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Environmental factors and stochasticity affect the fungal community structures in the water and sediments of Hulun Lake, China

乳糜菌纲 生态学 生物扩散 生物 群落结构 内转录区 沉积物 生态系统 子囊菌纲 栖息地 核糖体RNA 人口 生物化学 古生物学 遗传学 人口学 社会学 细菌 基因
作者
Yongquan Shang,Xiaoyang Wu,Xibao Wang,Huashan Dou,Qinguo Wei,Shengchao Ma,Guolei Sun,Lidong Wang,Weilai Sha,Honghai Zhang
出处
期刊:Ecology and Evolution [Wiley]
卷期号:12 (11) 被引量:8
标识
DOI:10.1002/ece3.9510
摘要

Abstract Aquatic fungi form both morphologically and ecologically diverse communities. However, lake ecosystems are frequently overlooked as fungal habitats, despite the potentially important role of fungi in matter cycling and energy flow. Hulun Lake is a typical example of a seasonal glacial lake; however, previous studies have only focused on bacteria in this ecosystem. Therefore, in the current study, internal transcribed spacer ribosomal RNA (ITS rRNA) gene high‐throughput sequencing was used to investigate the fungal communities in paired water and sediment samples from the Hulun Lake Basin in China. A significant difference was found between the fungal communities of the two sample types. Across all samples, we identified nine phyla, 30 classes, 78 orders, 177 families, and 307 genera. The dominant phyla in the lake were Ascomycota, Basidiomycota and Chytridiomycota. Our results show that both water and sediments have very high connectivity, are dominated by positive interactions, and have similar interaction patterns. The fungal community structures were found to be significantly affected by environmental factors (temperature, chemical oxygen demand, electrical conductivity, total phosphorus, and pH). In addition, the dispersal limitations of the fungi affected the structure of the fungal communities, and it was revealed that stochasticity is more important than deterministic mechanisms in influencing the structure and function of fungal communities. This study provides unique theoretical support for the study of seasonally frozen lake fungal communities and a scientific basis for the future management and protection of Hulun Lake.

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