Plants having increased biomass and methods for making the same
The impact of plastid size change in both monocot and dicot plants has been examined. In both, when plastid size is increased there is an increase in biomass relative to the parental lines. Thus, provided herein are methods for increasing the biomass of a plant, comprising decreasing the expression of at least one plastid division protein in a plant. Optionally, the level of chlorophyll in the plant is also reduced.
1. A method of producing a plant having increased biomass accumulation relative to a wild-type plant, comprising:
introducing into a plant cell a nucleic acid construct that reduces expression of a FtsZ1 gene to produce a transformed plant cell, wherein the construct is an RNAi construct that targets the FtsZ1 gene for RNAi silencing;
wherein the nucleic acid construct comprises nucleic acid sequences that have at least 80% identity to positions 12-248 and 343-579 of SEQ ID NO: 1;
regenerating a plant from the transformed plant cell;
measuring the fresh and or dry weight of the regenerated plant to determine biomass; and
selecting for a regenerated plant with increased biomass as determined by the measuring step, wherein the increase in biomass is relative to that of a control plant grown under the same conditions and wherein the plant has reduced expression of FtsZ1 compared with the control plant.
2. The method of claim 1 , further comprising reducing the level of chlorophyll expression in the regenerated plant by inhibiting expression of magnesium chelatase and/or chlorophyll synthase.
3. The method of claim 1 , wherein the plant is a monocot.
4. The method of claim 3 , wherein the monocot is one of corn, sorghum, sugarcane, Miscanthus , switchgrass, Setaria , and cordgrass.
5. The method of claim 1 , wherein the plant is a dicot.
6. The method of claim 5 , wherein the dicot is one of soybean, cotton, tobacco, pepper, potato, and tomato.
7. The method of claim 1 , wherein the nucleic acid construct comprises nucleic acid sequences with 100% identity to positions 12-248 and 343-579 of SEQ ID NO: 1.