Changes in sediment methanogenic archaea community structure and methane production potential following conversion of coastal marsh to aquaculture ponds

沼泽 湿地 沉积物 水产养殖 古细菌 盐沼 环境科学 产甲烷 生态学 微咸水 河口 咸沼泽 渔业 甲烷 生物 盐度 古生物学 基因 生物化学
作者
Ping Yang,Kam W. Tang,Chuan Tong,Derrick Y.F. Lai,Lianzuan Wu,Hong Yang,Linhai Zhang,Chen Tang,Yan Hong,Guanghui Zhao
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:305: 119276-119276 被引量:24
标识
DOI:10.1016/j.envpol.2022.119276
摘要

Widespread conversion of coastal wetlands into aquaculture ponds in coastal region often results in degradation of the wetland ecosystems, but its effects on sediment's potential to produce greenhouse gases remain unclear. Using field sampling, incubation experiments and molecular analysis, we studied the sediment CH4 production potential and the relevant microbial communities in a brackish marsh and the nearby aquaculture ponds in the Min River Estuary in southeastern China. Sediment CH4 production potential was higher in the summer and autumn months than in spring and winter months, and it was significantly correlated with sediment carbon content among all environmental variables. The mean sediment CH4 production potential in the aquaculture ponds (20.1 ng g-1 d-1) was significantly lower than that in the marsh (45.2 ng g-1 d-1). While Methanobacterium dominated in both habitats (41-59%), the overall composition of sediment methanogenic archaea communities differed significantly between the two habitats (p < 0.05) and methanogenic archaea alpha diversity was lower in the aquaculture ponds (p < 0.01). Network analysis revealed that interactions between sediment methanogenic archaea were much weaker in the ponds than in the marsh. Overall, these findings suggest that conversion of marsh land to aquaculture ponds significantly altered the sediment methanogenic archaea community structure and diversity and lowered the sediment's capacity to produce CH4.
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