Nuclear behavior, cell polarity, and cell specification in the female gametophyte.

Sexual Plant Reproduction Pub Date : 2011-06-01 Epub Date: 2011-02-19 DOI:10.1007/s00497-011-0161-4
Stefanie Sprunck, Rita Gross-Hardt
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引用次数: 87

Abstract

In flowering plants, the haploid gamete-forming generation comprises only a few cells and develops within the reproductive organs of the flower. The female gametophyte has become an attractive model system to study the genetic and molecular mechanisms involved in pattern formation and gamete specification. It originates from a single haploid spore through three free nuclear division cycles, giving rise to four different cell types. Research over recent years has allowed to catch a glimpse of the mechanisms that establish the distinct cell identities and suggests dynamic cell-cell communication to orchestrate not only development among the cells of the female gametophyte but also the interaction between male and female gametophytes. Additionally, cytological observations and mutant studies have highlighted the importance of nuclei migration- and positioning for patterning the female gametophyte. Here we review current knowledge on the mechanisms of cell specification in the female gametophyte, emphasizing the importance of positional cues for the establishment of distinct molecular profiles.

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雌性配子体的核行为、细胞极性和细胞规格。
在开花植物中,单倍体配子形成代仅由少数细胞组成,并在花的生殖器官中发育。雌性配子体已成为研究模式形成和配子形成的遗传和分子机制的一个有吸引力的模式系统。它起源于一个单倍体孢子,经过三个自由的核分裂周期,产生四种不同的细胞类型。近年来的研究使我们得以一窥建立不同细胞身份的机制,并表明动态的细胞间通信不仅协调了雌性配子体细胞之间的发育,而且还协调了雄性和雌性配子体之间的相互作用。此外,细胞学观察和突变体研究强调了细胞核迁移和定位对雌性配子体形成的重要性。在此,我们回顾了目前关于雌性配子体细胞分化机制的知识,强调了位置线索对建立不同分子谱的重要性。
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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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