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织纹螺科(腹足纲,蛾螺总科)系统发育与分类学再探讨

The phylogeny and systematics of the Nassariidae revisited (Gastropoda, Buccinoidea).

作者信息

Galindo Lee Ann, Puillandre Nicolas, Utge José, Lozouet Pierre, Bouchet Philippe

机构信息

Institut de Systématique, Evolution, Biodiversité ISYEB - UMR7205 - CNRS, MNHN, UPMC, EPHE, Muséum National d'Histoire Naturelle, Sorbonne Universités, 43 Rue Cuvier, F-75231 Paris, France.

UMS 2700, Museum National d'Histoire Naturelle, Département Systématique et Evolution, 43, Rue Cuvier, 75231 Paris, France; Musée de l'Homme, HNS - UMR 7206, EcoAnthropologie et Ethnobiologie, CNRS/MNHN/Université Paris Diderot, 17 place Trocadéro, 75016 Paris, France.

出版信息

Mol Phylogenet Evol. 2016 Jun;99:337-353. doi: 10.1016/j.ympev.2016.03.019. Epub 2016 Mar 21.

Abstract

Nassariidae are a group of scavenging, predominantly marine, snails that are diversified on soft bottoms as well as on rocky shores, and are the subject of numerous research papers in ecology, ecotoxicology or paleontology. A weak and/or apparently continuous variation in shell characters has resulted in an intimidating taxonomy, with complex synonymy lists. Over 1320 extant nominal species have been described, of which 442 are currently regarded as valid. Above species level, the state of the art is equally hazy, with four subfamilies and twelve genera currently accepted, and many other names in the graveyard of synonymy. A molecular analysis based on three mitochondrial (COI, 16S, 12S) and two nuclear (28S, H3) markers was conducted. Our dataset includes 218 putative nassariid species, comprising 9 of the 12 valid genera, and 25 nominal genera represented by their type species. The monophyly of the Nassariidae as classically construed is not confirmed. Species of Antillophos, Engoniophos, Phos, Nassaria, Tomlinia and Anentome (formerly considered Buccinidae) are included inside the Nassariidae clade. Within the Nassariinae, the tree unexpectedly demonstrates that species from the Atlantic and the Indo-Pacific form different clades which represent several independent diversification events. Through an integrative approach, the reconstruction of ancestral states was addressed for eight characters supposedly informative for taxonomy. Using numerous fossil calibration points, Nassariidae appear to have originated 120 MYA ago in Atlantic temperate waters during the Lower Cretaceous. Our results have a profound impact on nassariid taxonomy, especially with regard to the validity of subfamily- and genus-level names.

摘要

衲螺科是一类主要生活在海洋中的食腐蜗牛,在软底以及岩岸环境中都有丰富的种类,并且是生态学、生态毒理学或古生物学领域众多研究论文的研究对象。壳特征的微弱和/或明显连续变化导致了一个令人生畏的分类学,同义词列表复杂。已经描述了超过1320个现存的标称物种,其中442个目前被认为是有效的。在物种以上的水平上,目前的情况同样模糊不清,目前公认有四个亚科和十二个属,还有许多其他名称存在于同义词的坟墓中。基于三个线粒体(COI、16S、12S)和两个核(28S、H3)标记进行了分子分析。我们的数据集包括218个推定的衲螺科物种,其中包括12个有效属中的9个,以及由其模式种代表的25个标称属。传统意义上理解的衲螺科的单系性未得到证实。Antillophos、Engoniophos、Phos、Nassaria、Tomlinia和Anentome(以前被认为是骨螺科)的物种被纳入衲螺科进化枝。在衲螺亚科内,树形图意外地表明,来自大西洋和印度-太平洋的物种形成了不同的进化枝,代表了几个独立的多样化事件。通过综合方法,针对八个据信对分类学有信息价值的特征进行了祖先状态的重建。使用大量化石校准点,衲螺科似乎在白垩纪早期1.2亿年前起源于大西洋温带水域。我们的结果对衲螺科分类学有深远影响,特别是在亚科和属级名称的有效性方面。

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