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首页> 外文期刊>Scientific reports. >Populations of the coral species Montastraea cavernosa on the Belize Barrier Reef lack vertical connectivity
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Populations of the coral species Montastraea cavernosa on the Belize Barrier Reef lack vertical connectivity

机译:野生动物群体麦纳斯特拉亚斗篷的群体缺乏垂直连通性

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Larval connectivity among and within coral reefs is important for sustaining coral metapopulations, enhancing ecosystem resilience through species and genetic diversity, and maintaining reef ecosystems' structure and functions. This study characterized genetic structure and assessed horizontal and vertical connectivity among populations of the ubiquitous gonochoric broadcast spawning coral Montastraea cavernosa in Belize. Using nine polymorphic microsatellite loci, we genotyped M. cavernosa colonies from four depth zones at four study sites within Belizean marine management zones. Study sites were selected within South Water Caye Marine Reserve (3 sites) and Glover's Reef Marine Reserve (1 site). Strong contemporary genetic differentiation was observed between relatively shallow M. cavernosa populations (10?m, 16?m) and relatively deep (25?m, 35?m) populations, coinciding with a transition from reef crest to reef slope. These results were consistent across both marine reserves. Vertical and horizontal migration models suggest that all populations were historically panmictic, with little unidirectional migration. The relative local isolation of shallow and mesophotic M. cavernosa populations in Belize, coupled with the importance of Belize's upper mesophotic populations as potential larval sources for other areas in the Tropical Western Atlantic, reinforces the need for management strategies that conserve coral populations across all depth zones.
机译:珊瑚礁中的幼虫连通性和珊瑚礁中的幼虫连接对于持续珊瑚性计算,通过物种和遗传多样性提高生态系统弹性,以及维持珊瑚礁生态系统的结构和功能。该研究表征了遗传结构,并评估了伯利兹普遍的普遍呼吸群广播产卵珊瑚蒙特拉西犬的群体水平和垂直连通性。使用九个多晶型微卫星基因座,在Belizear海洋管理区的四个研究网站中的四个深度区域进行基因分型M. cavernosa菌落。在南水Caye海洋储备(3个景点)和Glover's Reef Marine Reserve(1个网站)中选择了学习景点。在相对浅的M. cavernosa种群(10?M,16?M)和相对深(25μm,35μm)群体之间观察到强烈的当代遗传分化,与Reef Crest过渡到Reef Slope的过渡。这些结果遍布两个海洋储备。垂直和水平迁移模型表明所有人口都是历史上的困境,单向迁移很少。伯利兹的浅局部局部隔离浅和中间光晕群体群体,再加上伯利兹的上部中间光学群体作为热带西部大西洋中其他地区的潜在幼虫来源的重要性,加强了对各种深度的珊瑚人群的管理策略的需求区域。

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