Spatial asymmetry of temporal ecological processes can shift in riverine macroinvertebrates responding to fluctuating climate conditions.

IF 8.2 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Science of the Total Environment Pub Date : 2024-11-20 Epub Date: 2024-08-30 DOI:10.1016/j.scitotenv.2024.175872
Xiaowei Lin, Zhen Tian, Qingyi Luo, Jingting Li, Qinghua Cai, Ming-Chih Chiu, Vincent H Resh
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引用次数: 0

Abstract

Exploring the temporal dynamics of biological communities can offer valuable insights into the underlying mechanisms driving changes in biodiversity in the context of short and long-term effects of climate fluctuations. However, an understanding of how temporal shifts in climatic fluctuations influence the spatial patterns of the temporary ecological processes remains unexplored. This study examined the relative importance of temporary deterministic and stochastic processes (i.e., the influence of environmental filtering compared to stochastic variation within the same community) on community dynamics across watersheds in 15 rivers of the European Iberian Peninsula using 21 years of data. This study was divided into two time periods (i.e., 1997-2006 and 2007-2017). The climatic differences between the periods included decreasing levels and heightened variability of precipitation. Additionally, there were declining minimum temperatures and rising maximum temperatures, accompanied by reduced fluctuations in both minimum and maximum temperatures. Water quality and its variations also occur along an elevation pattern and changed over the time period studied. Spatial patterns of the relative importance of the ecological processes shifted between the two decades. The significance of stochastic processes increased with elevation in the earlier period, although no clear elevation pattern emerged in the later period. At the same time, the importance of deterministic processes decreased with elevation in the earlier period, and there was no clear pattern of elevation in the later period. An understanding of the patterns in community dynamics existing at various elevations over time can lay the groundwork for predicting and mitigating the impacts of short-term climate changes on biodiversity and guide appropriate conservation actions.

河流大型无脊椎动物在应对波动的气候条件时,其时间生态过程的空间不对称性会发生变化。
探索生物群落的时间动态,可以深入了解在气候波动的短期和长期影响下生物多样性变化的内在机制。然而,对于这种变化如何影响形成群落动态模式的临时生态过程的空间模式的认识,仍有待探索。本研究利用 21 年的数据,考察了欧洲伊比利亚半岛 15 条河流各流域的临时确定性过程和随机过程(即同一群落中环境过滤的影响与随机变化的影响)对群落动态的相对重要性。该研究分为两个时间段(即 1997-2006 年和 2007-2017 年)。这两个时期的气候差异包括降水量的减少和变化的增加。此外,最低气温下降,最高气温上升,同时最低气温和最高气温的波动减小。水质及其变化也呈现出海拔高度模式,并在研究期间发生了变化。在这二十年间,生态过程相对重要性的空间模式发生了变化。在前期,随机过程的重要性随着海拔的升高而增加,但在后期则没有出现明显的海拔模式。与此同时,确定性过程的重要性在前期随着海拔的升高而降低,后期则没有明显的升高模式。了解不同海拔高度的群落动态随时间变化的规律,可以为预测和减轻短期气候变化对生物多样性的影响奠定基础,并指导适当的保护行动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science of the Total Environment
Science of the Total Environment 环境科学-环境科学
CiteScore
17.60
自引率
10.20%
发文量
8726
审稿时长
2.4 months
期刊介绍: The Science of the Total Environment is an international journal dedicated to scientific research on the environment and its interaction with humanity. It covers a wide range of disciplines and seeks to publish innovative, hypothesis-driven, and impactful research that explores the entire environment, including the atmosphere, lithosphere, hydrosphere, biosphere, and anthroposphere. The journal's updated Aims & Scope emphasizes the importance of interdisciplinary environmental research with broad impact. Priority is given to studies that advance fundamental understanding and explore the interconnectedness of multiple environmental spheres. Field studies are preferred, while laboratory experiments must demonstrate significant methodological advancements or mechanistic insights with direct relevance to the environment.
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