Manipulating BS1 for plant seed yield
The present invention provides methods for increasing plant seed yield or seed size through reduced expression of a BS1 gene. Also provided are plants with increased seed yield or seed size comprising reduced expression of a BS1 gene produced by such methods.
1. A method of improving forage quality of a forage plant comprising:
(a) transforming forage plants with an antisense or RNAi construct that targets a BS1 (BIG SEEDS 1) gene to reduce expression of the protein encoded by said BS1 gene of said forage plants, or mutating the BS1 gene of said forage plants using fast neutron bombardment that reduces or eliminates the expression of the protein encoded by the BS1 gene of said forage plants; and
(b) selecting a transformed or mutated forage plant from step (a), wherein said selected transformed forage plant exhibits said reduced expression of the protein encoded by said BS1 gene, wherein said mutated forage plant exhibits said reduction or elimination of the protein expressed by said BS1 gene, wherein said selected transformed forage plant or said selected mutated forage plant exhibits improved forage quality as compared to a control or wild type plant of the same forage plant species that is not transformed with said construct or does not contain said mutated BS1 gene, wherein said improvement in said forage quality comprises decrease in acid detergent fiber (ADF) and neutral detergent fiber (NDF) as compared to said control or wild type plant of the same forage plant species, and wherein the protein encoded by said BS1 gene in said forage plants has 95% amino acid sequence identity to the amino acid sequence of SEQ ID NO: 167.
2. The method of claim 1 , wherein the BS1 gene encodes a protein comprising an amino acid sequence having at least 96% amino acid sequence identity to the amino acid sequence of SEQ ID NO: 167.
3. The method of claim 1 , wherein the forage plant is a dicotyledonous plant.
4. The method of claim 3 , wherein the dicotyledonous forage plant is Medicago trunculata or Medicago sativa.
5. The method of claim 1 , wherein the selected transformed or mutated forage plant further exhibits increased plant biomass when compared to a control or wild type forage plant of the same forage plant species that is not transformed with said construct or does not contain said mutated BS1 gene.
6. The method of claim 1 , wherein the selected transformed or mutated forage plant further exhibits increased seed yield when compared to a control or wild type forage plant of the same forage plant species that is not transformed with said construct or does not contain said mutated BS1 gene.
7. The method of claim 1 further comprising:
(c) growing said selected transformed forage plant or said selected mutated forage plant of step (b) under plant growth conditions;
(d) crossing said selected transformed forage plant or said selected mutated forage plant from step (c) with itself or another, distinct forage plant of the same forage plant species to produce progeny forage plants; and
(e) selecting a transformed progeny forage plant or mutated progeny forage plant from step d) comprising reduced or eliminated expression of the protein encoded by said BS1 gene, wherein said forage progeny plant comprises said improved forage quality when compared to a control or wild type forage plant of the same forage plant species that is not transformed with said construct or does not contain said mutated BS1 gene.
8. The method of claim 1 , wherein the BS1 gene encodes a protein comprising an amino acid sequence having at least 97% amino acid sequence identity to the amino acid sequence of SEQ ID NO: 167.
9. The method of claim 7 , wherein the BS1 gene encodes a protein comprising an amino acid sequence having at least 96% amino acid sequence identity to the amino acid sequence of SEQ ID NO: 167.
10. The method of claim 7 , wherein the BS1 gene encodes a protein comprising an amino acid sequence having at least 97% amino acid sequence identity to the amino acid sequence of SEQ ID NO: 167.