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首页> 外文期刊>Frontiers in Genetics >Identification of Specific Nuclear Genetic Loci and Genes That Interact With the Mitochondrial Genome and Contribute to Fecundity in Caenorhabditis elegans
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Identification of Specific Nuclear Genetic Loci and Genes That Interact With the Mitochondrial Genome and Contribute to Fecundity in Caenorhabditis elegans

机译:线粒体秀丽隐杆线虫的特定核遗传基因座和与线粒体基因组相互作用并促进生殖力的基因的鉴定

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Previous studies have found that fecundity is a multigenic trait regulated, in part, by mitochondrial-nuclear (mit-n) genetic interactions. However, the identification of specific nuclear genetic loci or genes interacting with the mitochondrial genome and contributing to the quantitative trait fecundity is an unsolved issue. Here, a panel of recombinant inbred advanced intercrossed lines (RIAILs), established from a cross between the N2 and CB4856 strains of C. elegans , were used to characterize the underlying genetic basis of mit-n genetic interactions related to fecundity. Sixty-seven single nucleotide polymorphisms (SNPs) were identified by association mapping to be linked with fecundity among 115 SNPs linked to mitotype. This indicated significant epistatic effects between nuclear and mitochondria genetics on fecundity. In addition, two specific nuclear genetic loci interacting with the mitochondrial genome and contributing to fecundity were identified. A significant reduction in fecundity was observed in the RIAILs that carried CB4856 mitochondria and a N2 genotype at locus 1 or a CB4856 genotype at locus 2 relative to the wild-type strains. Then, a hybrid strain (CNC10) was established, which was bred as homoplasmic for the CB4856 mtDNA genome and N2 genotype at locus 1 in the CB4856 nuclear background. The mean fecundity of CNC10 was half the fecundity of the control strain. Several functional characteristics of the mitochondria in CNC10 were also influenced by mit-n interactions. Overall, experimental evidence was presented that specific nuclear genetic loci or genes have interactions with the mitochondrial genome and are associated with fecundity. In total, 18 genes were identified using integrative approaches to have interactions with the mitochondrial genome and to contribute to fecundity.
机译:以前的研究发现,生殖力是一种多基因性状,部分受线粒体-​​核(mit-n)遗传相互作用的调节。然而,鉴定特定的核遗传基因座或基因与线粒体基因组相互作用并促进定量性繁殖力是一个尚未解决的问题。在这里,使用一组由线虫的N2和CB4856菌株之间的杂交建立的重组近交高级杂交系(RIAIL)来表征与繁殖力相关的mit-n遗传相互作用的潜在遗传基础。通过关联映射确定了67个单核苷酸多态性(SNP),与115个与基因型相关的SNP之间的繁殖力有关。这表明核和线粒体遗传学之间对生殖力的显着上位作用。另外,鉴定了两个与线粒体基因组相互作用并促进繁殖力的特定核遗传基因座。相对于野生型菌株,在携带CB4856线粒体和基因座1的N2基因型或基因座2的CB4856基因型的RIAILs中观察到了繁殖力的显着降低。然后,建立了一个杂种菌株(CNC10),将其作为CB4856 mtDNA基因组的同质基因,并在CB4856核背景的基因座1繁殖为N2基因型。 CNC10的平均繁殖力是对照菌株的一半。 mit-n相互作用也影响CNC10中线粒体的几个功能特性。总体而言,实验证据表明,特定的核遗传基因座或基因与线粒体基因组具有相互作用,并且与繁殖力有关。总共使用整合方法鉴定了18个基因,这些基因与线粒体基因组具有相互作用并有助于繁殖。

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