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Anthropogenic land uses drive shifts in denitrification‐related microbiota in freshwater river ecosystems

Bibliographic Data

ID21648895
AuthorsXing Liu (0000-0001-8578-3769, State Key Laboratory of Eco‐hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an PR China), Baozhu Pan (0000-0003-4076-8519, State Key Laboratory of Eco‐hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an PR China, corresponding author), Zhenyu Huang (0000-0002-4502-0086, State Key Laboratory of Eco‐hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an PR China), Xinyuan Liu (0000-0001-6195-6223, State Key Laboratory of Eco‐hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an PR China), Haoran He (0000-0002-7340-8643, State Key Laboratory of Eco‐hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an PR China), Xinzheng Zhu (State Key Laboratory of Eco‐hydraulics in Northwest Arid Region of China Xi'an University of Technology Xi'an PR China)
Year2023
Volume34
Issue1
Pages269-282
Publication date2023-01-15
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueLand Degradation and Development (JOURNAL)
Journal identifiersISSN: 1085-3278 • E-ISSN: 1099-145X
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ldr.4458
OpenAlexW4294363424
LanguageEN
References cited82

Microbiota play essential roles in nitrogen (N) cycling in freshwater river ecosystems. However, our understanding of microbial functional groups associated with N cycling (especially denitrification) in freshwater rivers under anthropogenic disturbance is still poor. Here, we studied the impacts of different land‐use types on denitrification‐related microbiota in the Weihe River, Hanjiang River, and their tributaries, in the Qinling Mountains, China. The major land‐use types in the three river areas were divided into natural (forest, shrub, grassland, and open water) and anthropogenic (agricultural and urbanized land) types. A landscape survey of microbiota in the river water and sediment was carried out with extensive sample sources based on deep 16S rRNA gene sequencing, which yielded operational taxonomic units for predicting functional groups. With increases in proportions of agricultural and urbanized land areas, electrical conductivity, total N, ammonium‐N, and nitrate‐N all increased in water samples. Conversely, microbial diversity exhibited a decreasing trend in water samples, whereas the relative abundance of denitrification‐related functional groups increased, with increases in the proportions of agricultural and urbanized land areas. The relative abundances of denitrification‐ and human‐related microbial functional groups in sediment samples were distinctively higher in Weihe River (mainly under agriculture and urbanization), when compared with those of Hanjiang River and Qinling tributaries (dominated by forests). The results indicate that anthropogenic land‐use types, such as agricultural and urbanized land, result in simple microbial community structure and stimulate microbe‐mediated denitrification in freshwater rivers

Agricultural land · Biology · Denitrification · Ecosystem · Freshwater ecosystem · Geography · Land use · Nitrogen · Nitrogen Cycle · Tributary · Wetland · Environmental Science · Microbial Community Ecology and Physiology · Soil and Water Nutrient Dynamics · Wastewater Treatment and Nitrogen Removal · Ecology · Geology

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Citation velocityhistorical
Highly citedNo
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