Wang Youshi, Wen Shujun, Farnon Ellwood M D, Miller Adam D, Chu Chengjin
SYSU-Alberta Joint Lab for Biodiversity Conservation Department of Ecology State Key Laboratory of Biocontrol and School of Life Sciences Sun Yat-sen University Guangzhou China.
Guangxi Key Laboratory of Plant Conservation and Restoration Ecology in Karst Terrain Guangxi Institute of Botany Guangxi Zhuang Autonomous Region and Chinese Academy of Sciences Guilin China.
Ecol Evol. 2017 Nov 23;8(1):120-127. doi: 10.1002/ece3.3660. eCollection 2018 Jan.
In an era of global environmental change, understanding how disturbance affects the dynamics of ecological communities is crucial. However, few studies have theoretically explored the potential influence of disturbance including both intensity and frequency on compositional change over time in communities with stage structure. A spatially explicit, individual-based model was constructed incorporating the various demographic responses to disturbance of plants at two different growth stages: seedlings and adults. In the model, we assumed that individuals within each stage were demographically equivalent (neutral) but differed between stages. We simulated a common phenomenon that seedlings suffered more from disturbance such as grazing and fire than adults. We showed how stage-structured communities of seedlings and adults responded to disturbance with various levels of disturbance frequency and intensity. In "undisturbed" simulations, the relationship between average species abundance (defined here as the total number of individuals divided by species richness) and community composition turnover (measured by the Bray-Curtis similarity index) was asymptotic. However, in strongly "disturbed" simulations with the between-disturbance intervals greater than one, this relationship became unimodal. Stage-dependent response to disturbance underlay the above discrepancy between undisturbed and disturbed communities.
在全球环境变化的时代,了解干扰如何影响生态群落的动态至关重要。然而,很少有研究从理论上探讨干扰(包括强度和频率)对具有阶段结构的群落组成随时间变化的潜在影响。构建了一个空间明确的、基于个体的模型,纳入了植物在两个不同生长阶段(幼苗和成年植株)对干扰的各种种群统计学响应。在该模型中,我们假设每个阶段内的个体在种群统计学上是等效的(中性的),但不同阶段之间存在差异。我们模拟了一种常见现象,即幼苗比成年植株更容易受到放牧和火灾等干扰的影响。我们展示了由幼苗和成年植株组成的具有阶段结构的群落如何对不同干扰频率和强度水平的干扰做出响应。在“未受干扰”的模拟中,平均物种丰度(这里定义为个体总数除以物种丰富度)与群落组成周转率(由布雷 - 柯蒂斯相似性指数衡量)之间的关系是渐近的。然而,在干扰间隔大于一个单位的强烈“受干扰”模拟中,这种关系变成了单峰的。对干扰的阶段依赖性响应是未受干扰和受干扰群落之间上述差异的基础。