环境因子对艾比湖浮游植物群落结构的耦合效应

IF 2.3 2区 生物学 Q2 ECOLOGY
Huibo Wang, Le Wang, Xue Du, Xiaoli Huang, Chen Zhao, Zhongsi Gao, Tangbin Huo
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引用次数: 0

摘要

研究环境因子对浮游植物群落结构的耦合效应,可以加深我们对极端环境下水生生态系统稳定性的认识。本研究对2019年春、夏、秋三季咸水湖浮游植物群落结构及环境因子进行了研究。艾比湖共鉴定出浮游植物95种,隶属于7门47属,物种丰富度低于淡水湖,但高于其他咸水湖。浮游植物组合以硅藻为主,绿藻和蓝藻次之,其他藻类种类多样性较低,表明物种组成与其他咸水湖相似。浮游植物群落结构具有明显的时空差异,生物量具有明显的季节变化特征。春季硅藻生物量占主导地位;夏季,随着气候变暖,浮游植物生物量达到峰值,绿藻生物量占主导地位;秋季生物量最低,绿藻和硅藻共同占优势;空间分布较为一致,体现在浮游植物的四季分布上,湖东南区总体生物量高于其他湖区。硅藻和绿藻与水体透明度(SD)显著相关;蓝藻与水温(WT)呈显著相关,隐藻与pH呈显著相关。pH、SD、叶绿素-a (Chl-a)、氨氮(NH4+-N)、盐度(S)等环境因子的交互作用共同影响艾比湖湖浮游植物群落结构动态。本研究探讨了理化因素对高盐度湖泊浮游植物群落结构的影响,为极端环境下水生生态系统的生态保护和环境管理提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Coupling Effects of Environmental Factors on the Phytoplankton Community Structure in Ebinur Lake, a Saltwater Lake in China

Coupling Effects of Environmental Factors on the Phytoplankton Community Structure in Ebinur Lake, a Saltwater Lake in China

Studying the coupled effects of environmental factors on the structure of phytoplankton communities can deepen our understanding of the stability of aquatic ecosystems in extreme environments. This study examined the phytoplankton community structure and environmental factors of saline a lake during spring, summer, and autumn in 2019. A total of 95 phytoplankton species (belonging to 47 genera and 7 phyla) were identified in Ebinur Lake, reflecting a species richness lower than those of freshwater lakes while being greater than the levels observed in other saltwater lakes. Bacillariophyta dominated the phytoplankton assemblage, followed by Chlorophyta and Cyanophyta, with lesser diversity in other algal species, suggesting that the species composition was similar to that observed in other saltwater lakes. There was considerable spatiotemporal variation in the structure of the phytoplankton community, with the biomass of phytoplankton displaying notable seasonal variation. In spring, the biomass of Bacillariophyta was dominant; in summer, as the climate warmed, the biomass of phytoplankton reached its peak and the biomass of Chlorophyta was dominant; in autumn, the biomass was the lowest, and Chlorophyta and Bacillariophyta shared dominance. The spatial distribution was relatively consistent, as reflected in the distribution of phytoplankton in the three seasons, with the southeastern area of the lake generally exhibiting higher biomass than other lake areas. Bacillariophyta and Chlorophyta were significantly correlated with water transparency (SD); Cyanophyta was significantly correlated with water temperature (WT), and Cryptophyta was significantly correlated with pH. The interaction effects of various environmental factors, including pH, SD, Chlorophyll-a (Chl-a), ammonia nitrogen (NH4+-N), and salinity (S), jointly affect the dynamics of the phytoplankton community structure in Ebinur Lake. This study investigated the effects of physicochemical factors on the structure of the phytoplankton community in a high salinity lake, thereby providing a basis for ecological protection and environmental management of aquatic ecosystems in extreme environments.

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来源期刊
CiteScore
4.40
自引率
3.80%
发文量
1027
审稿时长
3-6 weeks
期刊介绍: Ecology and Evolution is the peer reviewed journal for rapid dissemination of research in all areas of ecology, evolution and conservation science. The journal gives priority to quality research reports, theoretical or empirical, that develop our understanding of organisms and their diversity, interactions between them, and the natural environment. Ecology and Evolution gives prompt and equal consideration to papers reporting theoretical, experimental, applied and descriptive work in terrestrial and aquatic environments. The journal will consider submissions across taxa in areas including but not limited to micro and macro ecological and evolutionary processes, characteristics of and interactions between individuals, populations, communities and the environment, physiological responses to environmental change, population genetics and phylogenetics, relatedness and kin selection, life histories, systematics and taxonomy, conservation genetics, extinction, speciation, adaption, behaviour, biodiversity, species abundance, macroecology, population and ecosystem dynamics, and conservation policy.
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