Matsuda Shayle B, Gosliner Terrence M
Department of Invertebrate Zoology and Geology, California Academy of Sciences, 55 Music Concourse Drive, San Francisco, CA, 94118, USA.
Hawaii Institute of Marine Biology, 46-007 Lilipuna Rd, Kaneohe, HI, 96744, USA.
Cladistics. 2018 Feb;34(1):41-56. doi: 10.1111/cla.12194. Epub 2017 Feb 28.
Chromodorid nudibranchs (Chromodorididae) are brightly coloured sea slugs that live in some of the most biodiverse and threatened coral reefs on the planet. However, the evolutionary relationships within this family have not been well understood, especially in the genus Glossodoris. Members of Glossodoris have experienced large-scale taxonomic instability over the last century and have been the subject of repeated taxonomic changes, in part due to morphological characters being the sole traditional taxonomic sources of data. Changing concepts of traditional generic boundaries based on morphology also have contributed to this instability. Despite recent advances in molecular systematics, many aspects of chromodorid taxonomy remain poorly understood, particularly at the traditional species and generic levels. In this study, 77 individuals comprising 32 previously defined species were used to build the most robust phylogenetic tree of Glossodoris and related genera using mitochondrial genes cytochrome c oxidase subunit I and 16S, and the nuclear gene 28S. Bayesian inference, maximum likelihood, and maximum parsimony analyses verify the most recent hypothesized evolutionary relationships within Glossodoris. Additionally, a pseudocryptic and cryptic species complex within Glossodoris cincta and a pseudocryptic complex within Glossodoris pallida emerged, and three new species of Doriprismatica are identified.
多彩海蛞蝓(多彩海蛞蝓科)是色彩鲜艳的海蛞蝓,生活在地球上一些生物多样性最高且受到威胁的珊瑚礁中。然而,该科内部的进化关系尚未得到很好的理解,尤其是在格氏多彩海蛞蝓属中。在过去的一个世纪里,格氏多彩海蛞蝓属的成员经历了大规模的分类学不稳定,并且一直是反复分类学变化的主题,部分原因是形态特征是唯一传统的分类学数据来源。基于形态学改变传统属的界限概念也导致了这种不稳定性。尽管分子系统学最近取得了进展,但多彩海蛞蝓分类学的许多方面仍然知之甚少,特别是在传统的物种和属的层面。在这项研究中,使用线粒体基因细胞色素c氧化酶亚基I和16S以及核基因28S,对包含32个先前定义物种的77个个体进行分析,构建了最可靠的格氏多彩海蛞蝓属及相关属的系统发育树。贝叶斯推断、最大似然法和最大简约法分析验证了格氏多彩海蛞蝓属内最近假设的进化关系。此外,在环纹格氏多彩海蛞蝓中出现了一个拟隐性和隐性物种复合体,在苍白格氏多彩海蛞蝓中出现了一个拟隐性复合体,并且鉴定出了三个多棱海蛞蝓属的新物种。