物理稳定但生物敏感:稳定氧化还原分层的卡达诺湖无氧光养生物的多年生态动态

IF 2 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
N. Storelli, O. Sepúlveda Steiner, F. Di Nezio, S. Roman, A. Buetti-Dinh, D. Bouffard
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引用次数: 0

摘要

卡达尼奥湖是一个以永久分层为特征的分生高山湖泊,它创造了一个永久缺氧的环境,支持缺氧光养硫细菌的生长。通过定期监测水柱,在三年期间(2019-2021年)检查了这些微生物的季节性和跨季节性。通过记录温度、电导率、光照、氧和硫化物浓度等多种理化参数,以及趋化cline中无氧光养硫细菌的群落组成,观察外界天气条件的潜在影响。研究结果表明,尽管湖泊具有一致的物理和化学分层,但无氧光养硫细菌群落的组成对外部环境因素(包括降雨和光照)的变化有显著的响应。具体来说,我们在三年的监测中观察到了紫色(PSB)和绿色(GSB)硫细菌群落的不同生长动态。这些变化强调了分生湖泊生物地球化学循环的复杂性以及外部环境因素对这一祖先微生物群落动态的影响。这些结果为氧化还原分层环境的稳定性提供了有价值的见解,为古代水生生态系统提供了现代模拟。这项研究强调了长期定期监测的重要性,以捕捉年际动态并评估气候变化对这些独特生态系统的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physically stable yet biologically sensitive: multiyear ecological dynamics of anoxygenic phototrophs in stably redox-stratified Lake Cadagno

Lake Cadagno is a meromictic alpine lake characterized by permanent stratification, which creates a permanent anoxic environment that supports the growth of anoxygenic phototrophic sulfur bacteria. The seasonality and interseasonality of these microorganisms were examined over a three-year period (2019–2021) through regular monitoring of the water column. A variety of physical–chemical parameters, including temperature, conductivity, light, oxygen and sulfide concentrations, and the community composition of anoxygenic phototrophic sulfur bacteria in the chemocline were recorded, to observe potential influence of external weather conditions. Our findings indicate that, despite the lake’s consistent physical and chemical stratification, the composition of the anoxygenic phototrophic sulfur bacteria community exhibited notable variations in response to external environmental factors, including changes in rainfall and light irradiance. Specifically, we observed different growth dynamics in the purple (PSB) and green (GSB) sulfur bacteria communities over the three years of monitoring. These variations underscore the complexity of biogeochemical cycles in meromictic lakes and the impact of external environmental factors on this ancestral microbial community dynamics. The results provide valuable insights into the stability of redox-stratified environments, offering a modern analog for ancient aquatic ecosystems. This research emphasizes the importance of long-term regular monitoring to capture interannual dynamics and assess the implications of climate change on such unique ecosystems.

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来源期刊
Aquatic Sciences
Aquatic Sciences 环境科学-海洋与淡水生物学
CiteScore
3.90
自引率
4.20%
发文量
60
审稿时长
1 months
期刊介绍: Aquatic Sciences – Research Across Boundaries publishes original research, overviews, and reviews dealing with aquatic systems (both freshwater and marine systems) and their boundaries, including the impact of human activities on these systems. The coverage ranges from molecular-level mechanistic studies to investigations at the whole ecosystem scale. Aquatic Sciences publishes articles presenting research across disciplinary and environmental boundaries, including studies examining interactions among geological, microbial, biological, chemical, physical, hydrological, and societal processes, as well as studies assessing land-water, air-water, benthic-pelagic, river-ocean, lentic-lotic, and groundwater-surface water interactions.
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