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蜱螨亚纲中的隐秘物种形成:是物种生活方式的作用还是我们区分物种的能力所致?

Cryptic speciation in the Acari: a function of species lifestyles or our ability to separate species?

作者信息

Skoracka Anna, Magalhães Sara, Rector Brian G, Kuczyński Lechosław

机构信息

Department of Animal Taxonomy and Ecology, Institute of Environmental Biology, Faculty of Biology, Adam Mickiewicz University, Poznan, Poland,

出版信息

Exp Appl Acarol. 2015 Oct;67(2):165-82. doi: 10.1007/s10493-015-9954-8. Epub 2015 Jul 26.

Abstract

There are approximately 55,000 described Acari species, accounting for almost half of all known Arachnida species, but total estimated Acari diversity is reckoned to be far greater. One important source of currently hidden Acari diversity is cryptic speciation, which poses challenges to taxonomists documenting biodiversity assessment as well as to researchers in medicine and agriculture. In this review, we revisit the subject of biodiversity in the Acari and investigate what is currently known about cryptic species within this group. Based on a thorough literature search, we show that the probability of occurrence of cryptic species is mainly related to the number of attempts made to detect them. The use of, both, DNA tools and bioassays significantly increased the probability of cryptic species detection. We did not confirm the generally-accepted idea that species lifestyle (i.e. free-living vs. symbiotic) affects the number of cryptic species. To increase detection of cryptic lineages and to understand the processes leading to cryptic speciation in Acari, integrative approaches including multivariate morphometrics, molecular tools, crossing, ecological assays, intensive sampling, and experimental evolution are recommended. We conclude that there is a demonstrable need for future investigations focusing on potentially hidden mite and tick species and addressing evolutionary mechanisms behind cryptic speciation within Acari.

摘要

已描述的螨类物种约有55000种,几乎占所有已知蛛形纲物种的一半,但据估计螨类的总多样性要远高于此。当前螨类多样性中一个重要的隐藏来源是隐存物种形成,这给记录生物多样性评估的分类学家以及医学和农业领域的研究人员带来了挑战。在本综述中,我们重新审视螨类生物多样性这一主题,并探究目前对该类群中隐存物种的了解情况。基于全面的文献检索,我们表明隐存物种出现的概率主要与检测它们的尝试次数有关。DNA工具和生物测定法的使用显著提高了隐存物种被检测到的概率。我们并未证实普遍接受的观点,即物种的生活方式(即自由生活与共生)会影响隐存物种的数量。为了增加对隐存谱系的检测并理解螨类中导致隐存物种形成的过程,建议采用包括多变量形态测量学、分子工具、杂交、生态测定、密集采样和实验进化在内的综合方法。我们得出结论,未来有明显必要开展研究,聚焦于潜在隐藏的螨类和蜱类物种,并探讨螨类中隐存物种形成背后的进化机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eec/4559570/e5f10d56c368/10493_2015_9954_Fig1_HTML.jpg

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