泰国安达曼海普吉岛沿岸普遍存在的育成珊瑚acacuta的种群遗传分化。

Anna Fiesinger, Christoph Held, Frank Melzner, Lalita Putchim, Thorsten B H Reusch, Andrea L Schmidt, Marlene Wall
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引用次数: 0

摘要

背景:广泛分布的印度洋-太平洋珊瑚物种Pocillopora acuta Lamarck, 1816显示出不同水平的无性繁殖和有性繁殖,对种群内和种群间的遗传多样性、连通性和遗传结构产生强烈影响。对于许多地理区域,特别是在安达曼海,仍然缺乏关于遗传多样性的基线信息。2010年,该地区遭受了一次大规模的热致白化事件,许多分支珊瑚物种(如尖珊瑚虫)的珊瑚覆盖率都下降了。然而,2016年随后的漂白显示,与该地区其他珊瑚分类群相比,pocilloporids的漂白反应较温和,这表明2010年的漂白事件选择了罕见的耐热基因型。为了测试这种潜在的“进化拯救”事件是否导致了遗传多样性的降低,我们在泰国普吉岛周围50公里的沿海地带对9个不同的尖尖p.a种群(336个个体)进行了种群遗传调查。我们使用6个微卫星标记来评估基因型多样性,并确定普遍的繁殖模式(即有性繁殖或无性繁殖)。结果:与其他印度洋尖尾珊瑚虫种群相比,本研究中大多数珊瑚采用有性繁殖模式(占所有种群的75%)。与此同时,普吉岛周围存在大量的区域基因流动,遗传分化强烈,3个遗传集群相距仅几公里。距离超过0.7 - 40公里的隔离模式表明存在小规模的遗传屏障,例如每个季风季节不断变化的洋流,这可能会限制尖尖棘鱼幼虫在当地的传播。结论:在较短的海岸延伸范围内出现了不同的遗传集群,这表明2010年的白化事件并未导致极端的遗传贫乏。虽然需要更深入的基因组分析来调查极端白化事件后遗传多样性的变化,但我们的研究结果将有助于指导保护工作,以保持可能在未来更温暖的安达曼海珊瑚礁中占主导地位的珊瑚物种的遗传多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Population genetic differentiation of the ubiquitous brooding coral Pocillopora acuta along Phuket Island reefs in the Andaman Sea, Thailand.

Population genetic differentiation of the ubiquitous brooding coral Pocillopora acuta along Phuket Island reefs in the Andaman Sea, Thailand.

Population genetic differentiation of the ubiquitous brooding coral Pocillopora acuta along Phuket Island reefs in the Andaman Sea, Thailand.

Population genetic differentiation of the ubiquitous brooding coral Pocillopora acuta along Phuket Island reefs in the Andaman Sea, Thailand.

Background: The widespread Indo-Pacific coral species Pocillopora acuta Lamarck, 1816 displays varying levels of asexual versus sexual reproduction, with strong repercussions on genetic diversity, connectivity and genetic structuring within and among populations. For many geographic regions, baseline information on genetic diversity is still lacking, particularly in the Andaman Sea. The region suffered a massive heat-induced bleaching event in 2010 with high coral cover loss of branching coral species such as P. acuta. A subsequent bleaching in 2016, however, revealed a mild bleaching response in pocilloporids compared to other coral taxa in the region, suggesting that rare, heat tolerant genotypes had been selected by the 2010 bleaching event. In order to test whether this potential 'evolutionary rescue' event has led to a low genetic diversity, we conducted a population genetic survey covering a total of nine different P. acuta populations (336 individuals) along a 50 km coastal stretch around Phuket Island, Thailand. We used six microsatellite markers to assess genotypic diversity and to determine the prevalent mode of reproduction (i.e. sexual or asexual recruitment).

Results: In contrast to other Indian Ocean P. acuta populations, the majority of corals in this study adopted a sexual reproduction mode (75% across all populations). At the same time, substantial regional gene flow was observed around Phuket Island with strong genetic differentiation as indicated by three genetic clusters that were separated by only a few kilometers. Patterns of isolation by distance over 0.7 - 40 km suggest small-scale genetic barriers, such as changing currents throughout each monsoonal season, potentially contributing to locally restricted dispersal of P. acuta larvae.

Conclusions: The occurrence of distinct genetic clusters within short coastal stretches suggests that the 2010 bleaching event has not led to extreme genetic impoverishment. While more in-depth genomic analyses are necessary to investigate changes in genetic diversity following extreme bleaching events, our results will help guide conservation efforts to maintain genetic diversity of a coral species that likely will be dominant in future, warmer Andaman Sea reefs.

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