MeGT2.6 increases cellulose synthesis and active gibberellin content to promote cell enlargement in cassava

纤维素 生物 赤霉素 生物化学 细胞生物学 单元格大小 植物 生物技术 食品科学
作者
Ruxue Bao,Changying Zeng,Ke Li,Mengtao Li,Yajun Li,Xincheng Zhou,Haiyan Wang,Yajie Wang,Dongyi Huang,Wenquan Wang,Xin Chen
出处
期刊:Plant Journal [Wiley]
卷期号:119 (2): 1014-1029 被引量:3
标识
DOI:10.1111/tpj.16813
摘要

SUMMARY Cassava, a pivotal tropical crop, exhibits rapid growth and possesses a substantial biomass. Its stem is rich in cellulose and serves as a crucial carbohydrate storage organ. The height and strength of stems restrict the mechanised operation and propagation of cassava. In this study, the triple helix transcription factor MeGT2.6 was identified through yeast one‐hybrid assay using MeCesA1pro as bait, which is critical for cellulose synthesis. Over‐expression and loss‐of‐function lines were generated, and results revealed that MeGT2.6 could promote a significant increase in the plant height, stem diameter, cell size and thickness of SCW of cassava plant. Specifically, MeGT2.6 upregulated the transcription activity of MeGA20ox1 and downregulated the expression level of MeGA2ox1 , thereby enhancing the content of active GA3, resulting in a large cell size, high plant height and long stem diameter in cassava. Moreover, MeGT2.6 upregulated the transcription activity of MeCesA1 , which promoted the synthesis of cellulose and hemicellulose and produced a thick secondary cell wall. Finally, MeGT2.6 could help supply additional substrates for the synthesis of cellulose and hemicellulose by upregulating the invertase genes ( MeNINV1/6 ). Thus, MeGT2.6 was found to be a multiple regulator; it was involved in GA metabolism and sucrose decomposition and the synthesis of cellulose and hemicellulose.
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