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深海探秘:揭开深海 squat 龙虾 Paramunida(十足目, Munididae)的进化历史。

Deep under the sea: unraveling the evolutionary history of the deep-sea squat lobster Paramunida (Decapoda, Munididae).

机构信息

Museo Nacional de Ciencias Naturales, MNCN-CSIC, José Gutiérrez Abascal 2, 28006 Madrid, Spain.

出版信息

Evolution. 2012 Jun;66(6):1878-96. doi: 10.1111/j.1558-5646.2011.01560.x. Epub 2012 Mar 4.

DOI:10.1111/j.1558-5646.2011.01560.x
PMID:22671553
Abstract

The diversification of Indo-Pacific marine fauna has long captivated the attention of evolutionary biologists. Previous studies have mainly focused on coral reef or shallow water-associated taxa. Here, we present the first attempt to reconstruct the evolutionary history--phylogeny, diversification, and biogeography--of a deep-water lineage. We sequenced the molecular markers 16S, COI, ND1, 18S, and 28S for nearly 80% of the nominal species of the squat lobster genus Paramunida. Analyses of the molecular phylogeny revealed an accelerated diversification in the late Oligocene-Miocene followed by a slowdown in the rate of lineage accumulation over time. A parametric biogeographical reconstruction showed the importance of the southwest Pacific area, specifically the island arc of Fiji, Tonga, Vanuatu, Wallis, and Futuna, for diversification of squat lobsters, probably associated with the global warming, high tectonic activity, and changes in oceanic currents that took place in this region during the Oligocene-Miocene period. These results add strong evidence to the hypothesis that the Neogene was a period of major diversification for marine organisms in both shallow and deep waters.

摘要

印度洋-太平洋海洋动物群的多样化长期以来一直吸引着进化生物学家的注意。以前的研究主要集中在珊瑚礁或浅水区相关的分类群上。在这里,我们首次尝试重建深海生物线的进化历史——系统发育、多样化和生物地理学。我们对近 80%的短尾龙虾属 Paramunida 种进行了 16S、COI、ND1、18S 和 28S 等分子标记的测序。分子系统发育分析显示,在晚渐新世-中新世晚期,多样化呈加速趋势,随后随着时间的推移,谱系积累的速度放缓。参数生物地理学重建表明,西南太平洋地区,特别是斐济、汤加、瓦努阿图、瓦利斯和富图纳的岛弧,对短尾龙虾的多样化非常重要,这可能与渐新世-中新世时期该地区发生的全球变暖、高构造活动和海洋流变化有关。这些结果为新世是海洋生物在浅水区和深水区多样化的主要时期的假说提供了有力证据。

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