Grup de recerca FEHM (Freshwater Ecology, Hydrology and Management), Departament de Biologia Evolutiva, Ecologia i Ciència Ambientals, Universitat de Barcelona, Avda Diagonal 643, 08028 Barcelona, Spain
Institute for Applied Ecology, University of Canberra, Australian Capital Territory 2601, Australia.
Philos Trans R Soc Lond B Biol Sci. 2018 Dec 3;374(1764):20180002. doi: 10.1098/rstb.2018.0002.
Humans are globally increasing the salt concentration of freshwaters (i.e. freshwater salinization), leading to significant effects at the population, community and ecosystem level. The present theme issue focuses on priority research questions and delivers results that contribute to shaping the future research agenda on freshwater salinization as well as fostering our capacity to manage salinization. The issue is structured along five topics: (i) the estimation of future salinity and evaluation of the relative contribution of the different drivers; (ii) the physiological responses of organisms to alterations in ion concentrations with a specific focus on the osmophysiology of freshwater insects and the responses of different organisims to seawater intrusion; (iii) the impact of salinization on ecosystem functioning, also considering the connections between riparian and stream ecosystems; (iv) the role of context in moderating the response to salinization. The contributions scrutinise the role of additional stressors, biotic interactions, the identify of the ions and their ratios, as well as of the biogeographic and evolutionary context; and (v) the public discourse on salinization and recommendations for management and regulation. In this paper we introduce the general background of salinization, outline research gaps and report key findings from the contributions to this theme issue.This article is part of the theme issue 'Salt in freshwaters: causes, ecological consequences and future prospects'.
人类正在使全球淡水中的盐分浓度不断增加(即淡水盐化),这对人口、群落和生态系统层面都产生了重大影响。本期特刊聚焦于优先研究问题,并提供了有助于塑造未来淡水盐化研究议程以及提高我们盐化管理能力的研究成果。该特刊主要涵盖以下五个主题:(一)未来盐度的估算以及不同驱动因素相对贡献的评估;(二)生物体对离子浓度变化的生理响应,特别关注淡水昆虫的渗透生理学以及不同生物体对海水入侵的响应;(三)盐化对生态系统功能的影响,同时考虑到河岸带和溪流生态系统之间的联系;(四)在盐化响应中,情境的作用。这些文章深入探讨了其他胁迫因素、生物相互作用、离子及其比值的识别以及生物地理和进化背景的作用;(五)关于盐化的公众讨论以及管理和调控的建议。本文介绍了盐化的背景信息,概述了研究空白,并报告了本期特刊中各项研究的主要发现。本文是“淡水中的盐分:成因、生态后果和未来展望”主题特刊的一部分。