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Genetic Variation and Geographic Differentiation in Mitochondrial DNA of the Horseshoe Crab LIMULUS POLYPHEMUS

机译:马蹄蟹线粒体DNA线粒体DNA的遗传变异和地理分化

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摘要

Restriction site variation in mitochondrial DNA (mtDNA) of the horseshoe crab (Limulus polyphemus) was surveyed in populations ranging from New Hampshire to the Gulf Coast of Florida. MtDNA clonal diversity was moderately high, particularly in southern samples, and a major genetic "break" (nucleotide sequence divergence approximately 2%) distinguished all sampled individuals which were north vs. south of a region in northeastern Florida. The area of genotypic divergence in Limulus corresponds to a long-recognized zoogeographic boundary between warm-temperate and tropical marine faunas, and it suggests that selection pressures and/or gene flow barriers associated with water mass differences may also influence the evolution of species widely distributed across such transition zones. On the other hand, a comparison of the mtDNA divergence patterns in Limulus with computer models involving stochastic lineage extinction in species with limited gene flow demonstrates that deterministic explanations need not necessarily be invoked to account for the observations. Experiments to distinguish stochastic from deterministic possibilities are suggested. Overall, the pattern and magnitude of mtDNA differentiation in horseshoe crabs is very similar to that typically reported for freshwater and terrestrial species assayed over a comparable geographic range. Results demonstrate for the first time that, geographically, at least some continuously distributed marine organisms can show considerable mtDNA genetic differentiation.
机译:在从新罕布什尔州到佛罗里达州墨西哥湾沿岸的人群中,调查了the(Li)线粒体DNA(mtDNA)的限制性位点变化。 MtDNA克隆多样性中等偏高,尤其是在南部样本中,并且主要的遗传“断裂”(核苷酸序列差异约为2%)区分了佛罗里达东北部某个区域的北部与南部的所有采样个体。 Li的基因型分歧区域对应于温带和热带海洋动物之间的一个公认的动物地理边界,这表明与水量差异相关的选择压力和/或基因流障碍也可能影响广泛分布物种的进化跨越这样的过渡区。另一方面,将Li鱼中的mtDNA差异模式与涉及基因流受限的物种中随机谱系灭绝的计算机模型进行比较,结果表明,不一定需要使用确定性的解释来解释观察结果。建议进行区分随机和确定性可能性的实验。总体而言,horse蟹中mtDNA分化的模式和幅度与在可比较的地理范围内分析的淡水和陆生物种的典型报道非常相似。结果首次证明,在地理上,至少一些连续分布的海洋生物可以显示出可观的mtDNA遗传分化。

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