云南程海水体硅藻响应环境胁迫的季节模式
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1.楚雄师范学院资源环境与化学学院;2.云南师范大学地理学部

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国家自然科学基金项目(42171072)、云南省科技计划项目(202302AP370001)、云南省地方高校联合专项-青年项目(202101BA070001-262)联合资助.


Seasonal patterns of diatom response to environmental stress in Chenghai lake, Yunnan
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1.School of Resources,Environment and Chemistry,Chuxiong Normal University;2.Provincial Key Laboratory of Plateau Geographical Processes and Environmental Change,Faculty of Geography,Yunnan Normal University

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    摘要:

    在全球气候变化与人类活动影响的背景下,湖泊生物群落和生态系统结构演替特征显著,其中硅藻已成为指示湖泊环境变化的重要指标之一。本研究以程海这一天然封闭型深水型湖泊为对象,通过对湖泊敞水区4个采样点进行为期 1 年的隔月分层采样,探究水环境与硅藻群落结构及物种多样性的季节变化模式,评估湖泊水体碱度、富营养水平、水温等关键因子的驱动作用。水化学结果显示,程海目前为磷限制湖泊,水体pH值常年在9以上且在冬季高于其他季节;叶绿素浓度(Chl-a)与水体溶解氧(DO)表现出与pH同步变化的季节模式。群落特征上,共鉴定出21属122个硅藻物种,硅藻群落结构在季节尺度上呈现浮游-底栖功能群转换的适应性策略,空间分布上表现出较高的均质性特征。群落结构具有季节性的显著差异,其中1 – 5月浮游种占优,7 – 9月底栖/附生种占优,11月浮游种与底栖种共同占优;空间分布上,各采样点优势种及其相对丰度基本一致。冗余分析结果表明,水温(~31%)是驱动硅藻优势物种季节变化的关键环境因子,电导率(13.7%)、营养盐(6.1%)等环境梯度亦协同促使了其硅藻物种组合的季节演替,同时深水湖泊热力分层的季节变化可能通过影响水体混合强度影响藻类生长。硅藻物种丰富度随水深的增加降低,且季节上表现出明显的差异性(夏秋季节多样性最高);空间尺度上,受到趋同的水环境条件的影响,样点间的硅藻多样性并无显著差异。硅藻多样性的时空变化受温度、水深、营养盐等多环境因子交互作用影响明显。因此,本研究为封闭性湖泊的生态系统评价和多样性保护提供针对性的科学依据,并为未来气候变化下低纬高原深水型湖泊的有效保护提供数据支撑。

    Abstract:

    Under the dual pressures of global climate change and anthropogenic activities, significant shifts have been observed in the succession characteristics of lake biological communities and ecosystem structures, with diatoms emerging as one of the key indicators for assessing lake environmental changes. This study focuses on Chenghai Lake, a natural closed deep-water lake, investigating seasonal patterns in water environment, diatom community structure, and biodiversity through bi-monthly stratified sampling at four open-water stations over one year. The research evaluates the driving roles of key factors such as lake water alkalinity, eutrophication levels, and water temperature. Hydrochemical results reveal that Chenghai Lake is currently a phosphorus-limited system, with water pH consistently exceeding 9 annually and peaking in winter. Chlorophyll-a (Chl-a) and dissolved oxygen (DO) exhibit seasonal dynamics synchronous with pH fluctuations. 122 diatom species belonging to 21 genera were identified. The diatom community demonstrates a seasonal adaptive strategy of functional group shift between planktonic and benthic forms, alongside high spatial homogeneity in distribution. Seasonal differences in community structure were significant: planktonic species dominated from January to May, benthic/epiphytic species prevailed from July to September, and both groups co-dominated in November. Spatially, dominant species and their relative abundances remained consistent across sampling sites. Redundancy analysis (RDA) revealed that water temperature (~31%) is the primary environmental driver of seasonal shifts in dominant diatom species, with environmental gradients including conductivity (13.7%) and nutrients (6.1%) synergistically facilitating seasonal succession. Meanwhile, seasonal variation in thermal stratification intensity of deep lakes might influence algal growth by regulating water mixing intensity. Diatom species richness decreased with increasing water depth and exhibited significant seasonal differences (with the highest diversity in summer and autumn). Spatially, diatom diversity showed no significant differences among sampling sites due to convergent aquatic environmental conditions. The spatiotemporal variation in diatom diversity was significantly influenced by interactive effects of multiple environmental factors including temperature, water depth, and nutrients. This study provides targeted scientific insights for ecosystem evaluation and biodiversity conservation in closed lakes, offering data support for the effective protection of low-latitude plateau deep-water lakes under future climate change scenarios.

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  • 收稿日期:2025-04-10
  • 最后修改日期:2025-07-04
  • 录用日期:2025-07-07
  • 在线发布日期: 2025-09-22
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