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首页> 外文期刊>Molecular phylogenetics and evolution >Systematic analysis of the caridean shrimp superfamily Pandaloidea (Crustacea: Decapoda) based on molecular and morphological evidence
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Systematic analysis of the caridean shrimp superfamily Pandaloidea (Crustacea: Decapoda) based on molecular and morphological evidence

机译:基于分子和形态证据的Caridean Shimp Superfamily Pandaloidea(Craustacea:Decapoda)的系统分析

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摘要

One of the systematically controversial superfamilies in Caridea is the predominately deep-sea or cold water Pandaloidea, largely because this species-rich group of nearly 200 species in 25 genera exhibits a very high diversity of body forms and ecology. Although the relationships amongst the taxa within Pandaloidea have been repeatedly discussed based on morphology, no comprehensive molecular phylogeny exists. In this study, we present the first molecular phylogeny of the group, based on a combined dataset of two mitochondrial (12S and 16S rRNA) and six nuclear (ATP synthase beta-subunit, enolase, glyceraldehyde-3-phosphate dehydrogenase, histone 3, phosphoenolpyruvate carboxykinase and sodium-potassium ATPase alpha-subunit) markers, based on 62 species (about 1/3 of known biodiversity) in 22 genera (88% of genera) of two pandaloid families (Pandalidae, Thalassocarididae) and outgroups from seven other caridean families. With generally high support, the relationships within the Glade are fully resolved. Pandalidae is shown to be paraphyletic with Thalassocarididae deeply nested within as a monophyletic group, and the latter is herein considered to be a synonym of Pandalidae. Five major clades are recovered, with the shallow water genera Anachlorocurtis, Chlorocurtis, Chlorotocella and Miropandalus forming a sister Glade to the remaining genera. At the genus level, the phylogeny indicates Plesionika, Heterocarpus and Pandalus to be not monophyletic. The validity of Pandalopsis, Stylopandalus and Calipandalus is challenged and these genera are considered herein to be junior synonyms of Pandalus (Pandalopsis) and Plesionika (Stylopandalus and Calipandalus). Although not fully resolved, some evidence potentially considers Nothocaris to be a valid genus. Ancestral State Reconstruction successfully recovered 15 synapomorphies for the major clades, with 11 of them reported to be of systematic significance for the first time.
机译:Caridea的系统有争议的超级美食之一是深海或冷水熊冬虫,很大程度上,由于这种富含500种近200种的近200种,展示了非常高的身体形态和生态学。尽管基于形态讨论了熊大型薄膜内的分类群之间的关系,但不存在综合分子系统。在这项研究中,我们介绍了本基团的第一个分子系统,基于两个线粒体(12s和16s rRNA)和六个核(ATP合酶β-亚基,烯醇酶,甘油醛-3-磷酸脱氢酶,组蛋白3的组合数据集基于62种(已知生物多样性的约1/3)的两只小熊(Pandalidae,Thalassocarididae)和来自七个其他乍一所的62种(众所周知的生物多样性)的62种(已知生物多样性的约1/3)(约占1/3)的磷酸钠α-亚基)标记物家庭。通过一般高的支持,林石内的关系完全解决。 PANDALIDAE被证明是用植物的植物中嵌套在单胞内群中的瘫痪,并且后者认为是PANDALIDAE的同义词。恢复了五个主要的碎片,浅水属性,氯化菌,氯切除菌,麦克风,形成妹妹林的苍白。在属的水平,系统发育表明plesionika,异质糖和熊猫犬不是单体内的。熊儒,曲瓣和卡普兰裔的有效性受到挑战,这些属于熊盲犬(熊儒)和Plesionika(Stylopancalus和Calipandalus)的初级同义词。虽然没有完全解决,但有些证据可能会认为NOTHOCARIS是一个有效的属。祖先的国家重建成功恢复了主要的曲折的15个同义词,其中11名据报道,其中11个是第一次系统的重要性。

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