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首页> 外文期刊>Frontiers in Marine Science >Limitations in the Use of Archived Vent Mussel Samples to Assess Genetic Connectivity Among Seafloor Massive Sulfide Deposits: A Case Study with Implications for Environmental Management
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Limitations in the Use of Archived Vent Mussel Samples to Assess Genetic Connectivity Among Seafloor Massive Sulfide Deposits: A Case Study with Implications for Environmental Management

机译:使用存档的贻贝样本评估海底大量硫化物矿床之间的遗传连通性的局限性:对环境管理具有影响的案例研究

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Genetic connectivity studies can inform the design of mitigation strategies used in environmental management. However, the expense of developing species-specific molecular markers and collecting samples at appropriate spatial and temporal scales can be prohibitive. Using archived material and existing molecular markers may provide a cost-effective way to assess population connectivity. Genetic connectivity studies are increasingly in demand in the deep sea in response to mounting anthropogenic pressures, including seafloor massive sulfide (SMS) mining. The feasibility of using archived material was assessed using the New Zealand-endemic vent mussel Gigantidas gladius, which inhabits areas licensed for the prospecting phase of SMS mining. Four molecular markers were tested, but only one (mitochondrial COI) provided suitable sequences. Of 942 specimens, only 150 individuals were informative, largely due to poor tissue quality of archived samples. Seven populations spanning the distributional range of G. gladius were assessed. The results indicate that G. gladius has high levels of gene flow among sites 10s to 100s km apart and limited genetic structure. Haplotypic diversity was not equally distributed among populations, with lower diversity for the Macauley Volcano population at the northern extent of the species distribution and greater diversity within central populations. Migrant exchange was also greatest between central populations, with one population at Rumble V Seamount appearing important in terms of maintaining genetic diversity within the Kermadec Volcanic Arc region. However, interpretation of the results should be viewed with caution as small sample sizes may have limited the ability to detect genetic structure. Despite these limitations, mitigation strategies that protect areas of seabed from mining activities should consider the genetic vulnerability of the population at the northern edge of the species’ distribution and the significance of certain central populations.
机译:遗传连通性研究可以为环境管理中的缓解策略设计提供依据。但是,开发物种特异性分子标记并在适当的时空尺度上收集样品的费用可能会令人望而却步。使用存档的材料和现有的分子标记可能会提供一种经济有效的方式来评估人群的连通性。随着人为压力的不断增加,包括海底块状硫化物(SMS)的开采,深海地区对遗传连通性研究的需求日益增长。使用新西兰特有的喷口贻贝Gigantidas gladius评估了使用存档材料的可行性,该栖息地居住在获得许可的SMS采矿阶段。测试了四个分子标记,但只有一个(线粒体COI)提供了合适的序列。在942个标本中,只有150个个体提供了丰富的信息,这主要是由于存档样本的组织质量较差。评估了跨越格里休斯分布范围的七个种群。结果表明,剑兰G.gladius之间的基因流水平高,相距10s至100s km,遗传结构有限。单倍型多样性在种群之间分布不均,在物种分布的北部,Macauley火山种群的多样性较低,而中央种群的多样性较高。中央人群之间的移徙交流也最大,Rumble V Seamount的一个人群在维护Kermadec火山弧地区内的遗传多样性方面显得很重要。但是,对结果的解释应谨慎对待,因为小样本量可能会限制检测遗传结构的能力。尽管有这些限制,但保护海底地区免受采矿活动影响的缓解策略应考虑物种分布北部边缘的种群遗传脆弱性以及某些中央种群的重要性。

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