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An innovative bivariate approach to detect joint temporal trends in environmental conditions: Application to large French rivers and diadromous fish

机译:一种创新的双变量方法,以检测环境条件的关节时间趋势:在大型法国河流和日黄花鱼类中的应用

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摘要

Most key life-events of organisms are synchronized by complex interactions of several environmental cues to ensure optimal survival and growth of individuals and their offspring. However, global change is known to affect multiple components of ecosystems and cues at the same time. Therefore, detecting joint trends in covariate time series is a crucial challenge in global change ecology that has rarely been addressed so far. In this context, we designed an innovative combination of kernel density estimations and Mann-Kendall trend tests to detect joint temporal trends in a pair of environmental variables. This methodological framework was tested on >30 years (1976-2019) of water temperature and discharge data for 6 large French rivers (the Garonne, Dordogne, Rhone, Rhine, Loire and Vienne rivers). The implications of such trends in both temperature and discharge for diadromous species key life-cycle processes were then explored by checking if significant bivariate environmental changes occurred during seasons of upstream and downstream migration, and reproductive activities. Results were contrasted between rivers and seasons: many rivers displayed an increase in the number of days with high water temperature and low river discharge, but local discharge regulation measures could have mitigated the trend in discharge. Our findings showed that species migrating or spawning in spring were likely to be strongly impacted by the new environmental conditions in the Garonne, Loire and Rhone rivers, given the marked changes in water temperature and discharge associations detected by our new method. Conditions experienced by fall-running and spawning species have been strongly affected in all the rivers studied. This innovative methodology was implemented in a new R package, ChocR, for application to other environments and ecosystems.
机译:有机体的大多数主要生命事件是通过几种环境提示的复杂相互作用同步,以确保个人的最佳存活率和生长和其后代。但是,已知全局变革在同时影响生态系统和提示的多个组件。因此,检测协变量时间序列的关节趋势是全球变革生态学的关键挑战,这是迄今为止很少得到解决的。在这种情况下,我们设计了一种创新的内核密度估计和Mann-Kendall趋势试验的组合,以检测一对环境变量的关节时间趋势。这种方法论框架在6辆大型法国河流(Garonne,Dordogne,Rhone,Rhine,Loire和Vienne Rivers)的水温和排放数据中进行了> 30年(1976-2019)。然后通过检查在上游和下游迁移和生殖活动中发生重大的双变量环境变化,探讨这种趋势在温度和辐射对黄昏物种的临时临时生命周期过程中的影响。结果与河流和季节之间形成鲜明对比:许多河流均呈现出高水温和低河流放电的天数,但本地放电调节措施可能会减少出院的趋势。我们的研究结果表明,在我们的新方法检测到的水温和放电协会的显着变化,春季迁移或产卵的物种可能会受到Garonnne,Loire和Rhone Rivers的新环境条件的强烈影响。在研究的所有河流中,落下和产卵物种经历的情况受到强烈影响。这种创新方法是在一个新的R包,Chocr,用于应用于其他环境和生态系统的新的方法。

著录项

  • 来源
    《Science of the total environment》 |2020年第15期|141260.1-141260.12|共12页
  • 作者单位

    INRAE Unite EABX - Ecosystemes Aquatiques et Changements Globaux HYNES (Irstea-EDF R&D) 50 avenue de Verdun 33612 Cestas Cedex France;

    INRAE Unite EABX - Ecosystemes Aquatiques et Changements Globaux HYNES (Irstea-EDF R&D) 50 avenue de Verdun 33612 Cestas Cedex France;

    EDF R&D LNHE - Laboratoire National d'Hydraulique et Environnement HYNES (Irstea-EDF R&D) 6 quai Watier 78401 Chatou Cedex France;

    EDF R&D LNHE - Laboratoire National d'Hydraulique et Environnement HYNES (Irstea-EDF R&D) 6 quai Watier 78401 Chatou Cedex France;

    INRAE Unite RiverLy 5 Rue de la Doua CS20244 69625 Villeurbanne Cedex France;

    INRAE Unite EABX - Ecosystemes Aquatiques et Changements Globaux HYNES (Irstea-EDF R&D) 50 avenue de Verdun 33612 Cestas Cedex France;

    INRAE Unite EABX - Ecosystemes Aquatiques et Changements Globaux HYNES (Irstea-EDF R&D) 50 avenue de Verdun 33612 Cestas Cedex France;

    INRAE Unite EABX - Ecosystemes Aquatiques et Changements Globaux HYNES (Irstea-EDF R&D) 50 avenue de Verdun 33612 Cestas Cedex France;

    INRAE Unite EABX - Ecosystemes Aquatiques et Changements Globaux HYNES (Irstea-EDF R&D) 50 avenue de Verdun 33612 Cestas Cedex France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multivariate analysis; Trend analysis; Water temperature; Discharge; Global change; Diadromous species;

    机译:多变量分析;趋势分析;水温;释放;全球变革;日记物种;

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