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神经生物学与不断变化的生态系统:致力于理解人为因素对神经元和回路的影响。

Neurobiology and changing ecosystems: Toward understanding the impact of anthropogenic influences on neurons and circuits.

机构信息

The Kavli Foundation, Culver City, CA, United States.

出版信息

Front Neural Circuits. 2022 Nov 30;16:995354. doi: 10.3389/fncir.2022.995354. eCollection 2022.

Abstract

Rapid anthropogenic environmental changes, including those due to habitat contamination, degradation, and climate change, have far-reaching effects on biological systems that may outpace animals' adaptive responses. Neurobiological systems mediate interactions between animals and their environments and evolved over millions of years to detect and respond to change. To gain an understanding of the adaptive capacity of nervous systems given an unprecedented pace of environmental change, mechanisms of physiology and behavior at the cellular and biophysical level must be examined. While behavioral changes resulting from anthropogenic activity are becoming increasingly described, identification and examination of the cellular, molecular, and circuit-level processes underlying those changes are profoundly underexplored. Hence, the field of neuroscience lacks predictive frameworks to describe which neurobiological systems may be resilient or vulnerable to rapidly changing ecosystems, or what modes of adaptation are represented in our natural world. In this review, we highlight examples of animal behavior modification and corresponding nervous system adaptation in response to rapid environmental change. The underlying cellular, molecular, and circuit-level component processes underlying these behaviors are not known and emphasize the unmet need for rigorous scientific enquiry into the neurobiology of changing ecosystems.

摘要

快速的人为环境变化,包括由于栖息地污染、退化和气候变化造成的变化,对生物系统产生了深远的影响,这些变化可能超过了动物的适应能力。神经生物学系统调节着动物与其环境之间的相互作用,并经过数百万年的进化,以检测和应对变化。为了了解在前所未有的环境变化速度下神经系统的适应能力,必须检查细胞和生物物理水平的生理学和行为机制。虽然由于人为活动而导致的行为变化越来越多地被描述,但对这些变化背后的细胞、分子和回路级过程的识别和检查还远远没有得到探索。因此,神经科学领域缺乏预测框架来描述哪些神经生物学系统可能对快速变化的生态系统具有弹性或脆弱性,或者在我们的自然世界中代表了哪些适应模式。在这篇综述中,我们强调了动物行为改变的例子,以及相应的神经系统适应快速环境变化的例子。这些行为背后的潜在细胞、分子和回路级组成过程尚不清楚,这强调了需要对不断变化的生态系统的神经生物学进行严格的科学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1e9/9769128/86708aabd2a3/fncir-16-995354-g001.jpg

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