IP Library Granted Patent US 9,650,646
Granted Patent B2
US 9,650,646 · App. 14/329,225 · Granted May 16, 2017

Materials and methods to increase plant growth and yield

Inventor: Matias Kirst (Gainesville, FL)
Assignee: University of Florida Research Foundation, Inc.
C12N15/8273C07K14/415C12N15/8261
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Quick Facts
Patent No.
US 9,650,646
App. No.
14/329,225
Granted
May 16, 2017
Kind
B2
Abstract

The present invention relates to materials and methods for modulating growth rates, yield, and/or resistance to drought conditions in plants. In one embodiment, a method of the invention comprises increasing expression of an hc1 gene (or a homolog thereof that provides for substantially the same activity), or increasing expression or activity of the protein encoded by an hc1 gene thereof, in a plant, wherein expression of the hc1 gene or expression or activity of the protein encoded by an hc1 gene results in increased growth rate, yield, and/or drought resistance in the plant.

Claims (30)

1. A method for increasing growth rate, yield, and/or resistance to drought conditions in a plant, comprising expressing in said plant a polynucleotide comprising a nucleotide sequence encoding a polypeptide having at least 95% sequence identity to the amino acid sequence of SEQ ID NO:10, wherein said expressing increases growth rate, yield, and/or resistance to drought conditions in the plant relative to a plant wherein the polynucleotide has not been introduced, and wherein the polynucleotide is operably linked to a heterologous regulatory element.

2. The method according to claim 1 , wherein said plant is of the genus Abies, Acacia, Acer, Aegilops, Aesculus, Ailanthus, Alnus, Amborella, Amelanchier, Arabidopsis, Arbutus, Arctostaphylos, Artemisia, Asiminia, Atriplex, Aucuba, Berberis, Betula, Brachypodium, Buddleia, Buxus, Calocedrus, Camellia, Campsis, Capsella, Carpinus, Carya, Castanea, Catalpa, Ceanothus, Cedrus, Celastrus, Celtis, Cephalanthus, Cercidium, Cercis, Chaenomeles, Chamaecyparis, Chilopsis, Chionanthus, Chrysothamnus, Cicer, Cistus, Citrus, Cladrastis, Clematis, Coleogynia, Cornus, Corylus, Cotinus, Cotoneaster, Cowania, Crataegus, Crataegus, Cucumis, Cupressus, Cytisus, Daphne, Deutzia, Diospyros, Elaeagnus, Ephedra, Erythranthe, Escallonia, Eucalyptus, Euonymus, Eutrema, Fagus, Forsythia, Fragaria, Fraxinus, Gaultheria, Genlisea, Ginkgo, Gleditsia, Glycine, Grevillea, Gymnocladus, Hamamelis, Hebe, Hibiscus, Hordeum, Hydrangea, Hypericum, Ilex, Juglans, Juniperus, Kalmia, Kerria, Koelreuteria, Lagerstroemia, Larix, Larrea, Libocedrus, Ligustrum, Liquidambar, Liriodendron, Lonicera, Lotus, Maclura, Magnolia, Mahonia, Malus, Medicago, Menispermum, Morus, Myrica, Nyssa, Oryza, Osmanthus, Ostrya, Oxydendron, Parthenocissus, Phaseolus, Philadelphus, Photinia, Physocarpus, Picea, Pinus, Pittosporum, Platanus, Populus, Prosopis, Prunus, Pseudotsuga, Ptelea, Purshia, Pyrus, Quercus, Rhamnus, Rhaphiolepis, Rhododendron, Rhus, Ribes, Ricinus, Robinia, Rosa, Rubus, Salix, Sambucus, Sassafras, Sequoia, Setaria, Shepherdia, Smilax, Solanum, Sophora, Sorbus, Sorghum, Spiraea, Staphylea, Stewartia, Symphoricarpos, Syringa, Taxodium, Taxus, Theobroma, Thuja, Tilia, Triticum, Tsuga, Ulmus, Umbellularia, Vaccinium, Viburnum, Vitis, Zanthoxylum, Zea , or Zelkova.

3. The method according to claim 1 , wherein said polynucleotide is stably incorporated into the genome of said plant.

4. The method according to claim 1 , wherein the heterologous regulatory element has been inserted into the genome of said plant.

5. The method of claim 1 , wherein said heterologous regulatory element is a promoter.

6. The method of claim 5 , wherein said promoter is inserted into the plant genome within about 2 kbp of said polynucleotide.

7. The method of claim 5 , wherein said promoter is a cauliflower mosaic virus 35S promoter, an enhanced CaMV 35S promoter, a CaMV 19S promoter, a cassava vein mosaic virus promoter, a prolifera promoter, an Ap3 promoter, a heat shock promoter, a T-DNA 1′- or 2′-promoter of A. tumefaciens , a polygalacturonase promoter, achalcone synthase A (CHS-A) promoter, a PR-1α promoter, a ubiquitin promoter, an actin promoter, an alcA gene promoter, a pin2 promoter, a maize WipI promoter, a maize trpA gene promoter, a maize CDPK gene promoter, a RUBISCO SSU promoter, a Cald5H promoter, a SAD promoter, a XCP1 promoter, a CAD promoter, a CesA1 promoter, a CesA2 promoter, a CesA3 promoter, a tubulin gene (TUB) promoter, a lipid transfer protein gene (LTP) promoter, a coumarate-4-hydroxylase gene (C4H) promoter, a Cab1 promoter, a Cab19 promoter, a PPDK promoter, a ribulose biphosphate carboxylase (RBCS) promoter, an Act1 promoter, an AS-1 promoter, a RBC-3A promoter, a Figwort Mosaic Virus (FMV) promoter, a mannopine synthase (mas) promoter, an octopine synthase (ocs) promoter, a nos promoter, an Adh promoter, a sucrose synthase promoter, an α-tubulin promoter, an actin promoter, a cab promoter, a PEPCase promoter, a promoter associated with a R gene complex, a 4-coumarate Co-enzyme A ligase (4CL) promoter, a β-phaseolin promoter, a glycinin promoter, or a MEG1 promoter.

8. The method of claim 1 , wherein said heterologous regulatory element is an enhancer.

9. The method of claim 8 , wherein said enhancer is a CaMV 35S enhancer, a SV40 enhancer, a maize shrunken-1 enhancer, a PetE enhancer, or a rice α-amylase enhancer.

10. A transformed or transgenic plant, plant tissue, or plant cell having increased growth rate, yield, and/or resistance to drought conditions, wherein said plant, plant tissue, or plant cell comprises a polynucleotide that comprises a nucleotide sequence encoding a polypeptide having at least 95% sequence identity to the amino acid sequence of SEQ ID NO:10, wherein said polypeptide increases growth rate, yield, and/or resistance to drought conditions in said plant plant tissue or plant cell relative to a plant, plant tissue or plant cell wherein said polynucleotide has not been introduced, and wherein the polynucleotide is operably linked to a heterologous regulatory element.

11. The transformed or transgenic plant, plant tissue, or plant cell according to claim 10 , wherein said plant is of the genus Abies, Acacia, Acer, Aegilops, Aesculus, Ailanthus, Alnus, Amborella, Amelanchier, Arabidopsis, Arbutus, Arctostaphylos, Artemisia, Asiminia, Atriplex, Aucuba, Berberis, Betula, Brachypodium, Buddleia, Buxus, Calocedrus, Camellia, Campsis, Capsella, Carpinus, Carya, Castanea, Catalpa, Ceanothus, Cedrus, Celastrus, Celtis, Cephalanthus, Cercidium, Cercis, Chaenomeles, Chamaecyparis, Chilopsis, Chionanthus, Chrysothamnus, Cicer, Cistus, Citrus, Cladrastis, Clematis, Coleogynia, Cornus, Corylus, Cotinus, Cotoneaster, Cowania, Crataegus, Crataegus, Cucumis, Cupressus, Cytisus, Daphne, Deutzia, Diospyros, Elaeagnus, Ephedra, Erythranthe, Escallonia, Eucalyptus, Euonymus, Eutrema, Fagus, Forsythia, Fragaria, Fraxinus, Gaultheria, Genlisea, Ginkgo, Gleditsia, Glycine, Grevillea, Gymnocladus, Hamamelis, Hebe, Hibiscus, Hordeum, Hydrangea, Hypericum, Ilex, Juglans, Juniperus, Kalmia, Kerria, Koelreuteria, Lagerstroemia, Larix, Larrea, Libocedrus, Ligustrum, Liquidambar, Liriodendron, Lonicera, Lotus, Maclura, Magnolia, Mahonia, Malus, Medicago, Menispermum, Morus, Myrica, Nyssa, Oryza, Osmanthus, Ostrya, Oxydendron, Parthenocissus, Phaseolus, Philadelphus, Photinia, Physocarpus, Picea, Pinus, Pittosporum, Platanus, Populus, Prosopis, Prunus, Pseudotsuga, Ptelea, Purshia, Pyrus, Quercus, Rhamnus, Rhaphiolepis, Rhododendron, Rhus, Ribes, Ricinus, Robinia, Rosa, Rubus, Salix, Sambucus, Sassafras, Sequoia, Setaria, Shepherdia, Smilax, Solanum, Sophora, Sorbus, Sorghum, Spiraea, Staphylea, Stewartia, Symphoricarpos, Syringa, Taxodium, Taxus, Theobroma, Thuja, Tilia, Triticum, Tsuga, Ulmus, Umbellularia, Vaccinium, Viburnum, Vitis, Zanthoxylum, Zea , or Zelkova.

12. The transformed or transgenic plant, plant tissue, or plant cell according to claim 10 , wherein said polynucleotide is stably incorporated into the genome of said transformed or transgenic plant, plant tissue, or plant cell.

13. The transformed or transgenic plant, plant tissue, or plant cell according to claim 10 , wherein the heterologous regulatory element has been inserted into the genome of said transformed or transgenic plant, plant tissue, or plant cell.

14. The transformed or transgenic plant, plant tissue, or plant cell according to claim 13 , wherein said heterologous regulatory element is a promoter.

15. The transformed or transgenic plant, plant tissue, or plant cell according to claim 14 , wherein said promoter is inserted into the plant genome within about 2 kbp of said polynucleotide.

16. The transformed or transgenic plant, plant tissue, or plant cell according to claim 15 , wherein said promoter is cauliflower mosaic virus 35S promoter, an enhanced CaMV 35S promoter, a CaMV 19S promoter, a cassava vein mosaic virus promoter, a prolifera promoter, an Ap3 promoter, a heat shock promoter, a T-DNA 1′- or 2′-promoter of A. tumefaciens , a polygalacturonase promoter, achalcone synthase A (CHS-A) promoter, a PR-1α promoter, a ubiquitin promoter, an actin promoter, an alcA gene promoter, a pin2 promoter, a maize WipI promoter, a maize trpA gene promoter, a maize CDPK gene promoter, a RUBISCO SSU promoter, a Cald5H promoter, a SAD promoter, a XCP1 promoter, a CAD promoter, a CesA1 promoter, a CesA2 promoter, a CesA3 promoter, a tubulin gene (TUB) promoter, a lipid transfer protein gene (LTP) promoter, a coumarate-4-hydroxylase gene (C4H) promoter, a Cab1 promoter, a Cab19 promoter, a PPDK promoter, a ribulose biphosphate carboxylase (RBCS) promoter, an Act1 promoter, an AS-1 promoter, a RBC-3A promoter, a Figwort Mosaic Virus (FMV) promoter, a mannopine synthase (mas) promoter, an octopine synthase (ocs) promoter, a nos promoter, an Adh promoter, a sucrose synthase promoter, an α-tubulin promoter, an actin promoter, a cab promoter, a PEPCase promoter, a promoter associated with a R gene complex, a 4-coumarate Co-enzyme A ligase (4CL) promoter, a β-phaseolin promoter, a glycinin promoter, or a MEG1 promoter.

17. The transformed or transgenic plant, plant tissue, or plant cell according to claim 13 , wherein said heterologous regulatory element is an enhancer.

18. The transformed or transgenic plant, plant tissue, or plant cell according to claim 17 , wherein said enhancer is a CaMV 35S enhancer, a SV40 enhancer, a maize shrunken-1 enhancer, a PetE enhancer, or a rice α-amylase enhancer.

19. A method for preparing a transformed or transgenic plant, plant tissue, or plant cell having increased growth rate, yield, and/or resistance to drought conditions comprising incorporating a polynucleotide in a cell of said plant, wherein said polynucleotide comprises a nucleotide sequence encoding a polypeptide having at least 95% sequence identity to the amino acid sequence of SEQ ID NO:10, wherein said polypeptide increases growth rate, yield, and/or resistance to drought conditions in said plant, plant tissue or plant cell relative to a plant, plant tissue or plant cell wherein said polynucleotide has not been introduced, and wherein the polynucleotide is linked to a heterologous regulatory element.

20. The method according to claim 19 , wherein said plant is of the genus Abies, Acacia, Acer, Aegilops, Aesculus, Ailanthus, Alnus, Amborella, Amelanchier, Arabidopsis, Arbutus, Arctostaphylos, Artemisia, Asiminia, Atriplex, Aucuba, Berberis, Betula, Brachypodium, Buddleia, Buxus, Calocedrus, Camellia, Campsis, Capsella, Carpinus, Carya, Castanea, Catalpa, Ceanothus, Cedrus, Celastrus, Celtis, Cephalanthus, Cercidium, Cercis, Chaenomeles, Chamaecyparis, Chilopsis, Chionanthus, Chrysothamnus, Cicer, Cistus, Citrus, Cladrastis, Clematis, Coleogynia, Cornus, Corylus, Cotinus, Cotoneaster, Cowania, Crataegus, Crataegus, Cucumis, Cupressus, Cytisus, Daphne, Deutzia, Diospyros, Elaeagnus, Ephedra, Erythranthe, Escallonia, Eucalyptus, Euonymus, Eutrema, Fagus, Forsythia, Fragaria, Fraxinus, Gaultheria, Genlisea, Ginkgo, Gleditsia, Glycine, Grevillea, Gymnocladus, Hamamelis, Hebe, Hibiscus, Hordeum, Hydrangea, Hypericum, Ilex, Juglans, Juniperus, Kalmia, Kerria, Koelreuteria, Lagerstroemia, Larix, Larrea, Libocedrus, Ligustrum, Liquidambar, Liriodendron, Lonicera, Lotus, Maclura, Magnolia, Mahonia, Malus, Medicago, Menispermum, Morus, Myrica, Nyssa, Oryza, Osmanthus, Ostrya, Oxydendron, Parthenocissus, Phaseolus, Philadelphus, Photinia, Physocarpus, Picea, Pinus, Pittosporum, Platanus, Populus, Prosopis, Prunus, Pseudotsuga, Ptelea, Purshia, Pyrus, Quercus, Rhamnus, Rhaphiolepis, Rhododendron, Rhus, Ribes, Ricinus, Robinia, Rosa, Rubus, Salix, Sambucus, Sassafras, Sequoia, Setaria, Shepherdia, Smilax, Solanum, Sophora, Sorbus, Sorghum, Spiraea, Staphylea, Stewartia, Symphoricarpos, Syringa, Taxodium, Taxus, Theobroma, Thuja, Tilia, Triticum, Tsuga, Ulmus, Umbellularia, Vaccinium, Viburnum, Vitis, Zanthoxylum, Zea , or Zelkova.

21. The method according to claim 19 , wherein said polynucleotide is stably incorporated into the genome of said plant.

22. The method according to claim 19 , wherein said heterologous regulatory element has been inserted into the genome of said plant.

23. The method of claim 22 , wherein said heterologous regulatory element is a promoter.

24. The method of claim 23 , wherein said promoter is inserted into the plant genome within about 2 kbp of said polynucleotide.

25. The method of claim 24 , wherein said promoter is a cauliflower mosaic virus 35S promoter, an enhanced CaMV 35S promoter, a CaMV 19S promoter, a cassava vein mosaic virus promoter, a prolifera promoter, an Ap3 promoter, a heat shock promoter, a T-DNA 1′- or 2′-promoter of A. tumefaciens , a polygalacturonase promoter, achalcone synthase A (CHS-A) promoter, a PR-1α promoter, a ubiquitin promoter, an actin promoter, an alcA gene promoter, a pin2 promoter, a maize WipI promoter, a maize trpA gene promoter, a maize CDPK gene promoter, a RUBISCO SSU promoter, a Cald5H promoter, a SAD promoter, a XCP1 promoter, a CAD promoter, a CesA1 promoter, a CesA2 promoter, a CesA3 promoter, a tubulin gene (TUB) promoter, a lipid transfer protein gene (LTP) promoter, a coumarate-4-hydroxylase gene (C4H) promoter, a Cab1 promoter, a Cab19 promoter, a PPDK promoter, a ribulose biphosphate carboxylase (RBCS) promoter, an Act1 promoter, an AS-1 promoter, a RBC-3A promoter, a Figwort Mosaic Virus (FMV) promoter, a mannopine synthase (mas) promoter, an octopine synthase (ocs) promoter, a nos promoter, an Adh promoter, a sucrose synthase promoter, an α-tubulin promoter, an actin promoter, a cab promoter, a PEPCase promoter, a promoter associated with a R gene complex, a 4-coumarate Co-enzyme A ligase (4CL) promoter, a β-phaseolin promoter, a glycinin promoter, or a MEG1 promoter.

26. The method of claim 22 , wherein said heterologous regulatory element is an enhancer.

27. The method of claim 26 , wherein said enhancer is a CaMV 35S enhancer, a SV40 enhancer, a maize shrunken-1 enhancer, a PetE enhancer, or a rice α-amylase enhancer.

28. The method of claim 1 , wherein said polypeptide comprises SEQ ID NO:10.

29. The transformed or transgenic plant of claim 10 , wherein said polypeptide comprises SEQ ID NO:10.

30. The method of claim 19 , wherein said polypeptide comprises SEQ ID NO:10.

Assignments (2)
CONFIRMATORY LICENSE Recorded Sep 5, 2018
From: UNIVERSITY OF FLORIDA
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 047017/0313 →
CONFIRMATORY LICENSE Recorded Mar 25, 2015
From: UNIVERSITY OF FLORIDA
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 035334/0058 →
Continuity (3)
Continuation In Part 14152865 · Jan 10, 2014
Provisional Application 61751648 · Jan 11, 2013
Related Publication 20150007366A1 · Jan 1, 2015