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深入研究原尾目生物的高、低系统发育关系。

Going Deeper into High and Low Phylogenetic Relationships of Protura.

机构信息

Department of Life Sciences, University of Siena, Via A. Moro 2, 53100 Siena, Italy.

Natural History Research Center, Shanghai Natural History Museum, Shanghai Science & Technology Museum, Shanghai 200041, China.

出版信息

Genes (Basel). 2019 Apr 10;10(4):292. doi: 10.3390/genes10040292.

Abstract

Proturans are small, wingless, soil-dwelling arthropods, generally associated with the early diversification of Hexapoda. Their bizarre morphology, together with conflicting results of molecular studies, has nevertheless made their classification ambiguous. Furthermore, their limited dispersal capability (due to the primarily absence of wings) and their euedaphic lifestyle have greatly complicated species-level identification. Mitochondrial and nuclear markers have been applied herein to investigate and summarize proturan systematics at different hierarchical levels. Two new mitochondrial genomes are described and included in a phylum-level phylogenetic analysis, but the position of Protura could not be resolved with confidence due to an accelerated rate of substitution and extensive gene rearrangements. Mitochondrial and nuclear loci were also applied in order to revise the intra-class systematics, recovering three proturan orders and most of the families/subfamilies included as monophyletic, with the exception of the subfamily Acerentominae. At the species level, most morphologically described species were confirmed using molecular markers, with some exceptions, and the advantages of including nuclear, as well as mitochondrial, markers and morphology are discussed. At all levels, an enlarged taxon sampling and the integration of data from different sources may be of significant help in solving open questions that still persist on the evolutionary history of Protura.

摘要

原尾目是小型、无翅、土栖节肢动物,通常与六足动物的早期多样化有关。它们奇异的形态,再加上分子研究的结果相互矛盾,使得它们的分类仍然存在疑问。此外,由于它们主要缺乏翅膀,扩散能力有限,以及它们的土壤生境生活方式,使得种级别的鉴定变得非常复杂。本文应用线粒体和核标记物来研究和总结不同层次的原尾目系统发育。描述了两个新的线粒体基因组,并包含在门水平的系统发育分析中,但由于替代率加快和广泛的基因重排,原尾目在系统发育中的位置无法得到确定。线粒体和核基因座也被用于修正类内系统发育,恢复了三个原尾目目级阶元和大多数包括的科/亚科,除了 Acerentominae 亚科。在种级水平上,使用分子标记物证实了大多数形态描述的种,也有一些例外,并且讨论了包括核标记物以及形态学的优势。在所有水平上,扩大的分类群采样和整合来自不同来源的数据可能有助于解决在原尾目进化历史上仍然存在的悬而未决的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa1b/6523364/683a85250ce3/genes-10-00292-g001.jpg

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