特质
传粉者
环境变化
交互网络
生态学
生物
生态系统
授粉
种内竞争
气候变化
计算机科学
生物化学
基因
花粉
程序设计语言
作者
Aoife Cantwell‐Jones,Jason M. Tylianakis,Keith Larson,Richard J. Gill
出处
期刊:Ecology Letters
[Wiley]
日期:2024-01-01
卷期号:27 (1): e14368-e14368
被引量:11
摘要
Abstract Determining how and why organisms interact is fundamental to understanding ecosystem responses to future environmental change. To assess the impact on plant‐pollinator interactions, recent studies have examined how the effects of environmental change on individual interactions accumulate to generate species‐level responses. Here, we review recent developments in using plant‐pollinator networks of interacting individuals along with their functional traits, where individuals are nested within species nodes. We highlight how these individual‐level, trait‐based networks connect intraspecific trait variation (as frequency distributions of multiple traits) with dynamic responses within plant‐pollinator communities. This approach can better explain interaction plasticity, and changes to interaction probabilities and network structure over spatiotemporal or other environmental gradients. We argue that only through appreciating such trait‐based interaction plasticity can we accurately forecast the potential vulnerability of interactions to future environmental change. We follow this with general guidance on how future studies can collect and analyse high‐resolution interaction and trait data, with the hope of improving predictions of future plant‐pollinator network responses for targeted and effective conservation.
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