经典的生态恢复与当前的挑战:辅助迁移作为适应气候变化的策略

Pilar A. Gómez-Ruíz, R. Lindig-Cisneros
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引用次数: 3

摘要

生态恢复是生态学中一个非常活跃的领域,对生态系统管理具有重要意义。尽管这是一个相对年轻的学科,但考虑到生态系统的改变和破坏所带来的巨大挑战,恢复的经典概念目前似乎不切实际。这是由于人类活动(砍伐森林、土地利用变化、污染)和全球气候变化造成的。在恢复的经典定义中,目标是将退化的生态系统恢复到历史参考状态的相同条件。然而,如今,生态系统恢复到干扰之前的状态似乎是不可持续的,因为恢复能力的阈值已经被克服了。此外,气候变化正以前所未有的速度引起环境变化。因此,生态恢复需要各方的共同努力,以恢复未来可持续和功能性的生态系统,使物种能够忍受长期存在的环境条件。辅助迁徙已被提出作为一种保护策略;它被定义为物种迁移到已知分布范围之外的新地点。在当前多样性和生态系统丧失的背景下,这一战略可能是形成新群落的基础,这些群落后来可以成为新的生态系统,在这种生态系统中,对生态系统动态至关重要的物种可以持续存在,同时恢复功能、结构和复原力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
La restauración ecológica clásica y los retos de la actualidad: La migración asistida como estrategia de adaptación al cambio climático
Ecological restoration is a very active area in ecology and of great importance for ecosystems management. Despite of being a relatively young discipline, the classical concepts of restoration seem, at present, impractical considering the great challenges generated by modification and destruction of ecosystems. This is due to anthropic activities (deforestation, change of land use, pollution) and global climate change. In the classic definition of restoration, the objective is to recover the degraded ecosystem to the same conditions of a historical reference state. However, nowadays the ecosystems return to a state prior to the disturbances seems unviable, because the thresholds of resilience have already been overcome. Additionally, climate change is causing environmental changes at an unprecedented rate. For this reason, ecological restoration needs to unite efforts of diverse actors to recover ecosystems that can be sustainable and functional in the future, where the species could be able to tolerate the environmental conditions that will exist in the long term. Assisted migration has been proposed as a conservation strategy; it is defined as the translocation of species to new locations outside their known range of distribution. In the current context of loss of diversity and ecosystems, this strategy could be fundamental for the formation of new communities that can later become novel ecosystems where species that are fundamental to the dynamics of ecosystems can persist and, at the same time, recover function, structure and resilience.
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