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首页> 外文期刊>Marine biotechnology >RFLP analysis of mitochondrial DNA to evaluate genetic variation instriped red mullet (Mullus surmuletus L.) and red mullet (Mullus barbatusL.) populations
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RFLP analysis of mitochondrial DNA to evaluate genetic variation instriped red mullet (Mullus surmuletus L.) and red mullet (Mullus barbatusL.) populations

机译:线粒体DNA的RFLP分析,以评估红鱼(Mullus surmuletus L.)和红鱼(Mullus barbatusL。)种群的遗传变异

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摘要

The genetic differentiation of striped red:mullet (Mullus surmuletus) and red mullet (Mullus barbatus) was investigated in 6 Mediterranean populations of each species by means of restriction fragment length polymorphism analysis of mitochondrial DNA. Three segments amplified by polymerase chain reaction (control region, COI, and 12S-16S ribosomal RNA) were digested with 20 restriction endonucleases, revealing 71 haplotypes for M. surmuletus and 30 for M. barbatus. For the two species nucleotide diversity was equally distributed within and among populations, leading to N-ST values of 0.545 and 0.500 for M. surmuletus and M. barbatus, respectively. However, intrapopulation and interpopulation genetic structuring appeared to be much higher for M. surmuletus than for M. barbatus (1.88% vs. 0.46% of mean intrapopulation nucleotide diversity; 1.94% vs. 0.47% of mean interpopulation nucleotide diversity, 0.055% vs. 0.002% of net interpopulation divergence). Furthermore, 81.69% of the haplotypes observed;for M. surmuletus were unique, whereas 70.29% of M. barbatus individuals,were grouped in 3 common haplotypes. Given that fishing pressure and population sizes are similar for both species, this differentiation could be attributed to differences in biological parameters and life histories between the two species, coupled with oceanographic conditions prevailing in the studied area.
机译:通过线粒体DNA的限制性片段长度多态性分析,研究了条纹红:mul鱼(Mullus surmuletus)和红鱼(Mullus barbatus)的遗传分化。用20种限制性核酸内切酶消化通过聚合酶链反应扩增的3个片段(控制区,COI和12S-16S核糖体RNA),从而显示出71。对于这两个物种,核苷酸多样性在种群内和种群之间均等地分布,分别导致sur.mulmuletus和barbatus的N-ST值为0.545和0.500。然而,S。surmuletus的种群内和种群间遗传结构似乎比barbatus菌高得多(1.88%vs.平均种群内核苷酸多样性的0.46%; 1.94%vs.平均种群间核苷酸多样性的0.47%,0.055%vs.净种群间差异的0.002%)。此外,观察到81.69%的单倍体;对于M. surmuletus是唯一的,而70.29%的M. barbatus个体被分为3种常见的单倍型。鉴于两个物种的捕捞压力和种群大小相似,这种差异可归因于两个物种在生物学参数和生活史上的差异,以及研究区域内普遍存在的海洋条件。

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