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Latitudinal Variation in the Molecular Diversity and Community Composition of Symbiodiniaceae in Coral From the South China Sea

机译:南海珊瑚共生菌科的分子多样性和群落组成的纬度变化

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摘要

Coral reefs are continuing to decline worldwide due to anthropogenic climate change. The study of the molecular diversity and biogeographical patterns of Symbiodiniaceae, is essential to understand the adaptive potential and resilience of coral–algal symbiosis. Next generation sequencing was used to analyze the Symbiodiniaceae rDNA internal transcribed spacer 2 marker genes from 178 reef-building coral samples in eight coral habitats across approximately 13° of latitude in the South China Sea (SCS). A total of three Symbiodiniaceae genera, Cladocopium, Durusdinium, and Gerakladium, as well as 31 dominant Symbiodiniaceae types, were identified. Symbiodiniaceae richness, diversity, and community composition varied according to latitude; intermediate and low latitude coral reefs (IR and LR) have higher Symbiodiniaceae richness and diversity than high latitude coral habitats (HC and HR). A PERMANOVA analysis found significant differences in the Symbiodiniaceae community composition in the SCS (F = 14.75, R2 = 0.20, p = 0.001 < 0.01). The major dominant Symbiodiniaceae types were C1 in the HC and the HR, C1/Cspc/C50/C15 and D1 in the IR, and C3u and C15 in the LR. Canonical correspondence analysis showed that the relative abundance of different Symbiodiniaceae types is affected by multiple environmental factors. Phylogenetic analysis indicated that the Symbiodiniaceae type Cladocopium, which shared common ancestors, shows similar environmental adaptability. Based on these results, we suggest that coral host species played a relatively small role in the identity of the dominant Symbiodiniaceae type. Therefore, the biogeographical patterns of Symbiodiniaceae may be mainly affected by environmental factors. Our research provides a comprehensive overview of the biogeography of Symbiodiniaceae in the SCS, where coral communities and reefs are widely distributed across different latitude regions and have variable environmental conditions. Our data will provide support for further study of the regional diversification of Symbiodiniaceae and the ecological resilience of the coral-Symbiodiniaceae symbioses.
机译:由于人为气候变化,全世界的珊瑚礁正在继续减少。研究共生菌科的分子多样性和生物地理模式对于了解珊瑚-藻类共生的适应潜力和适应力至关重要。下一代测序用于分析南海(SCS)约13个纬度的八个珊瑚生境中的178个造礁珊瑚样本中的共生菌科rDNA内部转录间隔区2标记基因。总共鉴定出了三种共生植物,Cl兰属,杜氏菌属和Gerakladium,以及31种主要的共生植物。共生二齿科的丰富度,多样性和群落组成根据纬度而有所不同。中纬度和低纬度的珊瑚礁(IR和LR)比高纬度的珊瑚生境(HC和HR)具有更丰富的共生植物。 PERMANOVA分析发现南海的共生植物中的双生菌科群落组成存在显着差异(F = 14.75,R 2 = 0.20,p = 0.001 <0.01)。 HC和HR的主要优势共生菌类型为C1,IR的为C1 / Cspc / C50 / C15和D1,LR的为C3u和C15。典型的对应分析表明,不同共生植物的相对丰富度受多种环境因素的影响。系统发育分析表明,共有共同祖先的共生二科科的蕨科显示出相似的环境适应性。根据这些结果,我们建议珊瑚寄主物种在优势共生菌科类型的身份中发挥相对较小的作用。因此,共生植物的生物地理格局可能主要受环境因素影响。我们的研究对南海共生植物的生物地理学进行了全面的概述,那里的珊瑚群落和礁石广泛分布在不同的纬度地区,并具有可变的环境条件。我们的数据将为进一步研究共生菌科的区域多样性和珊瑚共生菌共生体的生态适应力提供支持。

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