Exploring the dynamic microbial tapestry of South Asian rivers: insights from the Ganges and Yamuna ecosystems

IF 2.5 3区 环境科学与生态学 Q2 ECOLOGY Ecohydrology Pub Date : 2024-04-24 DOI:10.1002/eco.2662
Sadashiv Chaturvedi, Biswameet Chakraborty, Liu Min, Amit Kumar, Bikram Pathak, Rupesh Kumar, Zhi-Guo Yu
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Abstract

This review meticulously examines the dynamics of river microbiomes, with an emphasis on the Ganges and Yamuna rivers of South Asia. These rivers are vital for both ecological and cultural landscapes and offer to understand the interaction between ecological and anthropogenic factors and their impact on microbial communities and activities. Ecological and hydrological factors such as seasonal changes, water flow and physico-chemical properties of rivers influence microbial diversity and abundance. The effect of heavy metals from industrial and agricultural sources on the river microbiome and how these pollutants modify microbial community structures and ecosystem health are not understood well yet. This underscores the need for sustainable water treatment and remediations for practical engineering solutions. The study reveals how these interactions, whether symbiotic or competitive, affect the composition and functionality of riverine microbial communities. An innovative aspect of our research is the potential of river microbiomes as indicators of urban sewage contamination. We demonstrate how microbial patterns can signal pollution levels, proving valuable for environmental monitoring, management and mitigation. A special attention to the role of microbes in river ecosystems' biogeochemical cycles has been paid to how these microbes contribute to nutrient recycling, organic matter decomposition and overall ecosystem productivity, underlining their crucial role in maintaining the aesthetic value of the river. Additionally, study evaluates the latest methodologies for analysing microbiome metagenomic data, including functional annotation and microbial community analysis techniques. Findings highlight the key importance of understanding river microbiomes for hydrology, ecology and microbiology researchers.

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探索南亚河流的动态微生物织锦:恒河和亚穆纳河生态系统的启示
这篇综述以南亚的恒河和亚穆纳河为重点,细致研究了河流微生物群的动态。这些河流对生态和文化景观都至关重要,有助于了解生态和人为因素之间的相互作用及其对微生物群落和活动的影响。河流的生态和水文因素(如季节变化、水流和物理化学特性)会影响微生物的多样性和丰度。工业和农业来源的重金属对河流微生物组的影响,以及这些污染物如何改变微生物群落结构和生态系统健康,目前还不十分清楚。这凸显了可持续水处理和补救措施对实用工程解决方案的需求。这项研究揭示了这些相互作用(无论是共生还是竞争)如何影响河流微生物群落的组成和功能。我们研究的一个创新点是河流微生物群落作为城市污水污染指标的潜力。我们展示了微生物模式是如何发出污染程度信号的,从而证明其对环境监测、管理和缓解具有重要价值。我们特别关注微生物在河流生态系统生物地球化学循环中的作用,研究这些微生物如何促进养分循环、有机物分解和生态系统的整体生产力,强调它们在保持河流美学价值方面的关键作用。此外,研究还评估了分析微生物组元基因组数据的最新方法,包括功能注释和微生物群落分析技术。研究结果凸显了了解河流微生物组对于水文学、生态学和微生物学研究人员的关键重要性。
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来源期刊
Ecohydrology
Ecohydrology 环境科学-生态学
CiteScore
5.10
自引率
7.70%
发文量
116
审稿时长
24 months
期刊介绍: Ecohydrology is an international journal publishing original scientific and review papers that aim to improve understanding of processes at the interface between ecology and hydrology and associated applications related to environmental management. Ecohydrology seeks to increase interdisciplinary insights by placing particular emphasis on interactions and associated feedbacks in both space and time between ecological systems and the hydrological cycle. Research contributions are solicited from disciplines focusing on the physical, ecological, biological, biogeochemical, geomorphological, drainage basin, mathematical and methodological aspects of ecohydrology. Research in both terrestrial and aquatic systems is of interest provided it explicitly links ecological systems and the hydrologic cycle; research such as aquatic ecological, channel engineering, or ecological or hydrological modelling is less appropriate for the journal unless it specifically addresses the criteria above. Manuscripts describing individual case studies are of interest in cases where broader insights are discussed beyond site- and species-specific results.
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