Qin Lijuan, Zhang Feng, Wang Wanxiong, Song Weixin
College of Resources and Environmental Science, Gansu Agricultural University, Lanzhou, China.
Center for Quantitative Biology, College of Science, Gansu Agricultural University, Lanzhou, China.
PLoS One. 2017 Mar 23;12(3):e0174141. doi: 10.1371/journal.pone.0174141. eCollection 2017.
Understanding Allee effect has crucial importance for ecological conservation and management because it is strongly related to population extinction. Due to various ecological mechanisms accounting for Allee effect, it is necessary to study the influence of multiple Allee effects on the dynamics and persistence of population. We here focus on organism-environment feedback which can incur strong, weak, and fatal Allee effect (AE-by-OEF), and further examine their interaction with the Allee effects caused by other ecological mechanisms (AE-by-OM). The results show that multiple Allee effects largely increase the extinction risk of population either due to the enlargement of Allee threshold or the change of inherent characteristic of Allee effect, and such an increase will be enhanced dramatically with increasing the strength of individual Allee effects. Our simulations explicitly considering spatial structure also demonstrate that local interaction among habitat patches can greatly mitigate such superimposed Allee effects as well as individual Allee effect. This implies that spatially structurized habitat could play an important role in ecological conservation and management.
理解阿利效应对于生态保护和管理至关重要,因为它与种群灭绝密切相关。由于导致阿利效应的各种生态机制,研究多种阿利效应对种群动态和持久性的影响很有必要。我们在此关注可能引发强、弱和致命阿利效应的生物 - 环境反馈(由生物 - 环境反馈导致的阿利效应,AE - by - OEF),并进一步研究它们与其他生态机制引起的阿利效应(由其他机制导致的阿利效应,AE - by - OM)之间的相互作用。结果表明,多种阿利效应会因阿利阈值的扩大或阿利效应固有特征的改变而大幅增加种群的灭绝风险,并且随着个体阿利效应强度的增加,这种风险的增加会显著增强。我们明确考虑空间结构的模拟还表明,栖息地斑块之间的局部相互作用能够极大地减轻这种叠加的阿利效应以及个体阿利效应。这意味着空间结构化的栖息地在生态保护和管理中可能发挥重要作用。