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埃文斯紫蛱蝶属(Zinaida Evans,1937)的分类学(弄蝶科:弄蝶亚科:稻弄蝶族)

Systematics of the genus Zinaida Evans, 1937 (Hesperiidae: Hesperiinae: Baorini).

作者信息

Tang Jing, Huang Zhenfu, Chiba Hideyuki, Han Yuke, Wang Min, Fan Xiaoling

机构信息

Department of Entomology, College of Agriculture, South China Agricultural University, Guangzhou, China.

B.P. Bishop Museum, Honolulu, Hawaii, United States of America.

出版信息

PLoS One. 2017 Nov 30;12(11):e0188883. doi: 10.1371/journal.pone.0188883. eCollection 2017.

Abstract

Traditionally, species of the genus Zinaida were assigned to the genus Polytremis, until molecular evidence revealed that the former is a distinct genus. Nine species in Polytremis sensu Evans have since been removed and assigned to Zinaida; however, there is still uncertainty as to the taxonomic status of an additional seven Polytremis species. Moreover, the interspecific relationships within Zinaida have remained unresolved. To further investigate the taxonomic statuses and interspecific relationships within Zinaida, a molecular phylogeny of most species of Zinaida and its allies was inferred based on regions of the mitochondrial COI-COII and 16S and nuclear EF-1α genes (3006 bp). The results revealed that Zinaida is monophyletic and consists of four intra-generic clades that correspond to morphological characteristics. Clade A (Z. suprema group) consists of P. kiraizana, Z. suprema, and P. gigantea, with the latter two as sister species. Clade B (Z. nascens group) consists of seven species, and is the sister group of Clade C (Z. pellucida group), which comprises sister species Z. pellucida and Z. zina. In Clade B, Z. caerulescens and Z. gotama, and Z. theca and Z. fukia are sister species, respectively. On the basis of our molecular evidence and morphological features, we have moved P. gigantea, P. kiraizana, P. jigongi, and P. micropunctata to the genus Zinaida as new combinations. We review morphological characteristics and discuss the distribution of each of these groups in the light of our phylogenetic hypothesis, and provide a comprehensive taxonomic checklist.

摘要

传统上,紫蛱蝶属的物种被归为孔弄蝶属,直到分子证据表明前者是一个独立的属。此后,埃文斯所定义的孔弄蝶属中的9个物种已被移出并归入紫蛱蝶属;然而,另外7个孔弄蝶物种的分类地位仍不确定。此外,紫蛱蝶属内的种间关系仍未解决。为了进一步研究紫蛱蝶属的分类地位和种间关系,基于线粒体COI-COII和16S区域以及核EF-1α基因(3006 bp)推断了紫蛱蝶属及其近缘属大多数物种的分子系统发育。结果表明,紫蛱蝶属是单系的,由四个属内分支组成,这些分支与形态特征相对应。分支A( suprema组)由 kiraizana弄蝶、 suprema紫蛱蝶和 gigantea弄蝶组成,后两者为姐妹种。分支B( nascens组)由7个物种组成,是分支C( pellucida组)的姐妹群,分支C包括姐妹种 pellucida紫蛱蝶和 zina紫蛱蝶。在分支B中, caerulescens紫蛱蝶和 gotama紫蛱蝶,以及 theca紫蛱蝶和 fukia紫蛱蝶分别为姐妹种。基于我们的分子证据和形态特征,我们已将 gigantea弄蝶、 kiraizana弄蝶、 jigongi弄蝶和 micropunctata弄蝶作为新组合移入紫蛱蝶属。我们回顾了形态特征,并根据我们的系统发育假说讨论了每个类群的分布情况,并提供了一份全面的分类清单。

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