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淡水鱼类与白垩纪/古近纪之交:对幸存模式的批判性评估。

Freshwater fish and the Cretaceous/Palaeogene boundary: a critical assessment of survivorship patterns.

机构信息

Center for Functional Anatomy and Evolution, Johns Hopkins University School of Medicine, 1830 Monument Street , Baltimore, MD 21205, USA.

Department of Earth Sciences, Denver Museum of Nature & Science, 2001 Colorado Boulevard , Denver, CO 80205, USA.

出版信息

Proc Biol Sci. 2024 Aug;291(2029):20241025. doi: 10.1098/rspb.2024.1025. Epub 2024 Aug 28.

Abstract

Mass extinctions are major influences on both the phylogenetic structure of the modern biota and our ability to reconstruct broad-based patterns of evolutionary history. The most recent mass extinction is also the most famous-that which implicates a bolide impact in defining the Cretaceous/Palaeogene boundary (K/Pg). Although the biotic effects of this event receive intensive scrutiny, certain ecologically important and diverse groups remain woefully understudied. One such group is the freshwater ray-finned fishes (Actinopterygii). These fish represent 25% of modern vertebrate diversity, yet the isolated and fragmentary nature of their K/Pg fossil record limits our understanding of their diversity dynamics across this event. Here, we address this problem using diversification analysis of molecular-based phylogenies alongside a morphotype analysis of fossils recovered from a unique site in the Denver Basin of western North America that provides unprecedented K/Pg resolution. Our results reveal previously unrecognized signals of post-K/Pg diversification in freshwater clades and suggest that the change was driven by localized and sporadic patterns of extinction. Supported inferences regarding the effects of the K/Pg event on freshwater fish also inform our expectations of how freshwater faunas might recover from the current biodiversity crisis.

摘要

大规模灭绝是现代生物群的系统发育结构和我们重建广泛进化历史模式能力的主要影响因素。最近的一次大灭绝也是最著名的一次——它暗示了一个天体撞击在白垩纪/古近纪边界(K/Pg)的定义中起了作用。尽管该事件的生物影响受到了深入研究,但某些生态上重要和多样化的群体仍然研究不足。其中一个群体是淡水射线鳍鱼类(硬骨鱼纲)。这些鱼类代表了现代脊椎动物多样性的 25%,但它们 K/Pg 化石记录的孤立和零碎性质限制了我们对它们在这一事件中的多样性动态的理解。在这里,我们使用基于分子的系统发育的多样化分析以及从北美西部丹佛盆地一个独特地点回收的化石形态型分析来解决这个问题,该地点提供了前所未有的 K/Pg 分辨率。我们的结果揭示了淡水类群中以前未被识别的 K/Pg 后多样化信号,并表明这种变化是由局部和零星的灭绝模式驱动的。关于 K/Pg 事件对淡水鱼类影响的支持推断也为我们如何从当前生物多样性危机中恢复淡水动物群提供了预期。

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