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玉米异常染色体 10 减数分裂驱动单倍型:综述。

The maize abnormal chromosome 10 meiotic drive haplotype: a review.

机构信息

Department of Genetics, B414A Davison Life Sciences, University of Georgia, Athens, GA, 30602, USA.

Department of Plant Biology, University of Georgia, Athens, GA, 30602, USA.

出版信息

Chromosome Res. 2022 Sep;30(2-3):205-216. doi: 10.1007/s10577-022-09693-6. Epub 2022 Jun 2.

Abstract

The maize abnormal chromosome 10 (Ab10) haplotype encodes a meiotic drive system that converts heterochromatic knobs into centromere-like bodies that are preferentially segregated through female meiosis. Ab10 was first described in the 1940s and has been intensively studied. Here I provide a comprehensive review of the literature, starting from the discovery of knobs and Ab10, preceding through the classic literature, and finishing with molecular structure and mechanisms. The defining features of the Ab10 haplotype are its two specialized kinesins, Kinesin driver and TR-1 kinesin, that activate neocentromeres at knobs containing different classes of the tandem repeat. In most Ab10 haplotypes, the two kinesin/knob systems cooperate to promote maximum meiotic drive. However, recent interpretations suggest that each kinesin/knob system can function as an independent meiotic driver and that in some cases they compete with each other. Ab10 is present at low frequencies throughout the genus Zea and has significantly expanded genome size by promoting the formation of knobs throughout the genome.

摘要

玉米异常染色体 10(Ab10)单倍型编码一种减数分裂驱动系统,该系统将异染色质结转化为类似于着丝粒的结构,这些结构在雌性减数分裂中优先分离。Ab10 最初于 20 世纪 40 年代被描述,并得到了深入研究。在这里,我从结的发现和 Ab10 的出现开始,提供了文献的全面回顾,涵盖了经典文献,并以分子结构和机制为结尾。Ab10 单倍型的定义特征是其两个特殊的驱动蛋白,驱动蛋白和 TR-1 驱动蛋白,它们激活含有串联重复不同类别的结处的新着丝粒。在大多数 Ab10 单倍型中,两个驱动蛋白/结系统协同作用以促进最大的减数分裂驱动。然而,最近的解释表明,每个驱动蛋白/结系统都可以作为独立的减数分裂驱动,并且在某些情况下它们相互竞争。Ab10 存在于整个玉米属中的低频率,并且通过在整个基因组中促进结的形成显著增加了基因组的大小。

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