首页> 美国卫生研究院文献>Journal of Genetic Engineering Biotechnology >Genetic variation in wild and hatchery populations of giant freshwater prawn (Macrobrachium rosenbergii) revealed by randomly amplified polymorphic DNA markers
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Genetic variation in wild and hatchery populations of giant freshwater prawn (Macrobrachium rosenbergii) revealed by randomly amplified polymorphic DNA markers

机译:随机扩增的多态性DNA标记揭示了大型淡水虾(罗氏沼虾)的野生和孵化场种群的遗传变异

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摘要

Sustainable improvement and conservation of any genetic resource depend on the assessment of its intra- and inter-population genetic variation. In order to estimate genetic variation in both wild and hatchery populations of Macrobrachium rosenbergii, randomly amplified polymorphic DNA (RAPD) analysis was performed. Analyses of 51 polymorphic loci amplified from genomic DNA by three decamer random primers revealed different degrees of genetic variation in two wild (Bhairab and Rupsha rivers) and hatchery-derived gher (Gher-1 and Gher-2) populations. The proportion of polymorphic loci was found to be higher in wild populations (0.90 and 0.65 for the Bhairab and Rupsha populations, respectively) than the hatchery-derived gher populations (0.29 and 0.16 for Gher-1 and Gher-2, respectively). Likewise, the river populations contained higher levels of gene diversity (0.221 and 0.179 for Bhairab and Rupsha populations, respectively) than the gher populations (0.114 and 0.045 for Gher-1 and Gher-2, respectively). These results suggest reduction of genetic variation and heterozygosity in the hatchery-derived gher populations. Inter-population similarity indices and pairwise genetic distance values showed that variation between the wild or between the gher populations were lower than those between the wild and hatchery populations. On average, 14 loci exhibited significant deviation from homogeneity in wild vs hatchery population pairs, whereas 2 and 3 loci showed heterogeneity in Gher-1 vs Gher-2 and Bhairab vs Rupsha population pairs, respectively. A genetic distance-based UPGMA dendrogram segregated river populations from the gher populations. Our study, therefore, revealed substantial levels of genetic variation between wild and hatchery populations of M. rosenbergii.
机译:任何遗传资源的可持续改善和保存都取决于对其种群内和种群间遗传变异的评估。为了估计罗氏沼虾野生和孵化场种群的遗传变异,进行了随机扩增多态性DNA(RAPD)分析。三种decamer随机引物从基因组DNA扩增的51个多态性位点的分析显示,在两个野生(Bhairab和Rupsha河)和孵化场衍生的gher(Gher-1和Gher-2)种群中,遗传变异程度不同。在野生种群中多态性位点的比例更高(Bhairab和Rupsha种群分别为0.90和0.65)高于孵化场衍生的gher种群(Gher-1和Gher-2分别为0.29和0.16)。同样,河流种群的基因多样性水平较高(Bhairab和Rupsha种群分别为0.221和0.179)比gher种群(Gher-1和Gher-2分别为0.114和0.045)更高。这些结果表明,孵化场衍生的g鱼种群的遗传变异和杂合性降低。种群间相似性指数和成对遗传距离值表明,野生种群或the鱼种群之间的变异低于野生种群与孵化场种群之间的变异。平均而言,在野生与孵化场对中,有14个基因座表现出明显的同质性差异,而在Gher-1与Gher-2和Bhairab与Rupsha种群对中,分别有2和3个基因座表现出异质性。基于遗传距离的UPGMA树状图将河流人口与g尔人口隔离开来。因此,我们的研究揭示了罗氏沼虾野生和孵化场种群之间遗传变异的水平。

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