TY - JOUR
T1 - Runoff variation alters estuarine sediment microbiome and nitrogen removal processes by affecting salinity
AU - Dong, Liang
AU - Liu, Zhihong
AU - Xin, Zhuohang
AU - Song, Changchun
AU - Bai, Xin
AU - Li, Jiaxin
AU - Zhang, Yifeng
AU - Valverde-Pérez, Borja
AU - Zhang, Chi
PY - 2024
Y1 - 2024
N2 - Runoff variations shape the dynamics of the estuarine environmental factors, profoundly influencing the nitrogen cycle in estuarine sediments. However, our understanding of how these changes regulate microbially-mediated nitrogen removal processes remains limited. In this study, the impacts of changes in environmental factors caused by normal and low runoffs on denitrification and anammox in sediments of the Liao River Estuary in China, were investigated, using continuous-flow experiments combined with 15N tracing techniques and molecular methods. Results indicated that denitrification was the main nitrogen removal process in estuarine sediments under both runoff conditions. Elevated salinity under low runoff condition increased the abundance of nitrifying bacteria (Nitrospina, Nitrosomonas and Nitrosomonadaceae), thereby promoting the coupled nitrification-denitrification nitrogen removal process. Furthermore, seawater intrusion under low runoff contributed to dilute nitrite concentrations, resulting in decreased denitrification rates in sediments. Overall, this study highlighted the impacts of runoff variations on biological nitrogen removal process through affecting environmental factors, gene abundance and microbial community in the estuary.
AB - Runoff variations shape the dynamics of the estuarine environmental factors, profoundly influencing the nitrogen cycle in estuarine sediments. However, our understanding of how these changes regulate microbially-mediated nitrogen removal processes remains limited. In this study, the impacts of changes in environmental factors caused by normal and low runoffs on denitrification and anammox in sediments of the Liao River Estuary in China, were investigated, using continuous-flow experiments combined with 15N tracing techniques and molecular methods. Results indicated that denitrification was the main nitrogen removal process in estuarine sediments under both runoff conditions. Elevated salinity under low runoff condition increased the abundance of nitrifying bacteria (Nitrospina, Nitrosomonas and Nitrosomonadaceae), thereby promoting the coupled nitrification-denitrification nitrogen removal process. Furthermore, seawater intrusion under low runoff contributed to dilute nitrite concentrations, resulting in decreased denitrification rates in sediments. Overall, this study highlighted the impacts of runoff variations on biological nitrogen removal process through affecting environmental factors, gene abundance and microbial community in the estuary.
KW - Runoff variation
KW - Nitrogen pollution
KW - Nitrification
KW - Denitrification
KW - Anammox
KW - Microbiome
U2 - 10.1016/j.scitotenv.2024.176880
DO - 10.1016/j.scitotenv.2024.176880
M3 - Journal article
C2 - 39419209
SN - 0048-9697
VL - 955
JO - Science of the Total Environment
JF - Science of the Total Environment
M1 - 176880
ER -