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确定水质对黑龙江水体及鱼类肠道中微生物群落时空动态的调控作用。

Identification of the regulatory roles of water qualities on the spatio-temporal dynamics of microbiota communities in the water and fish guts in the Heilongjiang River.

作者信息

Jin Hongyu, Li Lei, Lu Wanqiao, Zhang Zepeng, Xing Yue, Wu Di

机构信息

Scientific Observing and Experimental Station of Fishery Resources and Environment in Heilongjiang River Basin, Ministry of Agriculture and Rural Affairs, Heilongjiang River Fishery Research Institute of Chinese Academy of Fishery Sciences, Harbin, China.

National Agricultural Experimental Station for Fishery Resources and Environment in Fuyuan, Harbin, China.

出版信息

Front Microbiol. 2024 Aug 21;15:1435360. doi: 10.3389/fmicb.2024.1435360. eCollection 2024.

Abstract

The Heilongjiang River is one of the largest rivers in the cool temperate zone and has an abundant fish source. To date, the microbiota community in water samples and fish guts from the Heilongjiang River is still unclear. In the present study, water samples and fish guts were collected from four locations of the Heilongjiang River during both the dry season and the wet season to analyze the spatio-temporal dynamics of microbiota communities in the water environment and fish guts through 16s ribosome RNA sequencing. The water qualities showed seasonal changes in which the pH value, dissolved oxygen, and total dissolved solids were generally higher during the dry season, and the water temperature was higher during the wet season. RDA indicated that higher pH values, dissolved oxygen, and total dissolved solids promoted the formation of microbiota communities in the water samples of the dry season, while higher water temperature positively regulated the formation of microbiota communities in the water samples of the wet season. LEFSe identified five biomarkers with the most abundant difference at the genus level, of which was upregulated in the water samples of the dry season, and , and were upregulated in the water samples of the wet season. Pearson analysis revealed that higher pH values and dissolved oxygen positively regulated the formation of and negatively regulated the formation of , and ( < 0.05), while higher water temperature had the opposite regulatory roles in the formation of these biomarkers. The relative abundance of microbiota diversity in fish guts varies greatly between different fish species, even if the fishes were collected from the same water source, indicating that dietary habits and fish species may be key factors, affecting the formation and construction of microbiome community in fish gut. , and were the main fish resources, which were collected and identified from at least six sample points. RDA indicated that the microbiota in the water environment regulated the formation of microbiota community in the guts of and and had limited regulated effects on and . The present study identified the regulatory effects of water qualities on the formation of microbiota communities in the water samples and fish guts, providing valuable evidence for the protection of fish resources in the Heilongjiang River.

摘要

黑龙江是寒温带最大的河流之一,鱼类资源丰富。迄今为止,黑龙江水样和鱼肠道中的微生物群落仍不清楚。在本研究中,在旱季和雨季从黑龙江四个地点采集水样和鱼肠道,通过16s核糖体RNA测序分析水环境和鱼肠道中微生物群落的时空动态。水质呈现季节性变化,其中pH值、溶解氧和总溶解固体在旱季一般较高,水温在雨季较高。冗余分析(RDA)表明,较高的pH值、溶解氧和总溶解固体促进了旱季水样中微生物群落的形成,而较高的水温对雨季水样中微生物群落的形成有正向调节作用。线性判别分析效应大小(LEFSe)在属水平上鉴定出五个差异最显著的生物标志物,其中在旱季水样中上调,而在雨季水样中上调。Pearson分析表明,较高的pH值和溶解氧对的形成有正向调节作用,对和的形成有负向调节作用(<0.05),而较高的水温对这些生物标志物的形成具有相反的调节作用。即使从同一水源采集鱼类,不同鱼类肠道中微生物多样性的相对丰度差异也很大,这表明饮食习惯和鱼类种类可能是影响鱼肠道微生物群落形成和构建的关键因素。、和是主要的鱼类资源,从至少六个采样点采集并鉴定。RDA表明,水环境中的微生物群调节了和肠道中微生物群落的形成,对和的调节作用有限。本研究确定了水质对水样和鱼肠道中微生物群落形成的调节作用,为保护黑龙江鱼类资源提供了有价值的证据。

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