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PSInet:一个新的全球水势能网络。

PSInet: a new global water potential network.

机构信息

O'Neill School of Public & Environmental Affairs, Indiana University Bloomington, 702 N Walnut Grove St, Bloomington, IN 47405, USA.

Department of Biology, West Virginia University, Morgantown, VA 26506, USA.

出版信息

Tree Physiol. 2024 Oct 3;44(10). doi: 10.1093/treephys/tpae110.

Abstract

Given the pressing challenges posed by climate change, it is crucial to develop a deeper understanding of the impacts of escalating drought and heat stress on terrestrial ecosystems and the vital services they offer. Soil and plant water potential play a pivotal role in governing the dynamics of water within ecosystems and exert direct control over plant function and mortality risk during periods of ecological stress. However, existing observations of water potential suffer from significant limitations, including their sporadic and discontinuous nature, inconsistent representation of relevant spatio-temporal scales and numerous methodological challenges. These limitations hinder the comprehensive and synthetic research needed to enhance our conceptual understanding and predictive models of plant function and survival under limited moisture availability. In this article, we present PSInet (PSI-for the Greek letter Ψ used to denote water potential), a novel collaborative network of researchers and data, designed to bridge the current critical information gap in water potential data. The primary objectives of PSInet are as follows. (i) Establishing the first openly accessible global database for time series of plant and soil water potential measurements, while providing important linkages with other relevant observation networks. (ii) Fostering an inclusive and diverse collaborative environment for all scientists studying water potential in various stages of their careers. (iii) Standardizing methodologies, processing and interpretation of water potential data through the engagement of a global community of scientists, facilitated by the dissemination of standardized protocols, best practices and early career training opportunities. (iv) Facilitating the use of the PSInet database for synthesizing knowledge and addressing prominent gaps in our understanding of plants' physiological responses to various environmental stressors. The PSInet initiative is integral to meeting the fundamental research challenge of discerning which plant species will thrive and which will be vulnerable in a world undergoing rapid warming and increasing aridification.

摘要

鉴于气候变化带来的紧迫挑战,深入了解不断加剧的干旱和热应激对陆地生态系统及其提供的重要服务的影响至关重要。土壤和植物水势在控制生态系统内水分动态方面起着关键作用,并在生态胁迫期间对植物功能和死亡率风险直接进行控制。然而,现有的水势观测存在着显著的局限性,包括其零星和不连续的性质、对相关时空尺度的不一致表示以及众多方法学挑战。这些局限性阻碍了全面综合的研究,而这种研究对于增强我们在有限水分可用性下对植物功能和生存的概念理解和预测模型是必要的。在本文中,我们提出了 PSInet(PSI 是希腊字母 Ψ,用于表示水势),这是一个研究人员和数据的新型合作网络,旨在弥合水势数据当前的关键信息差距。PSInet 的主要目标如下。(i)建立第一个公开可访问的全球植物和土壤水势测量时间序列数据库,同时与其他相关观测网络建立重要联系。(ii)为所有研究水势的科学家提供一个包容和多样化的合作环境,无论他们处于职业生涯的哪个阶段。(iii)通过让全球科学家参与进来,通过传播标准化协议、最佳实践和早期职业培训机会,来实现水势数据的方法学、处理和解释的标准化。(iv)促进 PSInet 数据库的使用,以综合知识并解决我们对植物对各种环境胁迫的生理反应理解中的突出差距。PSInet 倡议是应对基本研究挑战的一部分,该挑战是要辨别在快速变暖且日益干旱化的世界中,哪些植物物种将茁壮成长,哪些植物物种将脆弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b67d/11447379/194973c50d86/tpae110f1.jpg

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