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转录抑制特异性指定了双受精的中央细胞。

Transcriptional repression specifies the central cell for double fertilization.

机构信息

State Key Laboratory of Molecular and Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, 100101 Beijing, China.

Institute of Botany, Chinese Academy of Sciences, 100093 Beijing, China.

出版信息

Proc Natl Acad Sci U S A. 2020 Mar 17;117(11):6231-6236. doi: 10.1073/pnas.1909465117. Epub 2020 Mar 4.

Abstract

Double fertilization is a key innovation for the evolutionary success of angiosperms by which the two fertilized female gametes, the egg cell and central cell, generate the embryo and endosperm, respectively. The female gametophyte (embryo sac) enclosed in the sporophyte is derived from a one-celled haploid cell lineage. It undergoes successive events of mitotic divisions, cellularization, and cell specification to give rise to the mature embryo sac, which contains the two female gametes accompanied by two types of accessory cells, namely synergids and antipodals. How the cell fate of the central cell is specified has long been equivocal and is further complicated by the structural diversity of female gametophyte across plant taxa. Here, MADS-box protein AGL80 was verified as a transcriptional repressor that directly suppresses the expression of accessory cell-specific genes to specify the central cell. Further genetic rescue and phylogenetic assay of the AGL80 orthologs revealed a possible conserved mechanism in the Brassicaceae family. Results from this study provide insight into the molecular determination of the second female gamete cell in Brassicaceae.

摘要

双受精是被子植物进化成功的关键创新,通过双受精,两个受精子房(卵细胞和中央细胞)分别产生胚胎和胚乳。被包裹在孢子体中的雌配子体(胚囊)来源于一个单细胞的单倍体细胞系。它经历了连续的有丝分裂分裂、细胞化和细胞特化,产生成熟的胚囊,其中包含两个雌配子体,以及两种辅助细胞,即助细胞和反足细胞。中央细胞的细胞命运是如何特化的一直存在争议,而且由于植物分类群中雌配子体的结构多样性而变得更加复杂。在这里,MADS 框蛋白 AGL80 被验证为一个转录抑制因子,它直接抑制辅助细胞特异性基因的表达,从而特化中央细胞。对 AGL80 同源物的进一步遗传挽救和系统发育分析表明,在十字花科中可能存在一个保守的机制。该研究的结果为十字花科中第二个雌配子体细胞的分子决定提供了深入的见解。

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