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将动物生理学纳入恢复景观的适应性管理。

Integrating animal physiology into the adaptive management of restored landscapes.

机构信息

School of Molecular and Life Sciences, Curtin University, Bentley, WA, 6102, Australia.

Kings Park Science, Department of Biodiversity, Conservation and Attractions, Kattidj Close, Kings Park, WA, 6005, Australia.

出版信息

Environ Manage. 2023 Sep;72(3):519-528. doi: 10.1007/s00267-023-01800-5. Epub 2023 Feb 13.

Abstract

Global-scale ecological changes and intensifying habitat destruction and have caused alarming declines in wildlife populations, resulting in a great need for concerted efforts towards their conservation. Despite this, animals are frequently overlooked in restoration and management initiatives and therefore populations often do not reassemble following disturbance without re-establishing habitat that meets their abiotic and biotic requirements. However, restoration ecologists broadly lack insight into the physiological mechanisms that can govern the responses of fauna to environmental change and management. Therefore, we conducted a literature search for studies reporting a mechanistic understanding of faunal habitat suitability and selection in restored landscapes to deliver an updated perspective on the integration of animal ecophysiology and restoration ecology. Of the 75,442 studies that we identified discussing ecological restoration in the last 50 years, only 8,627 (11.4%) did so in the context of fauna from which 912 studies (1.2%) examined habitat selection, 35 studies (0.05%) integrated physiology and only 15 studies (0.02%) explored thermal biology, despite temperature being one of the most pervasive drivers of physiological functioning. To combat this, we developed a conceptual framework that can guide restoration ecophysiology and promote innovative, multidisciplinary research through an established adaptive management structure. While physiological tools and approaches are currently underutilised in restoration practice, integrating them into ecological restoration, and environmental management more broadly, will offer exciting new opportunities to describe, explain and predict the responses of fauna to environmental change occurring, and that yet to come.

摘要

全球性的生态变化以及栖息地破坏的加剧,导致野生动物数量惊人地减少,因此迫切需要共同努力保护它们。尽管如此,在恢复和管理计划中,动物经常被忽视,因此在没有重新建立满足其非生物和生物需求的栖息地的情况下,动物种群通常不会在受到干扰后重新聚集。然而,恢复生态学家对能够控制动物对环境变化和管理的反应的生理机制缺乏广泛的了解。因此,我们进行了文献检索,以寻找报告有关恢复景观中动物栖息地适宜性和选择的机制理解的研究,以提供关于动物生理生态学和恢复生态学整合的最新观点。在过去 50 年中,我们确定了 75442 项讨论生态恢复的研究,其中只有 8627 项(11.4%)从动物的角度讨论了生态恢复,其中 912 项(1.2%)研究了栖息地选择,35 项(0.05%)研究了生理学,只有 15 项(0.02%)研究了热生物学,尽管温度是影响生理功能的最普遍驱动因素之一。为了解决这个问题,我们开发了一个概念框架,可以指导恢复生理生态学,并通过已建立的适应性管理结构促进创新的多学科研究。虽然生理工具和方法在恢复实践中尚未得到充分利用,但将它们整合到生态恢复中,以及更广泛地整合到环境管理中,将为描述、解释和预测动物对已经发生和即将发生的环境变化的反应提供令人兴奋的新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a2d/10372129/181845bdd7d6/267_2023_1800_Fig1_HTML.jpg

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