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西太平洋热液喷口复合种群的连通性差异模式:生物物理模型与遗传模型的比较

Differential patterns of connectivity in Western Pacific hydrothermal vent metapopulations: A comparison of biophysical and genetic models.

作者信息

Breusing Corinna, Johnson Shannon B, Mitarai Satoshi, Beinart Roxanne A, Tunnicliffe Verena

机构信息

Graduate School of Oceanography University of Rhode Island Narragansett Rhode Island USA.

Monterey Bay Aquarium Research Institute Moss Landing California USA.

出版信息

Evol Appl. 2021 Dec 9;16(1):22-35. doi: 10.1111/eva.13326. eCollection 2023 Jan.

Abstract

Hydrothermal ecosystems face threats from planned deep-seabed mining activities, despite the fact that patterns of realized connectivity among vent-associated populations and communities are still poorly understood. Since populations of vent endemic species depend on larval dispersal to maintain connectivity and resilience to habitat changes, effective conservation strategies for hydrothermal ecosystems should include assessments of metapopulation dynamics. In this study, we combined population genetic methods with biophysical models to assess strength and direction of gene flow within four species of the genus (. , . , .  and . ) that are ecologically dominant taxa at Western Pacific hydrothermal vents. In contrast to predictions from dispersal models, among-basin migration in .  occurred predominantly in an eastward direction, while populations within the North Fiji Basin were clearly structured despite the absence of oceanographic barriers. Dispersal models and genetic data were largely in agreement for the other species, suggesting limited between-basin migration for . , lack of genetic structure in .  within the Lau Basin and restricted gene flow between northern and southern .  populations in the Mariana back-arc as a result of oceanic current conditions. Our findings show that gene flow patterns in ecologically similar congeneric species can be remarkably different and surprisingly limited depending on environmental and evolutionary contexts. These results are relevant to regional conservation planning and to considerations of similar integrated analyses for any vent metapopulations under threat from seabed mining.

摘要

热液生态系统面临着来自计划中的深海采矿活动的威胁,尽管与热液喷口相关的种群和群落之间实际连通性的模式仍未得到充分了解。由于热液喷口特有物种的种群依赖幼体扩散来维持连通性和对栖息地变化的恢复力,热液生态系统的有效保护策略应包括对集合种群动态的评估。在本研究中,我们将种群遗传学方法与生物物理模型相结合,以评估在西太平洋热液喷口作为生态优势类群的 属的四个物种( 、 、 和 )内基因流动的强度和方向。与扩散模型的预测相反, 中的盆地间迁移主要发生在向东的方向,而北斐济盆地内的种群尽管没有海洋学屏障但结构清晰。对于其他 个物种,扩散模型和遗传数据在很大程度上是一致的,这表明 之间的盆地间迁移有限,劳盆地内的 在基因上没有结构,以及由于洋流条件,马里亚纳弧后 的南北种群之间的基因流动受到限制。我们的研究结果表明,在生态上相似的同属物种中的基因流动模式可能会因环境和进化背景而显著不同且令人惊讶地有限。这些结果与区域保护规划以及对任何受到海底采矿威胁的喷口集合种群进行类似综合分析的考虑相关。

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