IP Library Granted Patent US 9,133,470
Granted Patent B2
US 9,133,470 · App. 14/152,865 · Granted Sep 15, 2015

Material and methods to increase plant growth and yield

Inventor: Matias Kirst (Gainesville, FL)
Assignee: University of Florida Research Foundation, Inc.
C12N15/8261C07K14/415C12N15/8273
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Quick Facts
Patent No.
US 9,133,470
App. No.
14/152,865
Granted
Sep 15, 2015
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 (23)

1. A method for modulating growth rate, yield, and/or resistance to drought conditions in a plant, comprising introducing into said plant a polynucleotide comprising a nucleotide sequence having at least 95% sequence identity to SEQ ID NO:1 or 3, or that encodes a polypeptide having at least 95% sequence identity to SEQ ID NO:2.

2. The method according to claim 1 , wherein the nucleotide sequence encodes a polypeptide comprising the amino acid sequence of SEQ ID NO:2, or a fragment of SEQ ID NO:2, wherein said fragment has at least 95% sequence identity to SEQ ID NO:2, and wherein expression of the nucleotide sequence in said plant confers said modulating growth rate, yield, and/or resistance to drought conditions in the plant.

3. The method according to claim 1 , wherein the nucleotide sequence comprises the sequence of SEQ ID NO:1 or SEQ ID NO:3.

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

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

6. A transformed or transgenic plant, plant tissue, or plant cell transformed with a polynucleotide that is stably incorporated into the genome of the plant, plant tissue, or plant cell, wherein the polynucleotide comprises a nucleotide sequence having at least 95% sequence identity to SEQ ID NO:1 or 3, or wherein the polynucleotide comprises a nucleotide sequence that encodes a polypeptide having at least 95% sequence identity to SEQ ID NO:2, wherein the growth rate, yield, and/or resistance to drought conditions of the plant, plant tissue, or plant cell is increased relative to a plant, plant tissue, or plant cell that is not transformed with the polynucleotide.

7. The transformed or transgenic plant, plant tissue, or plant cell according to claim 6 , wherein the nucleotide sequence encodes a polypeptide comprising the amino acid sequence of SEQ ID NO:2, or a fragment of SEQ ID NO:2, wherein expression of the nucleotide sequence in said plant, plant tissue, or plant cell confers said increased growth rate, yield, and/or resistance to drought conditions.

8. The transformed or transgenic plant, plant tissue, or plant cell according to claim 6 , wherein the nucleotide sequence comprises the sequence of SEQ ID NO:1 or SEQ ID NO:3.

9. The transformed or transgenic plant, plant tissue, or plant cell according to claim 6 , wherein the plant is of the genus Abies, Acacia, Acer, Aesculus, Ailanthus, Alnus, Amelanchier, Arbutus, Arctostaphylos, Artemisia, Asiminia, Atriplex, Aucuba, Berberis, Betula, Buddleia, Buxus, Calocedrus, Camellia, Campsis, Carpinus, Carya, Castanea, Catalpa, Ceanothus, Cedrus, Celastrus, Celtis, Cephalanthus, Cercidium, Cercis, Chaenomeles, Chamaecyparis, Chilopsis, Chionanthus, Chrysothamnus, Cistus, Cladrastis, Clematis, Coleogynia, Cornus, Corylus, Cotinus, Cotoneaster, Cowania, Crataegus, Crataegus, Cupressus, Cytisus, Daphne, Deutzia, Diospyros, Elaeagnus, Ephedra, Escallonia, Eucalyptus, Euonymus, Fagus, Forsythia, Fraxinus, Gaultheria, Ginkgo, Gleditsia, Grevillea, Gymnocladus, Hamamelis, Hebe, Hibiscus, Hydrangea, Hypericum, Ilex, Juglans, Juniperus, Kalmia, Kerria, Koelreuteria, Lagerstroemia, Larix, Larrea, Libocedrus, Ligustrum, Liquidambar, Liriodendron, Lonicera, Maclura, Magnolia, Mahonia, Malus, Menispermum, Morus, Myrica, Nyssa, Osmanthus, Ostrya, Oxydendron, Parthenocissus, Philadelphus, Photinia, Physocarpus, Picea, Pinus, Pittosporum, Platanus, Populus, Prosopis, Prunus, Pseudotsuga, Ptelea, Purshia, Pyrus, Quercus, Rhamnus, Rhaphiolepis, Rhododendron, Rhus, Ribes, Robinia, Rosa, Rubus, Salix, Sambucus, Sassafras, Sequoia, Shepherdia, Smilax, Sophora, Sorbus, Spiraea, Staphylea, Stewartia, Symphoricarpos, Syringa, Taxodium, Taxus, Thuja, Tilia, Tsuga, Ulmus, Umbellularia, Vaccinium, Viburnum, Vitis, Zanthoxylum , or Zelkova.

10. 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 the plant, wherein the polynucleotide comprises a nucleotide sequence having at least 95% sequence identity to SEQ ID NO:1 or 3, or wherein the polynucleotide comprises a nucleotide sequence that encodes a polypeptide having at least 95% sequence identity to SEQ ID NO:2.

11. The method according to claim 10 , wherein the nucleotide sequence encodes a polypeptide comprising the amino acid sequence of SEQ ID NO:2, or a fragment of SEQ ID NO:2, wherein expression of the nucleotide sequence in said plant, plant tissue, or plant cell confers said increased growth rate, yield, and/or resistance to drought conditions.

12. The method according to claim 10 , wherein the nucleotide sequence comprises the sequence of SEQ ID NO:1 or SEQ ID NO:3.

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

14. The method according to claim 10 , wherein the polynucleotide is stably incorporated into the genome of the plant.

15. The method according to claim 1 , wherein the nucleotide sequence encodes a polypeptide comprising an amino acid sequence with at least 95% sequence identity to SEQ ID NO:2.

16. The method according to claim 1 , wherein the nucleotide sequence comprises at least 95% identity to SEQ ID NO:1 or 3.

17. The method according to claim 1 , wherein the nucleotide sequence encodes a polypeptide comprising the amino acid sequence of SEQ ID NO:2.

18. The transformed or transgenic plant, plant tissue, or plant cell according to claim 6 , wherein the nucleotide sequence encodes a polypeptide comprising an amino acid sequence with at least 95% sequence identity to SEQ ID NO:2.

19. The transformed or transgenic plant, plant tissue, or plant cell according to claim 6 , wherein the nucleotide sequence encodes a polypeptide comprising the amino acid sequence of SEQ ID NO:2.

20. The transformed or transgenic plant, plant tissue, or plant cell according to claim 6 , wherein the nucleotide sequence comprises at least 95% identity to SEQ ID NO:1 or 3.

21. The method according to claim 10 , wherein the nucleotide sequence encodes a polypeptide comprising an amino acid sequence with at least 95% sequence identity to SEQ ID NO:2.

22. The method according to claim 10 , wherein the nucleotide sequences encodes a polypeptide comprising the amino acid sequence of SEQ ID NO:2.

23. The method according to claim 10 , wherein the nucleotide sequence comprises at least 95% identity to SEQ ID NO:1 or 3.

Assignments (2)
CONFIRMATORY LICENSE Recorded Sep 5, 2018
From: UNIVERSITY OF FLORIDA
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 047017/0315 →
CONFIRMATORY LICENSE Recorded Jun 6, 2014
From: UNIVERSITY OF FLORIDA
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 033154/0160 →
Continuity (2)
Provisional Application 61751648 · Jan 11, 2013
Related Publication 20140201867A1 · Jul 17, 2014