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植物有性生殖过程中的细胞命运决定

Cell fate determination during sexual plant reproduction.

作者信息

Huang Xiaorong, Sun Meng-Xiang

机构信息

State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, 430072, China.

State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Xiamen University, Xiamen, 361102, China.

出版信息

New Phytol. 2025 Jan;245(2):480-495. doi: 10.1111/nph.20230. Epub 2024 Nov 29.

Abstract

The flowering plant life cycle is completed by an alternation of diploid and haploid generations. The diploid sporophytes produce initial cells that undergo meiosis and produce spores. From haploid spores, male or female gametophytes, which produce gametes, develop. The union of gametes at fertilization restores diploidy in the zygote that initiates a new cycle of diploid sporophyte development. During this complex process, cell fate determination occurs at each of the critical stages and necessarily underpins successful plant reproduction. Here, we summarize available knowledge on the regulatory mechanism of cell fate determination at these critical stages of sexual reproduction, including sporogenesis, gametogenesis, and early embryogenesis, with particular emphasis on regulatory pathways of both male and female gametes before fertilization, and both apical and basal cell lineages of a proembryo after fertilization. Investigations reveal that cell fate determination involves multiple regulatory factors, such as positional information, differential distribution of cell fate determinants, cell-to-cell communication, and cell type-specific transcription factors. These factors temporally and spatially act for different cell type differentiation to ensure successful sexual reproduction. These new insights into regulatory mechanisms underlying sexual cell fate determination not only updates our knowledge on sexual plant reproduction, but also provides new ideas and tools for crop breeding.

摘要

开花植物的生命周期通过二倍体和单倍体世代的交替来完成。二倍体孢子体产生经历减数分裂并产生孢子的初始细胞。从单倍体孢子发育出产生配子的雄配子体或雌配子体。受精时配子的结合恢复了合子中的二倍体状态,从而启动了二倍体孢子体发育的新周期。在这个复杂的过程中,细胞命运决定发生在每个关键阶段,并且必然是植物成功繁殖的基础。在这里,我们总结了关于有性生殖这些关键阶段细胞命运决定调控机制的现有知识,包括孢子发生、配子发生和早期胚胎发生,特别强调受精前雄配子和雌配子的调控途径,以及受精后原胚的顶端和基部细胞谱系。研究表明,细胞命运决定涉及多种调控因子,如位置信息、细胞命运决定因子的差异分布、细胞间通讯和细胞类型特异性转录因子。这些因子在时间和空间上作用于不同的细胞类型分化,以确保有性生殖的成功。这些关于性细胞命运决定调控机制的新见解不仅更新了我们对植物有性生殖的认识,也为作物育种提供了新的思路和工具。

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