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Genetic Diversity and Local Connectivity in the Mediterranean Red Gorgonian Coral after Mass Mortality Events

机译:大规模死亡事件发生后地中海红色高更珊瑚的遗传多样性和局部连通性

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摘要

Estimating the patterns of connectivity in marine taxa with planktonic dispersive stages is a challenging but crucial task because of its conservation implications. The red gorgonian Paramuricea clavata is a habitat forming species, characterized by short larval dispersal and high reproductive output, but low recruitment. In the recent past, the species was impacted by mass mortality events caused by increased water temperatures in summer. In the present study, we used 9 microsatellites to investigate the genetic structure and connectivity in the highly threatened populations from the Ligurian Sea (NW Mediterranean). No evidence for a recent bottleneck neither decreased genetic diversity in sites impacted by mass mortality events were found. Significant IBD pattern and high global FST confirmed low larval dispersal capability in the red gorgonian. The maximum dispersal distance was estimated at 20–60 km. Larval exchange between sites separated by hundreds of meters and between different depths was detected at each site, supporting the hypothesis that deeper subpopulations unaffected by surface warming peaks may provide larvae for shallower ones, enabling recovery after climatically induced mortality events.
机译:估计具有浮游扩散阶段的海洋生物分类群的连通性模式是一项具有挑战性但至关重要的任务,因为它具有保护意义。红色的高古猿Paramuricea clavata是一种栖息地形成物种,其特征是幼虫传播时间短,繁殖产量高,但补充量低。在最近的过去,该物种受到夏季水温升高引起的大规模死亡事件的影响。在本研究中,我们使用9个微卫星研究了来自利古里亚海(地中海西北部)高度威胁的种群的遗传结构和连通性。没有发现近期瓶颈的证据,也没有发现受大规模死亡事件影响的地点的遗传多样性下降。明显的IBD分布图和较高的全球FST证实了红鼻gor的幼虫扩散能力低。最大散布距离估计为20-60 km。在每个站点之间检测到了相隔数百米的站点之间以及不同深度之间的幼虫交换,这支持了以下假设:不受表面变暖峰影响的较深亚种群可能为较浅的种群提供幼虫,从而在气候诱发的死亡事件后得以恢复。

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