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首页> 外文期刊>Organisms, diversity, & evolution >Fine-scale population genetic structure in Artemia urmiana (Günther, 1890) based on mtDNA sequences and ISSR genomic fingerprinting
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Fine-scale population genetic structure in Artemia urmiana (Günther, 1890) based on mtDNA sequences and ISSR genomic fingerprinting

机译:基于线粒体DNA序列和ISSR基因组指纹图谱的Artemia urmiana(Günther,1890)小规模种群遗传结构

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We investigated the genetic variability and population structure of the halophilic zooplankter Artemia urmiana from 15 different geographical locations of Lake Urmia using nucleotide sequences of COI (mtDNA cytochrome c oxidase subunit I) and genomic fingerprinting by ISSR-PCR (inter-simple sequence repeats). According to sequence data, A. urmiana exhibits a high level of haplotype diversity with a low level of nucleotide diversity. The haplotype spanning network recognized 36 closely related unique haplotypes. ISSR profiles confirmed a substantial amount of genomic diversity with a low level of population structure. No apparent genetic structure was recognized in Lake Urmia but rather a random geographic distribution of genotypes indicating a high degree of panmixia. The population genetic data indicate the possibility of an individual's relationship, implying that differentiation of individuals is not affected by ecological factors. Therefore, the A. urmiana population from Lake Urmia should be considered as a single management unit for conservation.
机译:我们使用COI(mtDNA细胞色素C氧化酶亚基I)核苷酸序列和ISSR-PCR(简单序列间重复)进行基因组指纹分析,研究了15个不同地理位置的湖泊乌尔米亚盐沼浮游动物Artemia urmiana的遗传变异和种群结构。根据序列数据,A。urmiana表现出高水平的单倍型多样性和低水平的核苷酸多样性。单倍型跨越网络可识别36个紧密相关的独特单倍型。 ISSR资料证实了大量的基因组多样性和较低的种群结构。在Urmia湖中没有发现明显的遗传结构,而是基因型的随机地理分布,表明高度混杂症。群体遗传数据表明存在个体关系的可能性,这意味着个体的分化不受生态因素的影响。因此,来自乌尔米亚湖的乌尔米亚虫种群应被视为一个单一的保护管理单位。

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