Soybean hypocotyl elongation is regulated by a MYB33‐SWEET11/21‐GA2ox8c module involving long‐distance sucrose transport

下胚轴 子叶 蔗糖 生物 延伸率 植物 生长素 细胞生物学 生物化学 基因 材料科学 冶金 极限抗拉强度
作者
Tong Su,Huan Liu,Yi-Chun Wu,Jianhao Wang,Fanglei He,Haiyang Li,Shichen Li,Lingshuang Wang,Lanxin Li,Jie Cao,Qiuhe Lu,Xiaohui Zhao,Hongtao Xiang,Chun Lin,Sijia Lü,Baohui Liu,Fanjiang Kong,Fanjiang Kong
出处
期刊:Plant Biotechnology Journal [Wiley]
标识
DOI:10.1111/pbi.14409
摘要

The length of hypocotyl affects the height of soybean and lodging resistance, thus determining the final grain yield. However, research on soybean hypocotyl length is scarce, and the regulatory mechanisms are not fully understood. Here, we identified a module controlling the transport of sucrose, where sucrose acts as a messenger moved from cotyledon to hypocotyl, regulating hypocotyl elongation. This module comprises four key genes, namely MYB33, SWEET11, SWEET21 and GA2ox8c in soybean. In cotyledon, MYB33 is responsive to sucrose and promotes the expression of SWEET11 and SWEET21, thereby facilitating sucrose transport from the cotyledon to the hypocotyl. Subsequently, sucrose transported from the cotyledon up-regulates the expression of GA2ox8c in the hypocotyl, which ultimately affects the length of the hypocotyl. During the domestication and improvement of soybean, an allele of MYB33 with enhanced abilities to promote SWEET11 and SWEET21 has gradually become enriched in landraces and cultivated varieties, SWEET11 and SWEET21 exhibit high conservation and have undergone a strong purified selection and GA2ox8c is under a strong artificial selection. Our findings identify a new molecular pathway in controlling soybean hypocotyl elongation and provide new insights into the molecular mechanism of sugar transport in soybean.
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