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Coprinus cinereus Mer3 is required for synaptonemal complex formation during meiosis

机译:在减数分裂期间突触复合物形成需要灰粉鬼伞Mer3

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摘要

Mer3 is an evolutionarily conserved DNA helicase that has crucial roles in meiotic recombination and crossover formation. We have identified the MER3 homolog in Coprinus cinereus (Ccmer3) and show that it is expressed in zygotene and pachytene meiocytes. Immunostaining analysis indicated that CcMer3 was localized on chromosomes at zygotene and pachytene and CcMer3 foci were more frequent on paired than unpaired chromosomes. We generated a C. cinereus mer3 mutant (#1) and found that it showed abnormal meiosis progression and underwent apoptosis after prophase I. Basidiospore production in #1 was reduced to 0.8% of the wild-type level; the spores showed slower germination at 25°C but were similar to the wild type at 37°C. Electron microscopic analysis of chromosome spreads revealed that axial elements were formed in the mutant but that synapsis was defective, resulting in a reduction in spore production. Our results demonstrate that CcMer3 is required for synaptonemal complex formation after axial elements align and is thus essential for homologous synapsis. Communicated by S. Keeney.
机译:Mer3是一种进化保守的DNA解旋酶,在减数分裂重组和交叉形成中具有关键作用。我们已经鉴定出灰绿色鬼伞(Ccmer3)中的MER3同源物,并表明它在合子和粗线肌细胞中表达。免疫染色分析表明,CcMer3位于染色体上的合子和粗线虫,而成对的CcMer3焦点比未配对的染色体更频繁。我们产生了一个C. cinereus mer3突变体(#1),发现它在前期I后显示出异常的减数分裂进程并经历了细胞凋亡。#1中的孢子孢子产生降低至野生型水平的0.8%;孢子在25°C下发芽较慢,但与37°C下的野生型相似。染色体传播的电子显微镜分析表明,突变体中形成了轴向元件,但突触是有缺陷的,导致孢子产生减少。我们的研究结果表明CcMer3是轴向元素对齐后突触复合物形成所必需的,因此对于同源突触必不可少。由S. Keeney沟通。

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