Equihua Miguel, Espinosa Aldama Mariana, Gershenson Carlos, López-Corona Oliver, Munguía Mariana, Pérez-Maqueo Octavio, Ramírez-Carrillo Elvia
Red Ambiente y Sustentabilidad, Instituto de Ecología A.C., Xalapa, Veracruz, México.
Doctorado en Ciencias Sociales y Humanidades, UAM-Cuajimalpa., CDMX, México.
PeerJ. 2020 Feb 11;8:e8533. doi: 10.7717/peerj.8533. eCollection 2020.
We review the concept of ecosystem resilience in its relation to ecosystem integrity from an information theory approach. We summarize the literature on the subject identifying three main narratives: ecosystem properties that enable them to be more resilient; ecosystem response to perturbations; and complexity. We also include original ideas with theoretical and quantitative developments with application examples. The main contribution is a new way to rethink resilience, that is mathematically formal and easy to evaluate heuristically in real-world applications: ecosystem antifragility. An ecosystem is antifragile if it benefits from environmental variability. Antifragility therefore goes beyond robustness or resilience because while resilient/robust systems are merely perturbation-resistant, antifragile structures not only withstand stress but also benefit from it.
我们从信息论的角度审视生态系统恢复力与生态系统完整性之间的关系这一概念。我们总结了关于该主题的文献,确定了三个主要观点:使生态系统更具恢复力的生态系统属性;生态系统对干扰的响应;以及复杂性。我们还纳入了具有理论和定量发展以及应用实例的原创观点。主要贡献在于一种重新思考恢复力的新方法,它在数学上是形式化的,并且在实际应用中易于通过启发式方法进行评估:生态系统的反脆弱性。如果一个生态系统从环境变异性中受益,那么它就是反脆弱的。因此,反脆弱性超越了稳健性或恢复力,因为虽然具有恢复力/稳健性的系统仅仅是抗干扰的,但反脆弱结构不仅能承受压力,还能从中受益。