韩国两种滨栖动物长春花(perwinkle Littorina brevicula)和橡子藤壶(Acorn barnanus albicostatus)种群遗传结构的比较

Yuhyun Kim, Jeounghee Lee, Han-Na Kim, Jongwoo Jung
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引用次数: 3

摘要

生活在海边的海洋动物的遗传结构受到许多因素的影响。其中,基因流动和自然选择对有幼虫期的海生物种的遗传结构有很大的影响。这两个因素对海洋物种遗传结构的相对贡献主要取决于幼虫期的持续时间。国内对幼虫期与种群遗传结构的关系研究甚少。本研究分析了朝鲜半岛石岸生境两种优势种长春花(perwinkle Littorina brevicula)和acorn藤壶(Fistulobalanus albicostatus)细胞色素氧化酶亚基I (COI)的遗传变异。这两个物种的结构都不牢固,可能经历了最近的人口扩张。然而,与长春花不同,藤壶种群具有相当大的遗传变异,并表现出不匹配分布的双峰模式。这些结果表明,藤壶种群更多地受到当地适应的影响,而不是通过幼虫迁移产生的基因流。在失配分布图中观察到的藤壶种群的双峰模式表明它们可能经历了二次接触。对海岸生物的进一步研究将有助于了解韩国水域周围海岸生态系统的演变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Population Genetic Structure of Two Seashore-Dwelling Animal Species, Periwinkle Littorina brevicula and Acorn Barnacle Fistulobalanus albicostatus from Korea
The genetic structure of marine animals that inhabit the seashore is affected by numerous factors. Of these, gene flow and natural selection during recruitment have strong influences on the genetic structure of seashore-dwelling species that have larval periods. Relative contributions of these two factors to the genetic structure of marine species would be determined mainly by the duration of larval stage. The relationship between larval period and genetic structure of population has been rarely studied in Korea. In this study, genetic variations of cytochrome oxidase subunit I (COI) were analyzed in two dominant species on rocky shore habitats in the Korean peninsula: periwinkle Littorina brevicula and acorn barnacle Fistulobalanus albicostatus. Both species are not strongly structured and may have experienced recent population expansion. Unlike periwinkle, however, barnacle populations have considerable genetic variation, and show a bimodal pattern of mismatch distribution. These results suggest that barnacle populations are more affected by local adaptation rather than gene flow via larval migration. The bimodal patterns of barnacle populations observed in mismatch distribution plots imply that they may have experienced secondary contact. Further studies on seashore-dwelling species are expected to be useful in understanding the evolution of the coastal ecosystem around Korean waters.
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