二叠纪和三叠纪昆虫多样性的演化

IF 1.9 Q2 ENTOMOLOGY
SHUANG-MAO GUI, YU-CHU LIU, LI TIAN
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引用次数: 0

摘要

在晚古生代冰川结束后的二叠纪-三叠纪过渡时期发生的全球变暖,以及由此产生的生物群对环境变化的响应,被认为是理解未来快速变暖情景的重要类比。二叠纪-三叠纪植物、四足动物和海洋无脊椎动物的多样性模式和多样性程度已经得到了广泛的研究,但对昆虫多样性及其区系组成演变的研究相对有限。在这一时期是否有昆虫灭绝的问题仍然是一个争论的话题。本文对二叠纪和三叠纪昆虫的分类多样性进行了统计研究,包括特定的、属的和科属的,并对全球昆虫的分布情况进行了抽样分析。结果表明,二叠纪和三叠纪发生了不止一次昆虫灭绝事件,并伴有明显的多样性下降和区系组成的转换。所有已发现的昆虫多样性危机与众所周知的中二叠纪、二叠纪-三叠纪过渡、卡尼纪和雷蒂安期的海洋大灭绝事件有很强的相关性,而与早二叠纪昆虫危机的相关性不太明显。昆虫作为陆地生态系统的重要组成部分,在二叠纪和三叠纪表现出不同的多样性响应。我们的研究揭示了这些关键地质历史时期昆虫多样性进化与环境条件变化之间复杂的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution of Insect Diversity in the Permian and Triassic
The global warming that occurred during the Permo-Triassic transition, following the end of the Late Paleozoic glaciation, and the resulting responses of the biota to the changing environment, are considered important analogs for understanding rapid future warming scenarios. While there has been extensive research on the patterns and extent of diversity in plants, tetrapods, and marine invertebrates during the Permo-Triassic, the study of insect diversity and the evolution of their faunal composition has been relatively limited. The question of whether there were insect extinctions during this period continues to be a subject of debate. Here, we present a statistical study on taxonomic diversity of insects—at specific, generic and familial levels—throughout the Permian and Triassic, with subsampled context on the reported global occurrences. Our result show that more than one insect extinction events, accompanied by significant diversity drop and turnovers of faunal compositional, occurred in the Permian and Triassic. All the uncovered insect diversity crises exhibit strong correspondence with the well-known marine mass extinction events in the Middle Permian, Permo-Triassic transition, Carnian, and Rhaetian, whilst the marine correspondence with the Early Permian insect crisis is less pronounced. Insects, being a major component of terrestrial ecosystems, demonstrate varied diversity responses to climatic changes in Permian and Triassic. Our study sheds new light on the intricate interplay between insect diversity evolution and the changing environmental conditions during these critical geohistorical periods.
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