity to the nucleotide sequence as set forth in SEQ ID NO: 12.

7. The method of claim 5 , wherein the said transgenic plant is selected from the group consisting of rice, maize, soybean, sunflower, sorghum, canola, wheat, alfalfa, cotton, barley, millet, sugar cane and switchgrass.

8. The method of claim 5 , further comprising harvesting transgenic plant seeds from the selected transgenic plant of step (iii) and obtaining transgenic progeny plants.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2020
From: CHEN, GUANG WU; DU, CHENGFENG; GAO, YANG; LI, ZANTANG; LU, GUIHUA; MAO, GUANFAN; WANG, CHANGGUI; WANG, GUOKUI
To: PIONEER OVERSEAS CORPORATION; SINOBIOWAY BIO-AGRICULTURE GROUP CO LTD
Reel/Frame 052523/0655 →
Priority Claims (1)
CN 201610909055.3 · Oct 19, 2016 · national
Continuity (1)
Related Publication 20190292557A1 · Sep 26, 2019