互花米草
固碳
红树林
蓝炭
环境科学
生态学
碳纤维
氮气
环境化学
生物
化学
二氧化碳
湿地
沼泽
材料科学
有机化学
复合数
复合材料
作者
Zetao Dai,Ning Zhang,Feifei Wang,Yujie Li,Jiarui Peng,Tao Xiang,Xiaoyu Zhao,Shengchang Yang,Wenzhi Cao
标识
DOI:10.1016/j.jenvman.2024.121569
摘要
Mangrove ecosystems play an important role in carbon (C) sequestration and nitrogen (N) removal. Although Spartina alterniflora has successively invaded native mangrove habitats during the preceding two decades, the effects of this invasion on the microbial functional potential involved in nutrient cycling remain unclear. In this study, metagenomic sequencing was used to investigate microbial C and N cycling in sediments derived from S. alterniflora and three native mangrove species (Kandelia obovata, Avicennia marina, and Aegiceras corniculatum). Greater differences in functional profiles of C and N cycling-related genes were observed between S. alterniflora and mangrove sediments than between different mangrove sediments. Functional diversity was lower in S. alterniflora sediments than in native mangrove sediments. The growth of Thaumarchaeota and Proteobacteria, was enhanced due to their resilience to diversity loss, while the growth of oligotrophs, such as Chloroflexi and Firmicutes, was inhibited in S. alterniflora sediments. Compared to mangrove sediments, the abundance of genes involved in C fixation and methane production was lower in S. alterniflora sediments. However, S. alterniflora significantly increased the gene abundance of pmo which controlled the oxidation process of CH
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