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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Testicular postgenomics: targeting the regulation of spermatogenesis
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Testicular postgenomics: targeting the regulation of spermatogenesis

机译:睾丸后基因组学:靶向调控精子发生

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摘要

Sperm are, arguably, the most differentiated cells produced within the body of any given species. This is owing to the fact that spermatogenesis is an intricate and highly specialized process evolved to suit the individual particularities of each sexual species. Despite a vast diversity in method, the aim of spermatogenesis is always the same, the idealized transmission of genetic patrimony. Towards this goal certain requirements must always be met, such as a relative twofold reduction in ploidy, repackaging of the chromatin for transport and specialized enhancements for cell motility, recog-nition and fusion. In the past 20 years, the study of molecular networks coordinating male germ cell development, particularly in mammals, has become more and more facilitated thanks to large-scale analyses of genome expression. Such postgenomic endeavors have generated landscapes of data for both fundamental and clinical reproductive biology. Continuous, large-scale integration analyses of these datasets are undertaken which provide access to very precise information on a myriad of biomolecules. This review presents commonly used transcriptomic and proteomic work-flows applied to various testicular germ cell studies. We will also provide a general overview of the technical possibilities available to reproductive genomic biologists, noting the advantages and drawbacks of each technique.
机译:可以说,精子是任何给定物种体内产生的最分化的细胞。这是由于精子发生是一个复杂且高度专业化的过程,以适应每种性物种的个体特征这一事实。尽管方法千差万别,但精子发生的目的始终是相同的,即遗传遗产的理想传递。为了实现这一目标,必须始终满足某些要求,例如倍数相对减少,染色质重新包装以进行运输以及细胞运动,识别和融合的专门增强。在过去的20年中,由于对基因组表达的大规模分析,协调男性生殖细胞发育(尤其是在哺乳动物中)的分子网络的研究变得越来越容易。这样的后基因组研究已经为基础和临床生殖生物学产生了数据前景。对这些数据集进行了连续,大规模的整合分析,从而提供了有关众多生物分子的非常精确的信息。这篇综述介绍了应用于各种睾丸生殖细胞研究的常用转录组和蛋白质组学工作流程。我们还将概述生殖基因组生物学家可用的技术可能性,并指出每种技术的优缺点。

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