IP Library Granted Patent US 11,371,011
Granted Patent B2
US 11,371,011 · App. 15/476,257 · Granted Jun 28, 2022

Beneficial microbes for delivery of effector peptides or proteins and use thereof

Inventor: Zhongmin Wei (Kirkland, WA)
Assignee: PLANT HEALTH CARE, INC.
C12N1/20C07K14/27C07K14/32C12N1/14
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Quick Facts
Patent No.
US 11,371,011
App. No.
15/476,257
Granted
Jun 28, 2022
Kind
B2
Abstract

Disclosed are recombinant host cells comprising a promoter-effective nucleic acid molecule operably coupled to a nucleic acid molecule that encodes a plant effector protein or polypeptide that induces an active plant response including, among others, growth enhancement, disease resistance, pest or insect resistance, and stress resistance. Use of these recombinant host cells for modulating plant biochemical signaling, imparting disease resistance to plants, enhancing plant growth, imparting tolerance to biotic stress, imparting tolerance and resistance to abiotic stress, imparting desiccation resistance to cuttings removed from ornamental plants, imparting post-harvest disease or post-harvest desiccation resistance to a fruit or vegetable, or enhancing the longevity of fruit or vegetable ripeness are also disclosed.

Claims (83)

1. A recombinant host cell comprising a transgene that comprises a promoter-effective nucleic acid molecule operably coupled to a nucleic acid molecule that encodes a plant effector polypeptide, wherein the recombinant host cell is a microbe having an endogenous gene that imparts a first benefit to a plant grown in the presence of the recombinant microbe and the plant effector polypeptide imparts a second benefit to the plant grown in the presence of the recombinant microbe, wherein said first benefit and said second benefit are distinct, and wherein the encoded plant effector polypeptide either:

(i) comprises the amino acid sequence of (L/M)XXLLXXLLXXLL (SEQ ID NO: 21) and includes up to 11 additional amino acids at the N-terminal end thereof, up to 10 additional amino acids at the C-terminal end thereof, or both, wherein

X at position 2 is A, S, T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 3 is Q, A, S, T, G, D, isoD, E, γ-glutamate, or N;

X at position 6 is A, S, T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 7 is Q, A, S, T, G, D, isoD, γ-glutamate, or N;

X at position 10 is K, A, S, T, G, D, isoD, E, γ-glutamate, Q, or N; and

X at position 11 is S, A, T, G, D, isoD, E, γ-glutamate, Q, or N; or

(ii) consists of the amino acid sequence of XXXXXXXXXXX(L/M)XXLLXXLLXXLLXXX (SEQ ID NO: 49), wherein

X at position 1 is optional and, when present, is selected from Q, S, E, γ-glutamate, A, T, G, D, isoD, N, K, or R;

X at position 2 is optional and, when present, is selected from Q, S, E, γ-glutamate, A, T, G, D, isoD, N, K, or R;

X at position 3 is optional and, when present, is selected from P, Q, S, E, γ-glutamate, A, T, G, D, isoD, N, K, or R;

X at position 4 is optional and, when present, is selected from I, Q, S, E, γ-glutamate, A, T, G, D, N, isoD, K, or R;

X at position 5 is optional and, when present, is selected from D, isoD, S, E, γ-glutamate, A, T, G, N, Q, K, or R;

X at position 6 is optional and, when present, is selected from R, Q, S, E, γ-glutamate, A, T, G, D, isoD, N, or K;

X of position 7 is optional and, when present, is selected from Q, S, E, γ-glutamate, A, T, G, D, isoD, N, K, or R;

X at position 8 is optional and, when present, is selected from T, Q, S, E, γ-glutamate, A, G, D, isoD, N, K, or R;

X at position 9 is optional and, when present, is selected from I, Q, S, E, γ-glutamate, A, T, G, D, isoD, N, K, or R;

X at position 10 is optional and, when present, is selected from E, γ-glutamate, Q, S, A, T, G, D, isoD, N, K, or R;

X at position 11 is optional and, when present, is selected from Q, S, E, γ-glutamate, A, T, G, D, isoD, N, K, or R;

X at position 13 is A, S, T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 14 is Q, A, S, T, G, D, isoD, E, γ-glutamate, or N;

X at position 17 is A, S, T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 18 is Q, A, S, T, G, D, isoD, γ-glutamate, or N;

X at position 21 is K, A, S, T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 22 is S, A,T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 25 is optional and, when present, is selected from S, A, T, G, D, isoD, E, γ-glutamate, Q, or N;

X at position 26 is optional and, when present, is selected from P, S, A, T, G, D, isoD, E, γ-glutamate, Q, or N; and

X at position 27 is optional and, when present, is selected from Q, S, A, T, G, D, isoD, E, γ-glutamate, or N.

2. The recombinant host cell according to claim 1 , wherein the microbe is a bacterium.

3. The recombinant host cell according to claim 1 , wherein the microbe is a fungus.

4. The recombinant host cell according to claim 1 , wherein the transgene is stably integrated into the genome of the microbe.

5. The recombinant host cell according to claim 1 , wherein the transgene is present in an expression vector.

6. The recombinant host cell according to claim 1 , wherein the recombinant microbe is epiphytic.

7. The recombinant host cell according to claim 1 , wherein the recombinant microbe is endophytic.

8. The recombinant host cell according to claim 1 , wherein the first benefit comprises providing nutrition to a plant, producing plant hormone analogs that stimulate growth or reduce stress signaling, or competing with pathogenic organisms.

9. The recombinant host cell according to claim 1 , wherein the second benefit comprises disease resistance, growth enhancement, tolerance and resistance to biotic stressors, tolerance to abiotic stress, desiccation resistance for cuttings removed from ornamental plants, post-harvest disease resistance or desiccation resistance to fruit or vegetables harvested from plants, and/or improved longevity of fruit or vegetable ripeness for fruit or vegetables harvested from plants.

10. A composition comprising a plurality of recombinant host cells according to claim 1 .

11. The composition according to claim 10 , wherein the composition is in the form of a dry powder.

12. The composition according to claim 11 , wherein the dry powder comprises a carrier and the recombinant host cell.

13. The composition according to claim 10 , wherein the composition is in the form of an aqueous solution or suspension.

14. The composition according to claim 10 , wherein the composition comprises a mixture of two or more different recombinant host cells.

15. A mixture comprising one or more plant seeds and a composition according to claim 10 .

16. A method for treating plant seeds comprising:

providing one or more plant seeds; and

applying to the provided one or more plant seeds a recombinant host cell according to claim 1 .

17. The method according to claim 16 , wherein said applying comprises mixing a dry powder comprises the recombinant host cells with the one or more plants seeds.

18. The method according to claim 16 , wherein said applying comprises soaking or spraying the one or more plant seeds with an aqueous solution or suspension comprising the recombinant host cells.

19. A method for treating plants comprising:

providing one or more plants; and

applying to the provided one or more plants a recombinant host cell according to claim 1 .

20. The method according to claim 19 , wherein said applying comprises spraying the one or more plants with an aqueous solution or suspension comprising the recombinant host cells.

21. The method according to claim 19 , wherein said applying comprises dusting the one or more plants with a dry powder comprising the recombinant host cells.

22. A method for treating plants comprising:

applying to a locus where plants are being grown or will be grown a recombinant host cell according to claim 1 and

growing one or more plants at the locus where the recombinant host cell is applied.

23. The method according to claim 22 , wherein the recombinant host cell is applied prior to planting seeds or one or more seedlings at the locus.

24. The method according to claim 22 , wherein the recombinant host cell is applied after planting seeds or one or more seedlings at the locus.

25. The method according to claim 22 , wherein the recombinant host cell is applied to the locus while plants are being grown at the locus.

26. The method according to claim 22 , wherein the locus comprises artificial or natural soil, a polymer growth medium, or a hydroponic growth medium.

27. A method of imparting disease resistance to plants comprising:

applying an effective amount of a recombinant host cell according to claim 1 to a plant or plant seed or the locus where the plant is growing or will be grown, wherein said applying is effective to impart disease resistance to the plant.

28. A method of enhancing plant growth comprising:

applying an effective amount of a recombinant host cell according to claim 1 to a plant or plant seed or the locus where the plant is growing or will be grown, wherein said applying is effective to enhance plant growth.

29. A method of increasing a plant's tolerance to biotic stress comprising:

applying an effective amount of a recombinant host cell according to claim 1 to a plant or plant seed or the locus where the plant is growing or will be grown, wherein said applying is effective to increase the plant's tolerance to biotic stress factors selected from the group consisting of insects, arachnids, nematodes, weeds, and combinations thereof.

30. A method of increasing a plant's tolerance to abiotic stress comprising:

applying an effective amount of a recombinant host cell according to claim 1 to a plant or plant seed or the locus where the plant is growing or will be grown, wherein said applying is effective to increase the plant's tolerance to abiotic stress factors selected from the group consisting of salt stress, water stress, ozone stress, heavy metal stress, cold stress, heat stress, nutritional stress, and combinations thereof.

31. A recombinant host cell comprising a transgene that comprises a promoter-effective nucleic acid molecule operably coupled to a nucleic acid molecule that encodes a plant effector polypeptide, wherein the recombinant host cell is a microbe having an endogenous gene that imparts a first benefit to a plant grown in the presence of the recombinant microbe and the plant effector polypeptide imparts a second benefit to the plant grown in the present of the recombinant microbe, wherein said first benefit and said second benefit are distinct, and wherein the encoded plant effector polypeptide has the amino acid sequence consisting essentially of:

Peptide 

Sequence 

Name

Peptide Amino Acid Sequence

Identifier

P18

QQPIDRQTIEQMAQLLAQLLKSLLSPQ

(SEQ ID 

NO: 25) or

K/R→E P18 

QQPIDEQTIEQMAQLLAQLLESLLSPQR

(SEQ ID 

variant

NO: 44).

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 73971 FRAME: 29. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 5, 2026
From: PLANT HEALTH CARE, INC.
To: PI AGSCIENCES, INC.
Reel/Frame 075041/0760 →
CHANGE OF NAME Recorded Dec 19, 2025
From: PLANT HEALTH CARE, INC.
To: PI AGSCIENCES, INC.
Reel/Frame 073971/0029 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2017
From: WEI, ZHONGMIN
To: PLANT HEALTH CARE, INC.
Reel/Frame 042822/0945 →
Continuity (2)
Provisional Application 62319150 · Apr 6, 2016
Related Publication 20170292108A1 · Oct 12, 2017