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首页> 外文期刊>PLoS Genetics >Zip4/Spo22 Is Required for Class I CO Formation but Not for Synapsis Completion in Arabidopsis thaliana
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Zip4/Spo22 Is Required for Class I CO Formation but Not for Synapsis Completion in Arabidopsis thaliana

机译:I类CO形成需要Zip4 / Spo22,而拟南芥不需要突触完成。

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摘要

In budding yeast meiosis, the formation of class I interference-sensitive crossovers requires the ZMM proteins. These ZMM proteins are essential in forming a mature synaptonemal complex, and a subset of these (Zip2, Zip3, and Zip4) has been proposed to compose the core of synapsis initiation complexes (SICs). Zip4/Spo22 functions with Zip2 to promote polymerization of Zip1 along chromosomes, making it a crucial SIC component. In higher eukaryotes, synapsis and recombination have often been correlated, but it is totally unknown how these two processes are linked. In this study, we present the characterization of a higher eukaryote SIC component homologue: Arabidopsis AtZIP4. We show that mutations in AtZIP4 belong to the same epistasis group as Atmsh4 and eliminate approximately 85% of crossovers (COs). Furthermore, genetic analyses on two adjacent intervals of Chromosome I established that the remaining COs in Atzip4 do not show interference. Lastly, immunolocalization studies showed that polymerization of the central element of the synaptonemal complex is not affected in Atzip4 background, even if it may proceed from fewer sites compared to wild type. These results reveal that Zip4 function in class I CO formation is conserved from budding yeast to Arabidopsis. On the other hand, and contrary to the situation in yeast, mutation in AtZIP4 does not prevent synapsis, showing that both aspects of the Zip4 function (i.e., class I CO maturation and synapsis) can be uncoupled.
机译:在发芽的酵母减数分裂中,I类干扰敏感交叉的形成需要ZMM蛋白。这些ZMM蛋白对于形成成熟的突触复合物至关重要,并且已经提出了这些蛋白的子集(Zip2,Zip3和Zip4)来组成突触起始复合物(SIC)的核心。 Zip4 / Spo22与Zip2一起起作用,以促进Zip1沿着染色体的聚合,使其成为至关重要的SIC组件。在高等真核生物中,突触和重组通常是相关的,但完全不知道这两个过程如何关联。在这项研究中,我们介绍了一个更高的真核生物SIC组件同源物的特征:拟南芥AtZIP4。我们显示AtZIP4中的突变与Atmsh4属于同一上位组,并且消除了大约85%的交叉(CO)。此外,对I号染色体两个相邻间隔的遗传分析确定,Atzip4中的其余CO不会显示干扰。最后,免疫定位研究表明,突触复合物中心元素的聚合在Atzip4背景下不受影响,即使与野生型相比可能从较少的位点进行聚合。这些结果表明,Zip4在I类CO形成中的功能从发芽酵母到拟南芥是保守的。另一方面,与酵母中的情况相反,AtZIP4中的突变不能阻止突触,表明Zip4功能的两个方面(即I类CO成熟和突触)都可以解偶联。

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