首页> 外文期刊>Heredity: An International Journal of Genetics >GENETIC SUBSTRUCTURING AS A RESULT OF BARRIERS TO GENE FLOW IN URBAN RANA TEMPORARIA (COMMON FROG) POPULATIONS - IMPLICATIONS FOR BIODIVERSITY CONSERVATION
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GENETIC SUBSTRUCTURING AS A RESULT OF BARRIERS TO GENE FLOW IN URBAN RANA TEMPORARIA (COMMON FROG) POPULATIONS - IMPLICATIONS FOR BIODIVERSITY CONSERVATION

机译:遗传构成对城市林蛙(普通蛙)种群基因流的阻碍-对生物多样性保护的意义

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The ability to maintain small populations in quasi-natural settings is an issue of considerable importance in biodiversity conservation. The genetic structure of urban common frog (Rana temporaria) populations was determined by allozyme electrophoresis and used to evaluate the effects of restricted intersite migration. Despite the lack of any absolute barrier to movement between ponds, substantial genetic differentiation was found between sites separated by an average of only 2.3 km. Genetic distances between these town ponds correlated positively with geographical distances and were almost twice as great as those found between rural sites separated by an average of 41 km. Measures of genetic diversity and fitness were always lowest in the town, where the degree of subpopulation differentiation (F-ST = 0.388) was high. Population decline was not evident in the town, but molecular and fitness data indicated the presence of genetic drift and inbreeding depression. The long-term survival of artificially restricted populations, particularly of relatively sedentary species, may require molecular monitoring, if genetic diversity is not to be lost by chance when facets of the species niche prove to be poorly understood. [References: 57]
机译:在准自然环境中维持少数人口的能力是在生物多样性保护中非常重要的问题。通过等位酶电泳确定了城市普通蛙(蛙蛙)种群的遗传结构,并用于评估限制性位点间迁移的影响。尽管池塘之间没有任何绝对的移动障碍,但在平均仅相距2.3 km的地点之间发现了实质性的遗传分化。这些城镇池塘之间的遗传距离与地理距离呈正相关,几乎是平均相距41 km的农村站点之间的遗传距离的两倍。遗传多样性和适应性的测量在该镇始终是最低的,该镇的亚人群分化程度较高(F-ST = 0.388)。该镇人口没有明显减少,但是分子和适应性数据表明存在遗传漂移和近亲衰退。如果在对生态位的各个方面了解甚少的情况下不会偶然丧失遗传多样性,则人工限制种群,特别是相对久坐的种群的长期生存可能需要进行分子监测。 [参考:57]

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