生物
浮游生物
生态学
富营养化
稀有物种
分类单元
微生物生态学
营养物
栖息地
遗传学
细菌
作者
Huaxian Zhao,Francis Q. Brearley,Liangliang Huang,Junwu Tang,Qiangsheng Xu,Xiaoli Li,Yuqing Huang,Shuqi Zou,Xing Chen,Weiguo Hou,Lianghao Pan,Ke Dong,Gonglingxia Jiang,Nan Li
标识
DOI:10.1007/s00248-022-01976-z
摘要
Revealing planktonic fungal ecology under coastal eutrophication is crucial to our understanding of microbial community shift in marine pollution background. We investigated the diversity, putative interspecies interactions, assembly processes and environmental responses of abundant and rare planktonic fungal communities along a eutrophication gradient present in the Beibu Gulf. The results showed that Dothideomycetes and Agaricomycetes were the predominant classes of abundant and rare fungi, respectively. We found that eutrophication significantly altered the planktonic fungal communities and affected the abundant taxa more than the rare taxa. The abundant and rare taxa were keystone members in the co-occurrence networks, and their interaction was enhanced with increasing nutrient concentrations. Stochastic processes dominated the community assembly of both abundant and rare planktonic fungi across the eutrophication gradient. Heterogeneous selection affected abundant taxa more than rare taxa, whereas homogenizing dispersal had a greater influence on rare taxa. Influences of environmental factors involving selection processes were detected, we found that abundant fungi were mainly influenced by carbon compounds, whereas rare taxa were simultaneously affected by carbon, nitrogen and phosphorus compounds in the Beibu Gulf. Overall, these findings highlight the distinct ecological adaptations of abundant and rare fungal communities to marine eutrophication.
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