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大西洋性鱿鱼在“灰色物种形成区”。

Atlantic Oceanic Squids in the "Grey Speciation Zone".

机构信息

Institut de Ciències del Mar (ICM), CSIC, Passeig Marítim de la Barceloneta 37-49, 08003 Barcelona, Spain.

Molecular Genetics Unit, Okinawa Institute of Science and Technology, Onna, Okinawa 904-0412, Japan.

出版信息

Integr Comp Biol. 2023 Dec 29;63(6):1214-1225. doi: 10.1093/icb/icad116.

Abstract

Cryptic species complexes represent an important challenge for the adequate characterization of Earth's biodiversity. Oceanic organisms tend to have greater unrecognized cryptic biodiversity since the marine realm was often considered to lack hard barriers to genetic exchange. Here, we tested the effect of several Atlantic and Mediterranean oceanic barriers on 16 morphospecies of oceanic squids of the orders Oegopsida and Bathyteuthida using three mitochondrial and one nuclear molecular marker and five species delimitation methods. Number of species recognized within each morphospecies differed among different markers and analyses, but we found strong evidence of cryptic biodiversity in at least four of the studied species (Chtenopteryx sicula, Chtenopteryx canariensis, Ancistrocheirus lesueurii, and Galiteuthis armata). There were highly geographically structured units within Helicocranchia navossae that could either represent recently diverged species or population structure. Although the species studied here can be considered relatively passive with respect to oceanic currents, cryptic speciation patterns showed few signs of being related to oceanic currents. We hypothesize that the bathymetry of the egg masses and duration of the paralarval stage might influence the geographic distribution of oceanic squids. Because the results of different markers and different species delimitation methods are inconsistent and because molecular data encompassing broad geographic sampling areas for oceanic squids are scarce and finding morphological diagnostic characters for early life stages is difficult, it is challenging to assess the species boundaries for many of these species. Thus, we consider many to be in the "grey speciation zone." As many oceanic squids have cosmopolitan distributions, new studies combining genomic and morphological information from specimens collected worldwide are needed to correctly assess the actual oceanic squid biodiversity.

摘要

隐种复合体是充分描述地球生物多样性的一个重要挑战。由于海洋领域通常被认为缺乏遗传交换的硬性障碍,海洋生物往往具有更大的未被认识的隐种生物多样性。在这里,我们使用三种线粒体和一种核分子标记以及五种物种界定方法,测试了几个大西洋和地中海洋流对 16 种海洋鱿鱼目(Oegopsida 和 Bathyteuthida)形态物种的影响。在每个形态物种内识别出的物种数量因不同的标记和分析而有所不同,但我们发现至少有四种研究物种(Chtenopteryx sicula、Chtenopteryx canariensis、Ancistrocheirus lesueurii 和 Galiteuthis armata)存在隐种生物多样性的强烈证据。 Helicocranchia navossae 内存在高度地理结构的单元,这些单元可能代表最近分化的物种或种群结构。尽管这里研究的物种在海洋流方面可以被认为是相对被动的,但隐种形成模式几乎没有迹象表明与海洋流有关。我们假设卵块的水深和幼体阶段的持续时间可能会影响海洋鱿鱼的地理分布。由于不同标记和不同物种界定方法的结果不一致,并且涵盖海洋鱿鱼广泛地理采样区域的分子数据稀缺,并且很难找到早期生命阶段的形态诊断特征,因此评估许多这些物种的物种界限具有挑战性。因此,我们认为许多物种处于“灰色物种形成区”。由于许多海洋鱿鱼具有世界性分布,需要结合来自全球采集的标本的基因组和形态信息的新研究,以正确评估实际的海洋鱿鱼生物多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d779/10755182/06084b437258/icad116fig1.jpg

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