植物中的小RNA功能:从染色质到下一代。

Jean-Sébastien Parent, Filipe Borges, Atsushi Shimada, Robert A Martienssen
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引用次数: 0

摘要

小RNA分子可以高度特异性地靶向特定的病毒、基因或转座因子(TE)。它们从一个细胞移动到另一个细胞并识别目标的能力也允许构建能够同时调节大量相关目标的网络。在表观遗传沉默的情况下,小RNA可能利用真核生物基因组中te的广泛分布来协调发育和代间的许多位点。在这里,我们讨论了植物小RNA在花粉和种子中靶向转座子和重复序列的有趣作用。生殖系和早期种子发育中的表观遗传重编程提供了一种控制基因组剂量、印迹基因表达和通过“三倍体块”进行不相容杂交的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small RNA Function in Plants: From Chromatin to the Next Generation.

Small RNA molecules can target a particular virus, gene, or transposable element (TE) with a high degree of specificity. Their ability to move from cell to cell and recognize targets in trans also allows building networks capable of regulating a large number of related targets at once. In the case of epigenetic silencing, small RNA may use the widespread distribution of TEs in eukaryotic genomes to coordinate many loci across developmental and generational time. Here, we discuss the intriguing role of plant small RNA in targeting transposons and repeats in pollen and seeds. Epigenetic reprogramming in the germline and early seed development provides a mechanism to control genome dosage, imprinted gene expression, and incompatible hybridizations via the "triploid block."

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