Plants with elevated levels of glucan
View Patent ↗The present disclosure relates to mutations in licheninase genes encoding polypeptides with decreased licheninase activity, which when expressed in plants results in elevated levels of glucan in the plants. In particular, the disclosure relates to licheninase nucleic acids and polypeptides related to glucan accumulation in plants, plants with reduced expression of a licheninase nucleic acid, and methods related to the generation of plants with increased glucan content in the cell walls of leaf tissue.
1. A method of using plant material, the method comprising: subjecting to a saccharification or fermentation process plant material of a maize plant comprising a candy-leaf (Cal-1) licheninase gene mutation encoding an amino acid substitution of an active site glutamic acid, which mutation results in decreased licheninase activity in the plant compared with a corresponding wild-type gene, wherein the plant has elevated levels of glucan compared with a wild-type plant, and the mutation is non-naturally occurring and is derived from non-natural mutagenesis, wherein the licheninase gene encodes SEQ ID NO:4, and the glutamic acid is Glu262 or Glu318, or SEQ ID NO:8, and the glutamic acid is Glu242 or Glu298.
2. The method of claim 1 , wherein the gene encodes SEQ ID NO:4, and the glutamic acid is Glu262 or Glu318.
3. The method of claim 1 , wherein the gene encodes SEQ ID NO:8, and the glutamic acid is Glu242 or Glu298.
4. The method of claim 1 , wherein the gene encodes SEQ ID NO:4, and the mutation is Glu262Lys or Glu318Lys.
5. The method of claim 1 , wherein the gene encodes SEQ ID NO:8, and the mutation is Glu242Lys or Glu298Lys.
6. The method of claim 1 , wherein the plant further comprises a mutant brown midrib (bm) gene that is selected from maize bm1 and maize bm3.
7. The method of claim 2 , wherein the plant further comprises a mutant brown midrib (bm) gene that is selected from maize bm1 and maize bm3.
8. The method of claim 3 , wherein the plant further comprises a mutant brown midrib (bm) gene that is selected from maize bm1 and maize bm3.
9. The method of claim 4 , wherein the plant further comprises a mutant brown midrib (bm) gene that is selected from maize bm1 and maize bm3.
10. The method of claim 5 , wherein the plant further comprises a mutant brown midrib (bm) gene that is selected from maize bm1 and maize bm3.