Suppr超能文献

溪流生物膜中宏营养素的偶联循环:化学计量学、光照和温度的影响。

Coupled macronutrient cycling in stream biofilms: Effects of stoichiometry, light and temperature.

机构信息

The James Hutton Institute, Craigiebuckler, Aberdeen AB158QH, UK; Lancaster Environment Centre, Lancaster University, Lancaster LA14YQ, UK.

Sediment Ecology Research Group, Scottish Oceans Institute, School of Biology, University of St Andrews, KY16 8LB, UK; Coastal Research Group, Rhodes University, Grahamstown, South Africa.

出版信息

Sci Total Environ. 2020 Feb 10;703:134880. doi: 10.1016/j.scitotenv.2019.134880. Epub 2019 Nov 2.

Abstract

Stream biofilms have the capacity to modify the passage of macronutrients through catchments as they respond to nutrient compositions and ratios from different sources. Knowledge of coupled cycling of N, P and organic C in flowing freshwaters is essential to understanding and predicting aquatic ecosystems responses to environmental change comprising multiple chemical and physical stressors. Colonisation on nutrient diffusing substrates (glucose-C, inorganic NP, combined CNP and control applied in-situ in an oligotrophic, upland stream) led to biofilms differing in community and element compositions. The 72 biofilms were transferred to replicated recirculating water chambers (1 L volume) for 4-days where additional effects of light and temperature treatments were investigated on nutrient exchange with the water column. Chemical (nutrient analyses, C, N tracing, stoichiometry) and biological (chlorophyll, TRFLP) analyses were performed to understand the biofilm composition changes and interaction with the water column. Biofilms combining C with NP incorporated more N and P relative to controls than did those with NP alone. During the chamber phase C-treated biofilms resulted in lower water column N, P concentrations with CNP relative to NP treatments. The effects of the light and temperature were manifested mainly in impaired net nutrient uptake at temperature deviating from ambient stream temperatures. The effects of organic C on N, P cycling (and vice-versa) in mixed biofilms and their interaction with waters is a developing field. Combining in-stream and chamber tests has shown potential for studying in controlled and replicated systems such complex interactions.

摘要

水流生物膜具有通过集水区改变大量营养物质迁移的能力,因为它们会对来自不同来源的营养成分和比例做出响应。了解流动淡水中氮、磷和有机碳的耦合循环对于理解和预测包含多种化学和物理胁迫的水生生态系统对环境变化的响应至关重要。在贫营养、高地溪流中,在营养扩散基质(葡萄糖-C、无机 NP、组合 CNP 和原位施加的对照)上的定殖导致生物膜在群落和元素组成上存在差异。将 72 个生物膜转移到复制的循环水室(1 升体积)中进行 4 天,在此期间,研究了光照和温度处理对与水柱进行养分交换的额外影响。进行了化学(养分分析、C、N 示踪、化学计量)和生物(叶绿素、TRFLP)分析,以了解生物膜组成变化及其与水柱的相互作用。与仅 NP 处理相比,与 NP 结合的 C 处理的生物膜结合了更多的 N 和 P。在腔室阶段,与 NP 处理相比,C 处理的生物膜导致水柱中 N、P 浓度降低,CNP 相对 NP 处理。光照和温度的影响主要表现为在偏离环境溪流温度的温度下,净养分吸收受损。有机 C 对混合生物膜中氮、磷循环(反之亦然)及其与水的相互作用的影响是一个正在发展的领域。将溪流内和腔室测试相结合已显示出在受控和复制系统中研究这种复杂相互作用的潜力。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验