IP Library Granted Patent US 10,378,024
Granted Patent B2
US 10,378,024 · App. 15/637,660 · Granted Aug 13, 2019

Optimized thionin protects plants against bacterial infections

Inventors: Eddie W Stover (Fort Pierce, FL); Goutam Gupta (Santa Fe, NM); Guixia Hao (Fort Pierce, FL)
Assignee: The United States of America, as Represented by the Secretary of Agriculture
C12N15/8281C07K7/08C07K14/415C07K2319/00
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Quick Facts
Patent No.
US 10,378,024
App. No.
15/637,660
Granted
Aug 13, 2019
Kind
B2
Abstract

Two small proteins with anti-bacterial activity are generated and called optimized thionin and optimized pro-thionin. Optimized pro-thionin contains a signal sequence for intracellular trafficking of the protein and is cleaved off to yield optimized thionin. Genetically altered plants and their progeny expressing a polynucleotide encoding optimized pro-thionin or optimized thionin resist diseases caused by bacteria.

Claims (22)

1. An optimized thionin comprising the amino acid sequence of SEQ ID NO: 14.

2. An optimized pro-thionin comprising the amino acid sequence of SEQ ID NO: 6.

3. A polynucleotide comprising a DNA sequence encoding said optimized pro-thionin of claim 2 .

4. An expression vector comprising a promoter operably linked to a polynucleotide encoding said optimized pro-thionin of claim 2 .

5. A genetically altered plant, a part or progeny thereof comprising a promoter operably linked to a polynucleotide encoding said optimized thionin of claim 1 , wherein said genetically altered plant, part or progeny thereof produce said optimized thionin.

6. A polynucleotide comprising a DNA sequence encoding said optimized thionin of claim 1 .

7. An expression vector comprising a promoter operably linked to a polynucleotide encoding said optimized thionin of claim 1 .

8. The genetically altered plant, part or progeny thereof of claim 5 , wherein said genetically altered plant, part, or progeny thereof is a citrus plant, part, or progeny thereof.

9. A genetically altered plant, a part or progeny thereof comprising a promoter operably linked to a polynucleotide encoding said optimized pro-thionin of claim 2 , wherein said genetically altered plant, part or progeny thereof produce said optimized pro-thionin.

10. The genetically altered plant, part or progeny thereof of claim 9 , wherein said genetically altered plant, part or progeny thereof is a citrus plant, part, or progeny thereof.

11. A method for constructing a genetically altered citrus plant, part or progeny thereof having increased resistance to citrus greening disease or canker compared to a non-genetically altered citrus plant, part, or progeny thereof, the method comprising:

(i) introducing said expression vector of claim 7 into a wild-type plant cell to produce an altered plant cell;

(ii) selecting said altered plant cell that produces said optimized thionin to generate a genetically altered plant cell, wherein said optimized thionin has anti-bacterial activity against said Candidatus Liberibacter species or X. citri ssp. citri;

(iii) growing said genetically altered plant cell into a genetically altered citrus plant that produces said optimized thionin, wherein said genetically altered citrus plant, part or progeny thereof has increased resistance to said citrus greening disease or said canker compared to resistance of said non-genetically altered citrus plant, part or progeny thereof to said citrus greening disease or said canker.

12. The method of claim 11 , wherein said introducing said expression vector occurs via introgression or transforming said non-genetically altered plant or part thereof with said expression vector.

13. A genetically altered citrus plant, part or progeny thereof produced by the method of claim 11 , wherein said genetically altered plant, part or progeny thereof produce said optimized thionin.

14. A method for constructing a genetically altered citrus plant, part or progeny thereof having increased resistance to citrus greening disease or canker compared to a non-genetically altered citrus plant, part, or progeny thereof, the method comprising:

(i) introducing said expression vector of claim 4 into a wild-type plant cell to produce an altered plant cell;

(ii) selecting said altered plant cell that produces said optimized pro-thionin to generate a genetically altered plant cell, wherein said optimized pro-thionin has anti-bacterial activity against said Candidatus Liberibacter species or X. citri ssp. citri;

(iii) growing said genetically altered plant cell into a genetically altered citrus plant that produces said optimized pro-thionin, wherein said genetically altered citrus plant, part or progeny thereof has increased resistance to said citrus greening disease or said canker compared to resistance of said non-genetically altered citrus plant, part or progeny thereof to said citrus greening disease or said canker.

15. The method of claim 14 , wherein said introducing said expression vector occurs via introgression or transforming said non-genetically altered plant or part thereof with said expression vector.

16. A genetically altered citrus plant, part or progeny thereof produced by the method of claim 14 , wherein said genetically altered plant, part or progeny thereof produce said optimized pro-thionin.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2018
From: LOS ALAMOS NATIONAL SECURITY, LLC
To: TRIAD NATIONAL SECURITY, LLC
Reel/Frame 047485/0471 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2017
From: GUPTA, GOUTAM
To: LOS ALAMOS NATIONAL SECURITY, LLC
Reel/Frame 042867/0808 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2017
From: STOVER, EDDIE W.; HAO, GUIXIA
To: THE UNITED STATES OF AMERICA, AS REPRESENTED BY THE SECRETARY OF AGRICULTURE
Reel/Frame 043051/0812 →
Continuity (2)
Division 14691780 · Apr 21, 2015
Related Publication 20170314038A1 · Nov 2, 2017