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Temporal trends in genetic data and effective population size support efficacy of management practices in critically endangered dusky gopher frogs ( Lithobates sevosus )

机译:遗传数据的时间趋势和有效种群数量支持了极度濒临灭绝的灰鼠蛙(Lithobates sevosus)的管理实践的有效性

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Abstract Monitoring temporal changes in population genetic diversity and effective population size can provide vital information on future viability. The dusky gopher frog, Lithobates sevosus , is a critically endangered species found only in coastal Mississippi, with low genetic variability as a consequence of isolation and population size reduction. Conservation management practices have been implemented, but their efficacy has not been addressed. We genotyped individuals collected 1997?¢????2014 to determine temporal trends in population genetic variation, structure, and effective size. Observed and expected heterozygosity and allelic richness revealed temporally stable, but low, levels of genetic variation. Positive levels of inbreeding were found in each year. There was weak genetic structure among years, which can be attributed to increased effects of genetic drift and inbreeding in small populations. L. sevosus exhibited an increase in effective population size, and currently has an estimated effective size of 33.0?¢????58.6 individuals, which is approximately half the census size. This large ratio could possibly be explained by genetic compensation. We found that management practices have been effective at maintaining and improving effective size and genetic diversity, but that additional strategies need to be implemented to enhance viability of the species.
机译:摘要监测种群遗传多样性和有效种群数量的时间变化可以提供有关未来生存能力的重要信息。昏暗的地鼠蛙Lithobates sevosus是仅在密西西比州沿海发现的极度濒危物种,由于隔离和种群减少,遗传变异性低。已经实施了养护管理措施,但尚未解决其效力。我们对1997年至2014年收集的个体进行了基因分型,以确定群体遗传变异,结构和有效大小的时间趋势。观察到和预期的杂合性和等位基因丰富性揭示了时间稳定,但遗传变异水平较低。每年发现近亲繁殖的阳性水平。多年来,遗传结构较弱,这可以归因于少数群体中遗传漂移和近交的影响增加。 L. sevosus的有效种群数量有所增加,目前估计有效种群为33.0-58.6个个体,大约是人口普查规模的一半。如此大的比例可能可以通过遗传补偿来解释。我们发现管理实践在保持和改善有效大小和遗传多样性方面是有效的,但是需要实施其他策略来增强物种的生存力。

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