Burrowing facilitated the survival of mammals in harsh and fluctuating climates.

IF 8.1 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Stefan Pinkert, Victoria Reuber, Lena-Marie Krug, Lea Heidrich, Finn Rehling, Roland Brandl, Nina Farwig
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引用次数: 0

Abstract

Species' ability to cope with climatic instability varies greatly, influenced by factors such as dispersal, physiological adaptations, and phylogenetic conservatism. Here, we investigate how burrowing behavior, a key component of species' endurance strategies and ecosystem functioning, shaped the contemporary patterns of species richness and range size as well as the diversification of mammalian lineages. Analyzing 4,407 terrestrial mammal species, excluding bats, combined with novel trait data on 3,096 species, we reveal contrasting responses to climatic factors between burrowing and non-burrowing species. Burrowing lineages are disproportionately species-rich at lower temperatures and productivity. Both range size and species richness steeply increase with climate seasonality in burrowing species as opposed to non-burrowing species. The proportion of burrowing species increases with latitude, with regions above 20°, especially those exhibiting greater Pleistocene temperature changes, being almost exclusively composed of burrowing species. Trait conservatism, higher net diversification rates, and Eocene peak diversification provide the evolutionary context for these contemporary patterns, underscoring the role of burrowing for mammalian radiations into temperate climates. Moreover, the lower extinction rate of burrowing species and peak diversification at the Cretaceous-Paleogene (K-Pg) boundary support the longstanding hypothesis that burrowing behavior promoted survival during the "impact winter" that marks the replacement of non-avian dinosaurs by mammals. Our study highlights the potential of readily available trait information for understanding the ecological and evolutionary processes that shape species distributions through space and time. The careful integration of divergent environmental constraints bears vast improvements for forecasts of species' responses to climatic changes and global models of biodiversity patterns.

挖洞有助于哺乳动物在恶劣多变的气候中生存。
物种应对气候不稳定的能力差异很大,受到诸如扩散、生理适应和系统发育保守性等因素的影响。在这里,我们研究了物种耐力策略和生态系统功能的关键组成部分——穴居行为如何塑造了物种丰富度和范围大小的当代模式,以及哺乳动物谱系的多样化。我们分析了除蝙蝠外的4407种陆生哺乳动物,结合3096种新的性状数据,揭示了穴居动物和非穴居动物对气候因子的不同响应。在较低的温度和生产力下,穴居谱系的物种丰富程度不成比例。与非穴居物种相比,穴居物种的范围大小和物种丰富度随着气候季节的变化而急剧增加。穴居物种的比例随着纬度的增加而增加,在20°以上的地区,尤其是更新世温度变化较大的地区,穴居物种几乎完全由穴居物种组成。特征保守性、较高的净多样化率和始新世的多样化峰值为这些当代模式提供了进化背景,强调了哺乳动物辐射在温带气候中的穴居作用。此外,在白垩纪-古近纪(K-Pg)边界,穴居物种的灭绝率较低,多样性达到顶峰,这支持了长期以来的假设,即穴居行为促进了“撞击冬季”期间的生存,这标志着非鸟类恐龙被哺乳动物取代。我们的研究强调了容易获得的性状信息在理解通过空间和时间塑造物种分布的生态和进化过程中的潜力。仔细整合不同的环境约束,对物种对气候变化的反应的预测和生物多样性模式的全球模型有了巨大的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Biology
Current Biology 生物-生化与分子生物学
CiteScore
11.80
自引率
2.20%
发文量
869
审稿时长
46 days
期刊介绍: Current Biology is a comprehensive journal that showcases original research in various disciplines of biology. It provides a platform for scientists to disseminate their groundbreaking findings and promotes interdisciplinary communication. The journal publishes articles of general interest, encompassing diverse fields of biology. Moreover, it offers accessible editorial pieces that are specifically designed to enlighten non-specialist readers.
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