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Species delimitation in the coral genus Goniopora (Scleractinia, Poritidae) from the Saudi Arabian Red Sea

机译:来自沙特阿拉伯红海的珊瑚属Goniopora(Scleractinia,Poritidae)的物种划分

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Variable skeletal morphology, genotype induced plasticity, and homoplasy of skeletal structures have presented major challenges for scleractinian coral taxonomy and systematics since the 18th century. Although the recent integration of genetic and micromorphological data is helping to clarify the taxonomic confusion within the order, phylogenetic relationships and species delimitation within most coral genera are still far from settled. In the present study, the species boundaries in the scleractinian coral genus Goniopora were investigated using 199 colonies from the Saudi Arabian Red Sea and sequencing of four molecular markers: the mitochondrial intergenic spacer between CytB and NAD2, the nuclear ribosomal ITS region, and two single-copy nuclear genes (ATPs beta and CalM). DNA sequence data were analyzed using a variety of methods and exploratory species-delimitation tools. The results were broadly congruent in identifying five distinct molecular lineages within the sequenced Goniopora samples: G. somaliensis/G. savignyi, G. djiboutiensis/G. lobata, G. stokesi, G. albiconus/G. tenuidens, and G. minor/G. gracilis. Although the traditional macromorphological characters used to identify these nine morphospecies were not able to discriminate the obtained molecular clades, informative micromorphological and microstructural features (such as the micro-ornamentation and the arrangement of the columella) were recovered among the five lineages. Moreover, unique in vivo morphologies were associated with the genetic-delimited lineages, further supporting the molecular findings. This study represents the first attempt to identify species boundaries within Goniopora using a combined morpho-molecular approach. The obtained data establish a basis for future taxonomic revision of the genus, which should include colonies across its entire geographical distribution in the Indo-Pacific. (C) 2016 Elsevier Inc. All rights reserved.
机译:自18世纪以来,可变的骨骼形态,基因型诱导的可塑性和骨骼结构的同质性已成为Scleractinian珊瑚分类学和系统学的主要挑战。尽管最近对遗传和微观形态学数据的整合有助于澄清该顺序内的分类学混乱,但大多数珊瑚属内的系统发生关系和物种划分仍远未解决。在本研究中,使用来自沙特阿拉伯红海的199个菌落并研究了四个分子标记:CytB和NAD2之间的线粒体基因间隔子,核糖体ITS区域和两个单分子,对巩膜珊瑚属Goniopora中的物种边界进行了研究。复制核基因(ATPs beta和CalM)。使用多种方法和探索性物种定界工具分析了DNA序列数据。结果与在测序的Goniopora样品中鉴定出的五个不同分子谱系大致一致:G。somaliensis / G。吉布提州萨维尼lobata,G。stokesi,G。albiconus / G tenuidens和G. minor / G。 cil。尽管用于识别这9个形态物种的传统宏观形态学特征无法区分获得的分子进化枝,但在这5个谱系中恢复了信息丰富的微观形态学和微观结构特征(例如小柱的微装饰和排列)。此外,独特的体内形态与遗传界定的谱系有关,进一步支持了分子发现。这项研究代表了首次尝试使用形态学-分子结合方法鉴定Goniopora中的物种边界。所获得的数据为该属的未来分类学修订奠定了基础,其中应包括其在印度太平洋中整个地理分布的殖民地。 (C)2016 Elsevier Inc.保留所有权利。

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