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植物的减数分裂转录组结构

The meiotic transcriptome architecture of plants.

作者信息

Dukowic-Schulze Stefanie, Chen Changbin

机构信息

Department of Horticultural Science, University of Minnesota St. Paul, MN, USA.

出版信息

Front Plant Sci. 2014 Jun 5;5:220. doi: 10.3389/fpls.2014.00220. eCollection 2014.

Abstract

Although a number of genes that play key roles during the meiotic process have been characterized in great detail, the whole process of meiosis is still not completely unraveled. To gain insight into the bigger picture, large-scale approaches like RNA-seq and microarray can help to elucidate the transcriptome landscape during plant meiosis, discover co-regulated genes, enriched processes, and highly expressed known and unknown genes which might be important for meiosis. These high-throughput studies are gaining more and more popularity, but their beginnings in plant systems reach back as far as the 1960's. Frequently, whole anthers or post-meiotic pollen were investigated, while less data is available on isolated cells during meiosis, and only few studies addressed the transcriptome of female meiosis. For this review, we compiled meiotic transcriptome studies covering different plant species, and summarized and compared their key findings. Besides pointing to consistent as well as unique discoveries, we finally draw conclusions what can be learned from these studies so far and what should be addressed next.

摘要

尽管在减数分裂过程中发挥关键作用的许多基因已得到详细表征,但减数分裂的整个过程仍未完全阐明。为了深入了解全局,诸如RNA测序和微阵列等大规模方法有助于阐明植物减数分裂过程中的转录组概况,发现共同调控的基因、富集的过程以及可能对减数分裂很重要的高表达已知和未知基因。这些高通量研究越来越受欢迎,但其在植物系统中的起源可追溯到20世纪60年代。通常,研究的是整个花药或减数分裂后的花粉,而关于减数分裂期间分离细胞的数据较少,只有少数研究涉及雌性减数分裂的转录组。在本综述中,我们汇编了涵盖不同植物物种的减数分裂转录组研究,并总结和比较了它们的主要发现。除了指出一致和独特的发现外,我们最后得出结论,到目前为止可以从这些研究中学到什么,以及接下来应该解决什么问题。

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