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DNA double-strand break formation and repair in Tetrahymena meiosis

机译:四面膜减数分裂中DNA双链断裂的形成与修复

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摘要

The molecular details of meiotic recombination have been determined for a small number of model organisms. From these studies, a general picture has emerged that shows that most, if not all, recombination is initiated by a DNA double-strand break (DSB) that is repaired in a recombinogenic process using a homologous DNA strand as a template. However, the details of recombination vary between organisms, and it is unknown which variant is representative of evolutionarily primordial meiosis or most prevalent among eukaryotes. To answer these questions and to obtain a better understanding of the range of recombination processes among eukaryotes, it is important to study a variety of different organisms. Here, the ciliate Tetrahymena thermophila is introduced as a versatile meiotic model system, which has the additional bonus of having the largest phylogenetic distance to all of the eukaryotes studied to date. Studying this organism can contribute to our understanding of the conservation and diversification of meiotic recombination processes. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:对于少数模型生物,已经确定了减数分裂重组的分子细节。从这些研究中,可以看出,大多数(如果不是全部)重组是通过DNA双链断裂(DSB)启动的,该DNA双链断裂是在重组过程中使用同源DNA链作为模板进行修复的。然而,重组的细节在生物之间是不同的,并且尚不清楚哪个变体代表进化的原始减数分裂或在真核生物中最普遍。为了回答这些问题并更好地了解真核生物之间的重组过程,研究各种不同的生物很重要。在这里,纤毛虫四膜虫作为一种通用的减数分裂模型系统被引入,它具有额外的优势,即与迄今为止研究的所有真核生物都有最大的系统发生距离。研究这种生物有助于我们对减数分裂重组过程的保守和多样化的理解。 (C)2016作者。由Elsevier Ltd.发布

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