首页> 外文期刊>European Journal of Phycology >Phylogeny, species diversity and biogeographic patterns of the genus Tricleocarpa (Galaxauraceae, Rhodophyta) from the Indo-Pacific region, including T-confertus sp nov from Taiwan
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Phylogeny, species diversity and biogeographic patterns of the genus Tricleocarpa (Galaxauraceae, Rhodophyta) from the Indo-Pacific region, including T-confertus sp nov from Taiwan

机译:印度洋-太平洋地区的三角果属(Galaxauraceae,Rhodophyta)的系统发育,物种多样性和生物地理格局,包括台湾的T-confertus sp nov

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摘要

Among four different genera in Galaxauraceae, species diversity of the genus Tricleocarpa Huisman & Borowitzka is underestimated and requires further examination. In this study, we explored a molecular phylogeny of Tricleocarpa with an emphasis on Taiwan species and reassessed species diversity of the genus from the Indo-Pacific region based on analyses of rbcL and COI-5P sequences and morphological observations. The molecular analyses showed that species of Tricleocarpa examined are grouped into seven clades: six clades in the T. cylindrica group (the T. cylindrica complex, T. confertus, T. jejuensis, T. natalensis and two uncharacterized T. 'cylindrica' clades) and one clade as the T. fragilis group. Overall, at least 12 species in Tricleocarpa were detected from the Indo-Pacific region, including a new species, T. confertus S.-L. Liu & S.-M. Lin, from Taiwan. Among them, T. confertus can be separated from other species of Tricleocarpa by a thallus consisting of dichotomous or trichotomous, articulated and moniliform branches with smooth surfaces, constrictions at nodes and slightly anti-triangular in shape. The cystocarp morphology of T. confertus is similar to the T. cylindrica group by having paraphyses intermixing with gonimoblast filaments. Recognition of this new species from other species is also supported by the DNA-based, algorithmic species delimitation approaches. With the combination of molecular phylogeny and species diversity reassessment, our phylogeographic analysis supported a trend that species in the T. fragilis group are restricted in their distribution to subtropical and tropical areas whereas species in the T. cylindrica group have a wide distribution, ranging from temperate through to tropical areas.
机译:在Galaxauraceae的四个不同属中,Tricleocarpa Huisman&Borowitzka属的物种多样性被低估了,需要进一步研究。在这项研究中,我们基于rbcL和COI-5P序列分析和形态学观察,探索了果皮果的分子系统发育,重点是台湾物种,并重新评估了印度太平洋地区属的物种多样性。分子分析表明,所检查的果皮属植物分为七个进化枝:T。cylindrica组的六个进化枝(T. cylindrica复合体,T。confertus,T。jejuensis,T。natalensis和两个未鉴定的T.'cylindrica'进化枝)和一个脆弱的T. fragilis组。总体而言,从印度太平洋地区检测到至少13种在果皮中的物种,包括新物种T. confertusS.-L。刘和男林,来自台湾。其中,商猪丁香可以通过由二分体或三分体,关节状和念珠状分支组成的th体与光滑的表面分离,结节狭窄和略呈三角形的a体与from藜的其他种类分开。 T. confertus的果皮形态与T. cylindrica组相似,因为附生植物与gonimoblast细丝相互混合。基于DNA的算法物种定界方法也支持从其他物种识别这种新物种。通过分子系统学和物种多样性重新评估的结合,我们的系统地理学分析支持了以下趋势:脆弱类T. gilgilis组中的物种仅限于亚热带和热带地区,而圆柱形T. cylindrica组中的物种则分布广泛,从温带至热带地区。

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