2023
DOI: 10.1111/1462-2920.16370
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Eukaryotes contribute more than bacteria to the recovery of freshwater ecosystem functions under different drought durations

Abstract: Global climate change mostly impacts river ecosystems by affecting microbial biodiversity and ecological functions. Considering the high functional redundancy of microorganisms, the unknown relationship between biodiversity and ecosystem functions obstructs river ecological research, especially under the influence of increasing weather extremes, such as in intermittent rivers and ephemeral streams (IRES). Herein, dry-wet alternation experiments were conducted in artificial stream channels for 25 and 90 days of… Show more

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Cited by 2 publications
(9 citation statements)
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References 89 publications
(118 reference statements)
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“…In line with previous studies, the interdomain network's response mechanism to short-term drought stress reflects a tight, complex, and stable network structure. 5 Simultaneously, the interdomain network exhibits high ecological adaptability, evident from its rapid stability recovery and the positive correlation ratio approaching control levels as drought duration increase (Figure 4 and Figure S5). Moreover, the similar response of the positive correlation ratio to the average degree and robustness indicates that a preference for cooperative relationships among microorganisms, rather than exclusion, in face of hydrological disturbances could explain the response mechanism 55 (Figure 4b).…”
Section: Ecological Network and Community Assemblymentioning
confidence: 93%
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“…In line with previous studies, the interdomain network's response mechanism to short-term drought stress reflects a tight, complex, and stable network structure. 5 Simultaneously, the interdomain network exhibits high ecological adaptability, evident from its rapid stability recovery and the positive correlation ratio approaching control levels as drought duration increase (Figure 4 and Figure S5). Moreover, the similar response of the positive correlation ratio to the average degree and robustness indicates that a preference for cooperative relationships among microorganisms, rather than exclusion, in face of hydrological disturbances could explain the response mechanism 55 (Figure 4b).…”
Section: Ecological Network and Community Assemblymentioning
confidence: 93%
“…Building on our previous study, biofilm colonization was conducted in the Qin Huai River (32°03′36.2’’ N; 118°44′38.1’’ E) located in Nanjing, Eastern China. , For this purpose, each device consisted of wire cages measuring 30 cm in diameter and 30 cm in height, consisting of cobbles (2–3 cm in diameter). The cultivation process lasted for 44 days under natural conditions to obtain mature biofilm growth on the cobbles .…”
Section: Methodsmentioning
confidence: 99%
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