一些线粒体基因在家鼠亚种生物系统学和系统地理学研究中的有效性评价

Ahmadreza Katouzian, H. Rajabi-Maham
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引用次数: 1

摘要

用该方法研究了小家鼠物种复合体(家鼠)部分mtDNA基因在生物系统学研究中的有效性。近年来的研究利用NADH脱氢酶基因、细胞色素b基因、细胞色素氧化酶基因、d -环区和线粒体dna全基因组等不同的线粒体基因对家鼠进行了研究。每个基因组区域的使用都有其自身的优点和缺点。鉴定合适的基因组区域对分子生物系统研究非常重要。我们已经证明,NADH脱氢酶和细胞色素氧化酶基因(特别是COX2)在生物系统学研究和亚种鉴定中特别有用,而d环区是该物种亚种的生物地理和系统地理研究的最佳候选者,无论从效率还是经济角度来看都是如此。考虑到前两个基因复合物是高度保守的,而后者随着时间的推移很容易获得和保存突变,因此介绍了这些候选基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of effectiveness of some mitochondrial genes in biosystematics and phylogeographic studies of house mouse (Mus musculus ) subspecies
The identification of the efficiency of some mtDNA genes of Mus musculus species complex (house mouse) for biosystematics research was studied in this approach. Recent studies have made use of different mitochondrial genes including NADH dehydrogenase genes, cytochrome b gene, cytochrome oxidase genes, D-loop region and whole mtDNA genome to study the house mouse species. Usage of each of these genome regions has its own advantages and disadvantages. Identification of appropriate genomic regions is very important for molecular biosystematic research. We have shown here that NADH dehydrogenase and Cytochrome oxidase genes (particularly COX2) are especially useful in biosystematics studies and subspecies identification,whereas D-loop region is the best candidate for biogeographic and phylogeographic studiesof subspecies of this species efficiency-wise as well as economically. These candidates areintroduced considering that the first two gene complexes are highly conserved whereas the latteris well receptive to gaining and preserving the mutations through time.
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