MULTI-STRESS: Quantifying the impacts of multiple stressors in multiple dimensions to improve ecological forecasting
MULTI-STRESS: Quantifying the impacts of multiple stressors in multiple dimensions to improve ecological forecasting
批准号:
NE/Z000130/1
负责人:
Christopher Clements
金额:
$85.89万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2024
资助国家:
英国
项目状态:
未结题
起止时间:
2024 至 --
中文摘要
我们的世界以变化为特征,主要由人类活动驱动。这些活动-如自然资源的收获和温室气体的排放-给我们地球的生态系统带来了压力,通过人口数量的减少和物种的灭绝重塑了全球生物多样性。然而,我们对这些有害活动(称为“压力源”)影响野生动物种群的机制仍然了解有限。全球大多数物种(约80%)同时受到一种以上的压力(例如捕捞压力和气候变化),这进一步加剧了对这一问题的认识不足。在这种情况下,压力因素可能以不可预测的方式相互作用,进一步加速生物多样性的下降。因此,如果不更好地了解压力源如何相互作用以影响野生动物种群,就不可能准确预测生物多样性在未来将如何变化,或识别灭绝风险最高的物种。这个项目将以一种与以前尝试的根本不同的方式来解决我们知识中的这一差距。而不是仅仅检查多个压力对人口丰度的影响,我们将使用两个脆弱的红色上市海鸟物种作为一个模型系统,以量化两个突出的压力(气候变化和渔业压力)如何影响人口的生态多个方面同时特殊的数据集。我们将探讨压力如何影响行为(个人觅食努力),身体状况(身体状况,个人整体健康的衡量标准),人口统计率(例如,存活率、繁殖力)和种群趋势。这样做将使我们能够了解野生动物种群如何变化以科普不断增加的遗传压力,这些变化是否减轻了多种压力源的负面影响,以及这些变化是否可以用来预测处于崩溃风险的种群。然后,我们将利用这些信息来建立模型,预测这些脆弱的物种将如何科普未来的环境变化,明确纳入个人的能力,改变行为,形态和人口增长率在面对越来越大的压力。该项目的成果有可能彻底改变我们对多重压力如何影响人口生态多个方面的理解,以及这些影响如何加起来推动生物多样性变化。该项目所产生的知识将有助于保护主义者制定更有效的战略来管理濒危物种,政策制定者更可靠地判断资源开采的影响,公众更深入地了解人类活动对野生动物所带来的挑战。它还将提供一个平台,更广泛的研究界可以在此基础上进一步了解多种压力对生物多样性的影响。
英文摘要
Our world is characterised by change, driven largely by human activities. These activities - such as the harvesting of natural resources and emission of greenhouse gases - put pressure on our planet's ecosystems, reshaping global biodiversity through declines in the abundance of populations, and the extinction of species. However, we still have limited understanding of the mechanisms by which these detrimental activities (termed "stressors") affect wildlife populations. This lack of understanding is further exacerbated by the fact that most species globally (~80%) are exposed to more than one stressor (e.g. fishing pressure and climate change) simultaneously. In such a scenario, stressors may interact in unpredictable ways, further accelerating biodiversity declines. Consequently, without a better understanding of how stressors interact to impact wildlife populations it is impossible to accurately forecast how biodiversity will change into the future, or identify species at the highest risk of extinction. This project will tackle this gap in our knowledge in a fundamentally different way to what has been attempted before. Rather than solely examining the impacts of multiple stressors on population abundances, we will use an exceptional dataset of two Vulnerable Red Listed seabird species as a model system to quantify how two prominent stressors (climate change and fishery pressure) impact multiple facets of a population's ecology simultaneously. We will explore how stressors impact behaviours (individual foraging effort), physical condition (body condition, a measure of an individual's overall health), demographic rates (e.g., survival, fecundity), and population trends over time within a single analytical framework. Doing so will allow us to understand how wildlife populations change to cope with increasing levels of anthropogenically derived stress, whether such changes mitigate the negative impacts of multiple stressors, and whether these changes can be used to predict populations that are at risk of collapse. We will then use this information to build models to forecast how these vulnerable species will cope with future environmental change by explicitly incorporating individual's ability to change behaviour, morphology, and demographic rates in the face of increasing stress. The outcomes of this project have the potential to revolutionise our understanding of how multiple stressors impact multiple facets of a population's ecology, and how these impacts can sum to drive biodiversity change. The knowledge generated by this project will help conservationists to develop more effective strategies to manage at-risk species, policy makers to more reliably judge the impacts of resource extraction, and the general public to gain a deeper appreciation of the challenges faced by wildlife due to human activities. It will also provide a platform on which the wider research community can build to advance our understanding of the impacts of multiple stressors on biodiversity.
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Timeline to collapse
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批准号:NE/T006579/1
-
项目类别:Research Grant
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资助金额:$69.18万
-
财政年份:2021
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负责人:Christopher Clements
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依托单位:
国内基金
海外基金
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