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控制拟南芥植物繁殖的基因调控网络的(r)演变:二十年的历程。

The (r)evolution of gene regulatory networks controlling Arabidopsis plant reproduction: a two-decade history.

作者信息

Pajoro Alice, Biewers Sandra, Dougali Evangelia, Leal Valentim Felipe, Mendes Marta Adelina, Porri Aimone, Coupland George, Van de Peer Yves, van Dijk Aalt D J, Colombo Lucia, Davies Brendan, Angenent Gerco C

机构信息

Plant Research International (PRI) Droevendaalseweg 1, 6708 PB Wageningen, The Netherlands Laboratory of Molecular Biology, Wageningen University, Droevendaalseweg 1, 6708 PB Wageningen, The Netherlands

Centre for Plant Sciences, University of Leeds, Leeds LS2 9JT, UK

出版信息

J Exp Bot. 2014 Sep;65(17):4731-45. doi: 10.1093/jxb/eru233. Epub 2014 Jun 9.

Abstract

Successful plant reproduction relies on the perfect orchestration of singular processes that culminate in the product of reproduction: the seed. The floral transition, floral organ development, and fertilization are well-studied processes and the genetic regulation of the various steps is being increasingly unveiled. Initially, based predominantly on genetic studies, the regulatory pathways were considered to be linear, but recent genome-wide analyses, using high-throughput technologies, have begun to reveal a different scenario. Complex gene regulatory networks underlie these processes, including transcription factors, microRNAs, movable factors, hormones, and chromatin-modifying proteins. Here we review recent progress in understanding the networks that control the major steps in plant reproduction, showing how new advances in experimental and computational technologies have been instrumental. As these recent discoveries were obtained using the model species Arabidopsis thaliana, we will restrict this review to regulatory networks in this important model species. However, more fragmentary information obtained from other species reveals that both the developmental processes and the underlying regulatory networks are largely conserved, making this review also of interest to those studying other plant species.

摘要

成功的植物繁殖依赖于一系列独特过程的完美协调,这些过程最终产生繁殖产物:种子。花的转变、花器官发育和受精是经过充分研究的过程,而且各个步骤的遗传调控也越来越多地被揭示出来。最初,主要基于遗传学研究,调控途径被认为是线性的,但最近使用高通量技术进行的全基因组分析开始揭示出不同的情况。复杂的基因调控网络构成了这些过程的基础,包括转录因子、微小RNA、可移动因子、激素和染色质修饰蛋白。在这里,我们综述了在理解控制植物繁殖主要步骤的网络方面的最新进展,展示了实验和计算技术的新进展是如何发挥作用的。由于这些最新发现是使用模式植物拟南芥获得的,我们将把本综述限制在这个重要模式物种的调控网络。然而,从其他物种获得的更零碎的信息表明,发育过程和潜在的调控网络在很大程度上是保守的,这使得本综述对研究其他植物物种的人也很有意义。

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