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Genetic Analyses of Elys Mutations in Drosophila Show Maternal-Effect Lethality and Interactions with Nucleoporin Genes

机译:果蝇伊利突变的遗传分析显示母体影响致命性和与核蛋白基因的相互作用。

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摘要

ELYS determines the subcellular localizations of Nucleoporins (Nups) during interphase and mitosis. We made loss-of-function mutations of Elys in Drosophila melanogaster and found that ELYS is dispensable for zygotic viability and male fertility but the maternal supply is necessary for embryonic development. Subsequent to fertilization, mitotic progression of the embryos produced by the mutant females is severely disrupted at the first cleavage division, accompanied by irregular behavior of mitotic centrosomes. The Nup160 introgression from D. simulans shows close resemblance to that of the Elys mutations, suggesting a common role for those proteins in the first cleavage division. Our genetic experiments indicated critical interactions between ELYS and three Nup107–160 subcomplex components; hemizygotes of either , Nup96 or were lethal in the genetic background of the Elys mutation. Not only Nup96 and Nup160 but also Nup37 of D. simulans behave as recessive hybrid incompatibility genes with D. melanogaster. An evolutionary analysis indicated positive natural selection in the ELYS-like domain of ELYS. Here we propose that genetic incompatibility between Elys and Nups may lead to reproductive isolation between D. melanogaster and D. simulans, although direct evidence is necessary.
机译:ELYS确定在相间和有丝分裂期间核蛋白(Nups)的亚细胞定位。我们在果蝇中进行了Elys的功能丧失突变,发现ELYS对于合子生存力和雄性育性是必不可少的,但母体供应对于胚胎发育是必需的。受精后,由突变雌性产生的胚胎的有丝分裂进程在第一次分裂分裂时受到严重破坏,并伴随着有丝分裂中心体的不规则行为。 D. simulans的Nup160基因渗入显示出与Elys突变的渗入非常相似,表明这些蛋白质在第一个分裂分裂中具有共同的作用。我们的基因实验表明ELYS与三个Nup107-160亚复合物组分之间的关​​键相互作用。 Nup96或Nup96的半合子在Elys突变的遗传背景中具有致死性。不仅D. simulans的Nup96和Nup160,而且Nup37都与D. melanogaster一起作为隐性杂种不相容基因。进化分析表明在ELYS的ELYS样域中有积极的自然选择。在这里,我们建议伊利斯和小坚果之间的遗传不相容性可能导致 D之间的生殖隔离。黑色素瘤 D。模仿者,尽管需要直接证据。

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