首页> 外文期刊>Journal of Applied Ichthyology >Microsatellites assessment of Chinese sturgeon (Acipenser sinensis Gray) genetic variability.
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Microsatellites assessment of Chinese sturgeon (Acipenser sinensis Gray) genetic variability.

机译:中国st(Acipenser sinensis Gray)遗传变异的微卫星评估。

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摘要

Four microsatellites were used to examine the genetic variability of the spawning stocks of Chinese sturgeon, Acipenser sinensis, from the Yangtze River sampled over a 3-year period (1999-2001). Within 60 individuals, a total of 28 alleles were detected over four polymorphic microsatellite loci. The number of alleles per locus ranged from 4 to 15, with an average allele number of 7. The number of genotypes per locus ranged from 6 to 41. The genetic diversity of four microsatellite loci varied from 0.34 to 0.67, with an average value of 0.54. For the four microsatellite loci, the deviation from the Hardy-Weinberg equilibrium was mainly due to null alleles. The mean number of alleles per locus and the mean heterozygosity were lower than the average values known for anadromous fishes. Fish were clustered according to their microsatellite characteristics using an unsupervised 'Artificial Neural Networks' method entitled 'Self-organizing Map'. The results revealed no significant genetic differentiation considering genetic distance among samples collected during different years. Lack of heterogeneity among different annual groups of spawning stocks was explained by the complex age structure (from 8 to 27 years for males and 12 to 35 years for females) of Chinese sturgeon, leading to formulate an hypothesis about the maintenance of genetic diversity and stability in long-lived animals.
机译:在三年(1999-2001年)的采样中,使用四个微卫星检查了来自长江的中华st中华A产卵种群的遗传变异性。在60个个体中,在四个多态微卫星基因座上共检测到28个等位基因。每个基因座的等位基因数量范围为4至15,平均等位基因数量为7。每个基因座的基因型数量范围为6至41。四个微卫星基因座的遗传多样性范围为0.34至0.67,平均值为0.54。对于四个微卫星基因座,其与Hardy-Weinberg平衡的偏离主要是由于等位基因无效。每个基因座的平均等位基因数目和平均杂合度均低于正常鱼类的平均值。根据其微卫星特征,使用名为“自组织图”的无监督“人工神经网络”方法对鱼进行聚类。结果表明,考虑到不同年份收集的样本之间的遗传距离,没有明显的遗传分化。中华st的年龄结构复杂(雄性从8岁到27岁,雌性从12岁到35岁)解释了不同年产卵种群之间缺乏异质性,从而提出了维持遗传多样性和稳定性的假说。在长寿动物中

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