A WRI1‐dependent module is essential for the accumulation of auxin and lipid in somatic embryogenesis of Arabidopsis thaliana

胚胎发生 拟南芥 子叶 多叶的 拟南芥 细胞生物学 体细胞 生物 植物 胚胎发生 胚胎 遗传学 突变体 基因
作者
W Zhang,Li Ping Tang,Jing Peng,Li Ming Zhai,Li Qiu,Xian Sheng Zhang,Ying Hua Su
出处
期刊:New Phytologist [Wiley]
卷期号:242 (3): 1098-1112 被引量:1
标识
DOI:10.1111/nph.19689
摘要

Summary The potential for totipotency exists in all plant cells; however, the underlying mechanisms remain largely unknown. Earlier findings have revealed that the overexpression of LEAFY COTYLEDON 2 ( LEC2 ) can directly trigger the formation of somatic embryos on the cotyledons of Arabidopsis. Furthermore, cotyledon cells that overexpress LEC2 accumulate significant lipid reserves typically found in seeds. The precise mechanisms and functions governing lipid accumulation in this process remain unexplored. In this study, we demonstrate that WRINKLED1 (WRI1), the key regulator of lipid biosynthesis, is essential for somatic embryo formation, suggesting that WRI1‐mediated lipid biosynthesis plays a crucial role in the transition from vegetative to embryonic development. Our findings indicate a direct interaction between WRI1 and LEC2, which enhances the enrichment of LEC2 at downstream target genes and stimulates their induction. Besides, our data suggest that WRI1 forms a complex with LEC1, LEC2, and FUSCA3 (FUS3) to facilitate the accumulation of auxin and lipid for the somatic embryo induction, through strengthening the activation of YUCCA4 ( YUC4 ) and OLEOSIN3 ( OLE3 ) genes. Our results uncover a regulatory module controlled by WRI1, crucial for somatic embryogenesis. These findings provide valuable insights into our understanding of plant cell totipotency.
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