气候和土地利用变化对中国陆生哺乳动物α和β功能多样性的综合影响

IF 8 2区 生物学 Q1 BIOLOGY Science China Life Sciences Pub Date : 2024-10-01 Epub Date: 2024-07-17 DOI:10.1007/s11427-023-2574-0
Chao Zhang, Yumei Li, Wei Wang, Zexuan Gao, Hanqing Liu, Yonggang Nie
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引用次数: 0

摘要

据预测,气候和土地利用的变化将影响生物多样性,威胁生态系统的服务和功能。然而,它们在区域尺度上对哺乳动物功能多样性的综合影响仍不清楚,尤其是在β水平上。在此,我们利用预测的中国气候和土地利用变化,研究在低排放和高排放情景下,它们对陆生哺乳动物α和β功能多样性的潜在影响。在当前的预测中,我们发现功能丰富度与物种丰富度之间存在很强的空间正相关性。功能均匀性(FEve)、功能专一性(FSpe)和功能独创性(FOri)随着物种丰富度的增加而降低,功能分化(FDiv)先增加后趋于平稳。功能贝塔多样性由其嵌套性成分主导,这与分类学方面形成了鲜明对比。在低排放情景下,物种丰富度的潜在变化受土地利用变化的影响更大,而在高排放情景下,物种丰富度的潜在变化受气候变化的影响更大。功能丰富度(FRic)的变化与物种丰富度的变化不一致,其下降幅度大于物种丰富度的预测。此外,全国各地的哺乳动物群落显示出潜在的功能分化(FD),其趋势超过了分类分化(TD)的趋势。我们的研究结果有助于我们了解生物多样性对全球变化的多方面响应过程,并为保护计划提供新的见解。
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Combined effects of climate and land-use changes on the alpha and beta functional diversities of terrestrial mammals in China.

Climate and land-use changes are predicted to impact biodiversity, threatening ecosystem services and functions. However, their combined effects on the functional diversity of mammals at the regional scale remain unclear, especially at the beta level. Here, we use projected climate and land-use changes in China to investigate their potential effects on the alpha and beta functional diversities of terrestrial mammals under low- and high-emission scenarios. In the current projection, we showed strong positive spatial correlations between functional richness and species richness. Functional evenness (FEve), functional specialization (FSpe), and functional originality (FOri) decreased with species richness, and functional divergence (FDiv) increased first and then plateaued. Functional beta diversity was dominated by its nestedness component, in contrast to the taxonomic facet. Potential changes in species richness are more strongly influenced by land-use change under the low-emission scenario, while under the high-emission scenario, they are more strongly influenced by climate change. Changes in functional richness (FRic) were inconsistent with those in species richness, with a magnitude of decreases greater than predicted from species richness. Moreover, mammal assemblages showed potential functional differentiation (FD) across the country, and the trends exceeded those towards taxonomic differentiation (TD). Our findings help us understand the processes underlying biodiversity responses to global changes on multiple facets and provide new insight for conservation plans.

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来源期刊
CiteScore
15.10
自引率
8.80%
发文量
2907
审稿时长
3.2 months
期刊介绍: Science China Life Sciences is a scholarly journal co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China, and it is published by Science China Press. The journal is dedicated to publishing high-quality, original research findings in both basic and applied life science research.
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