悬液
生物
细胞生物学
拟南芥
信号转导
程序性细胞死亡
胚胎
胚胎发生
合子
遗传学
基因
突变体
细胞凋亡
作者
Ce Shi,Pan Luo,Yuting Du,Hong Chen,Xiaorong Huang,Tianhe Cheng,An Luo,Hong‐Ju Li,Wei‐Cai Yang,Peng Zhao,Meng‐Xiang Sun
标识
DOI:10.1038/s41467-019-11476-3
摘要
Abstract Plant embryos are generated and develop in a stable and well-protected microenvironment surrounded by maternal tissue, which is vital for embryogenesis. However, the signaling mechanisms responsible for maternal tissue-to-proembryo communication are not well understood. Here, we report a pathway for maternal tissue-to-proembryo communication. We identify a DELLA protein, NtCRF1 ( NtCYS regulative factor 1), which regulates suspensor programmed cell death (PCD). NtCRF1 can bind to the promoter of NtCYS and regulate the suspensor PCD-switch module NtCYS-NtCP14 in response to gibberellin (GA). We confirm that GA 4 , as a primary signal triggering suspensor PCD, is generated in the micropylar endothelium by the transient activation of NtGA3oxs in the maternal tissue. Thus, we propose that GA is a maternal-to-proembryo communication signal that is decoded in the proembryo by a GID1-CRF1-CYS-CP14 signaling cascade. Using this mode of communication, maternal tissue precisely controls the embryonic suspensor PCD and is able to nurse the proembryo in a stage-dependent manner.
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