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通过微卫星分析揭示的近亲繁殖对食用牡蛎幼虫的早期影响。

Early effect of inbreeding as revealed by microsatellite analyses on Ostrea edulis larvae.

作者信息

Bierne N, Launey S, Naciri-Graven Y, Bonhomme F

机构信息

Laboratoire Génome et Populations, Centre National de la Recerche Scientifique UPR 9060, Université Montpellier II, France.

出版信息

Genetics. 1998 Apr;148(4):1893-906. doi: 10.1093/genetics/148.4.1893.

Abstract

This paper reports new experimental evidence on the effect of inbreeding on growth and survival in the early developmental phase of a marine bivalve, the flat oyster Ostrea edulis. Two crosses between full sibs were analyzed using four microsatellite markers. Samples of 96 individuals were taken just after spawning (day 1), at the end of the larval stage before metamorphosis (day 10) and at the postlarval stage (day 70). Significant departure from Mendelian expectation was observed at two loci in the first cross and two loci in the second. Departure from 1:1 segregation occurred in one parent of the first cross at three loci and genotypic selection, which resulted in highly significant heterozygote excesses, was recorded at three out of four loci in cross C1 and at two out of three loci in cross C2. Across the four markers, there were similar significant excesses of multilocus heterozygosity, and significant multilocus heterozygosity-growth correlations were recorded for both crosses at all stages. These results suggest that microsatellite markers, often assumed to be neutral, cosegregated with fitness-associated genes, the number of which is estimated to be between 15 and 38 in the whole genome, and that there is a potentially high genetic load in Ostrea edulis genome. This load provides a genetic basis for heterosis in marine bivalves.

摘要

本文报道了关于近亲繁殖对一种海洋双壳贝类——食用牡蛎早期发育阶段生长和存活影响的新实验证据。使用四个微卫星标记分析了全同胞之间的两个杂交组合。在产卵后(第1天)、变态前幼虫阶段结束时(第10天)和幼体后期(第70天)采集了96个个体的样本。在第一个杂交组合的两个位点以及第二个杂交组合的两个位点观察到显著偏离孟德尔预期的情况。在第一个杂交组合的一个亲本中,三个位点出现了偏离1:1分离的情况,并且在杂交组合C1的四个位点中的三个以及杂交组合C2的三个位点中的两个记录到了导致高度显著杂合子过剩的基因型选择。在这四个标记中,多位点杂合性都有类似的显著过剩情况,并且在所有阶段的两个杂交组合中都记录到了显著的多位点杂合性与生长的相关性。这些结果表明,通常被认为是中性的微卫星标记与适应性相关基因共分离,在整个基因组中,此类基因的数量估计在15到38个之间,并且食用牡蛎基因组中存在潜在的高遗传负荷。这种负荷为海洋双壳贝类的杂种优势提供了遗传基础。

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