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Community structure and function of epiphytic bacteria attached to three submerged macrophytes

水生植物 附生植物 氢化物 生物 水生植物 生态学 α蛋白细菌 富营养化 植物 水生生态系统 微生物种群生物学 蛋白质细菌 群落结构 细菌 营养物 16S核糖体RNA 遗传学
作者
Weicheng Yu,Jiahe Li,Xiaowen Ma,Tian Lv,Ligong Wang,Jiaru Li,Chunhua Liu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:835: 155546-155546 被引量:23
标识
DOI:10.1016/j.scitotenv.2022.155546
摘要

In aquatic ecosystems, large amounts of epiphytic bacteria living on the leaf surfaces of submerged macrophytes play important roles in affecting plant growth and biogeochemical cycling. The restoration of different submerged macrophytes has been considered an effective measure to improve eutrophic lakes. However, the community ecology of epiphytic bacteria is far from well understood for different submerged macrophytes. In this study, we used quantitative PCR, 16S rRNA gene high-throughput sequencing and functional prediction analysis to explore the structure and function of epiphytic bacteria in an aquatic ecosystem recovered by three submerged macrophytes (Hydrilla verticillata, Vallisneria natans and Potamogeton maackianus) during two growth periods. The results showed that the community compositions and functions of epiphytic bacterial communities on the submerged macrophyte hosts were different from those of the planktonic bacterial communities in the surrounding water. The alpha diversity of the epiphytic bacterial community was significantly higher in October than in July, and the community compositions and functions differed significantly in July and October. Among the three submerged macrophytes, the structures and functions of the epiphytic bacterial community exhibited obvious differences, and some specific taxa were enriched on the biofilms of the three plants. The alpha diversity and the abundance of functions related to nitrogen and phosphorus transformation were higher in the epiphytic bacteria of P. maackianus. In summary, these results provide clues for understanding the distribution and formation mechanisms of epiphytic bacteria on submerged macrophyte leaves and their roles in freshwater ecosystems.
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