红海北部雌蕊柱头珊瑚的深度结构谱系。

K C C Capel, I Ayalon, N Simon-Blecher, A Zweifler Zvifler, I C J Benichou, G Eyal, D Avisar, J Roth, P Bongaerts, O Levy
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引用次数: 0

摘要

珊瑚礁是生物多样性的热点,在那里不断发现新物种。柱头珊瑚(Stylophora pistillata)是一种深度通才珊瑚,广泛分布在印度-太平洋地区,长期以来被认为是表型可塑性的典型代表。它占据了广泛的珊瑚礁栖息地,并表现出无数的大体形态。在这里,我们使用减少代表性基因组测序(nextRAD)来评估红海北部(亚喀巴湾)浅层和中游种群中雌蜂的成虫和新生虫的遗传结构。通过分析方法,我们观察到一个复杂的遗传结构,至少有四个遗传分化谱系,几乎没有混合,并按深度结构。形态学和生理学上的差异表明,长期以来被认为是红海雌蕊花的生态机会主义实际上可能有遗传基础。对每个谱系内的成年群体和新成员的评估也揭示了以色列红海海岸线8公里区域内当地招募和遗传结构的普遍性。总的来说,观察到的模式证实了珊瑚生理学模式生物中未描述的多样性的存在,并证实了核珊瑚中广泛未描述的多样性的更广泛模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Depth-structured lineages in the coral Stylophora pistillata of the Northern Red Sea.

Depth-structured lineages in the coral Stylophora pistillata of the Northern Red Sea.

Depth-structured lineages in the coral Stylophora pistillata of the Northern Red Sea.

Depth-structured lineages in the coral Stylophora pistillata of the Northern Red Sea.

Coral reefs are biodiversity hotspots, where new species continue to be discovered. Stylophora pistillata, a depth-generalist coral, is widely distributed throughout the Indo-Pacific and has long been considered the poster child for phenotypic plasticity. It occupies a wide range of reef habitats and exhibits a myriad of gross morphologies. Here, we used reduced representation genome sequencing (nextRAD) to assess the genetic structure of adults and recruits of S. pistillata across shallow and mesophotic populations in the northern Red Sea (Gulf of Aqaba). Across analytical approaches, we observed a complex genetic structure with at least four genetically divergent lineages occurring sympatrically with little to no admixture and structured by depth. Morphological and physiological differences previously documented suggest that the long-considered ecological opportunism of S. pistillata in the Red Sea may, in fact, have a genetic basis. Assessment of both adult colonies and recruits within each of the lineages also revealed the prevalence of local recruitment and genetic structuring across the eight-kilometer section of the Israeli Red Sea coastline. Overall, the observed patterns confirm the presence of undescribed diversity within this model organism for coral physiology and corroborate a broader pattern of extensive undescribed diversity within scleractinian corals.

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