随机性导致多面手和专才在互惠社区中共存。

IF 2.4 2区 环境科学与生态学 Q2 ECOLOGY
American Naturalist Pub Date : 2022-09-01 Epub Date: 2022-07-20 DOI:10.1086/720421
Lara Becker, Nico Blüthgen, Barbara Drossel
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引用次数: 2

摘要

摘要物种相互作用网络受到自然和人为干扰导致其解体,而自然更新或恢复则促进其重组。以前构建生态网络的模型不包括种群动态水平上的随机性(如人口噪声、环境噪声),主要关注食物网。在这里,我们提出了一个相互关系的双部网络(如植物-传粉者网络)的组装模型,并研究了人口统计学噪声对物种和策略多样性轨迹的影响,即当前策略从专门化到通俗化的范围。结果表明,聚集群落在中间聚集阶段的物种多样性和平均泛化程度最高。因此,我们的模型为中间演替中的非线性驼峰型多样性轨迹提供了一种机制,与中间扰动假设相一致。专家和通才的长期共存只有在人口统计学噪声存在的情况下才会出现,这是由于持续的物种更替。这些发现强调了随机性对于维持长期多样性的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stochasticity Leads to Coexistence of Generalists and Specialists in Assembling Mutualistic Communities.

AbstractSpecies interaction networks are subject to natural and anthropogenic disturbances that lead to their disassembly, while natural regeneration or restoration efforts facilitate their reassembly. Previous models for assembling ecological networks did not include stochasticity at the level of population dynamics (e.g., demographic noise, environmental noise) and focused mainly on food webs. Here, we present a model for the assembly of mutualistic bipartite networks, such as plant-pollinator networks, and examine the influence of demographic noise on the trajectory of species and strategy diversity, that is, the range of present strategies from specialism to generalism. We find that assembled communities show at intermediate assembly stages a maximum of species diversity and of average generalization. Our model thus provides a mechanism for nonlinear, hump-shaped diversity trajectories at intermediate succession, consistent with the intermediate disturbance hypothesis. Long-term coexistence of specialists and generalists emerges only in the presence of demographic noise and is due to a persistent species turnover. These findings highlight the importance of stochasticity for maintaining long-term diversity.

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来源期刊
American Naturalist
American Naturalist 环境科学-进化生物学
CiteScore
5.40
自引率
3.40%
发文量
194
审稿时长
3 months
期刊介绍: Since its inception in 1867, The American Naturalist has maintained its position as one of the world''s premier peer-reviewed publications in ecology, evolution, and behavior research. Its goals are to publish articles that are of broad interest to the readership, pose new and significant problems, introduce novel subjects, develop conceptual unification, and change the way people think. AmNat emphasizes sophisticated methodologies and innovative theoretical syntheses—all in an effort to advance the knowledge of organic evolution and other broad biological principles.
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