雌性配子体发生过程中细胞形态的表观遗传控制。

Sexual Plant Reproduction Pub Date : 2011-06-01 Epub Date: 2011-04-12 DOI:10.1007/s00497-011-0166-z
Alma Armenta-Medina, Edgar Demesa-Arévalo, Jean-Philippe Vielle-Calzada
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引用次数: 24

摘要

在开花植物中,配子的形成取决于细胞前体的分化,这些细胞前体在产生多细胞配子体之前进行减数分裂。这个配子体阶段的建立为自然选择提供了机会,通过表观遗传机制作用于单倍体植物基因组,确保植物生殖发育的严格调节。尽管存在这种早期的选择压力,但仍有许多自然发生的发育选择的例子表明,开花植物对细胞规格和随后的配子形成有灵活的调节控制。在这篇综述中,我们讨论了最近的研究结果,表明与胚珠形成过程中普遍存在的小RNA通路活性相关的表观遗传机制在细胞规范和基因组完整性中起着重要作用。我们还将这些发现与动物配子体发生过程中的小RNA途径进行了比较,并讨论了它们对理解在有性生殖和无融合生殖过程中控制雌性配子体谱系建立的机制的意义。
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Epigenetic control of cell specification during female gametogenesis.

In flowering plants, the formation of gametes depends on the differentiation of cellular precursors that divide meiotically before giving rise to a multicellular gametophyte. The establishment of this gametophytic phase presents an opportunity for natural selection to act on the haploid plant genome by means of epigenetic mechanisms that ensure a tight regulation of plant reproductive development. Despite this early acting selective pressure, there are numerous examples of naturally occurring developmental alternatives that suggest a flexible regulatory control of cell specification and subsequent gamete formation in flowering plants. In this review, we discuss recent findings indicating that epigenetic mechanisms related to the activity of small RNA pathways prevailing during ovule formation play an essential role in cell specification and genome integrity. We also compare these findings to small RNA pathways acting during gametogenesis in animals and discuss their implications for the understanding of the mechanisms that control the establishment of the female gametophytic lineage during both sexual reproduction and apomixis.

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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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