鱼类群落解体过程中明显功能的丧失。

IF 3.7 1区 环境科学与生态学 Q1 ECOLOGY
Songhao Ji, Yanling Li, Chengzhi Ding, Dekui He, Juan Tao, Hugh J MacIsaac
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引用次数: 0

摘要

人为引起的环境变化增加了物种更替,其典型特征是本地物种灭绝和非本地物种(NNS)入侵,由于物种的作用不同,以及灭绝造成的损失是否得到新建立的NNS的补偿,导致了多种功能后果。利用功能多样性指数和基于特征的网络分析方法,分析了中国西南15个湖泊75年来(1940-2015)持续存在、灭绝或新建立的鱼类的群落功能角色。随着时间的推移,物种灭绝率急剧上升,而早期灭绝对新功能多样性的损失最大。原生物种灭绝造成的功能损失不能由神经网络补偿。灭绝的功能模式主要是随机的或过度分散的,而入侵几乎都是随机的物种替换。合成与应用。我们的研究结果强调,即使在灭绝率较低的情况下,独特功能多样性的丧失仍然存在,这是由于原生物种被NNS不完全取代的功能,相对于已灭绝物种,NNS通常在功能上是随机的。这强调了优先保护功能独特的物种以保持群落完整性的重要性。此外,我们使用基于性状的网络分析为理解物种更替的功能含义提供了一个新的视角,并且可以为研究人员和保护从业者评估群落组装过程和功能结构动态提供有价值的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Loss of distinct functionality during fish community disassembly.

Human-induced environmental changes increase species turnover, typically characterized by native species extirpation and non-native species (NNS) invasions, leading to multiple functional consequences owing to varying species roles and whether losses from extirpation are compensated by newly established NNS. We analysed community functional roles among fish species that persisted, were extirpated or were newly established over 75 years (1940-2015) in 15 lakes in southwest China, using functional diversity indices and trait-based network analyses. While species extirpation rate increased strongly through time, earlier extirpations caused the greatest losses to novel functional diversity. Functional losses from native species extirpation were not compensated by NNS. Functional patterns of extirpations were mainly random or overdispersed, whereas invasions were almost always random species replacements. Synthesis and applications. Our findings highlight that the loss of distinctive functional diversity persists even when extirpation rates are low, due to the incomplete functional replacement of native species by NNS, which are typically functionally random relative to extirpated species. This underscores the importance of prioritizing the protection of functionally distinct species to preserve community integrity. Additionally, our use of trait-based network analysis provides a novel perspective for understanding the functional implications of species turnover, and could be a valuable tool for researchers and conservation practitioners to evaluate community assembly processes and functional structure dynamics.

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来源期刊
Journal of Animal Ecology
Journal of Animal Ecology 环境科学-动物学
CiteScore
9.10
自引率
4.20%
发文量
188
审稿时长
3 months
期刊介绍: Journal of Animal Ecology publishes the best original research on all aspects of animal ecology, ranging from the molecular to the ecosystem level. These may be field, laboratory and theoretical studies utilising terrestrial, freshwater or marine systems.
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