滇池表层沉积物甾醇空间分布特征及生态环境意义
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1.云南大学 生态与环境学院 高原湖泊生态与治理研究院 云南省河湖水系生态保护与资源利用重点实验室(筹);2.中国科学院南京地理与湖泊研究所 湖泊与流域水安全全国重点实验室

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基金项目:

国家自然科学基金项目(42361025,U2202207)、云南省基础研究专项(202301AU070191,202401AT070478)和兴滇英才支持计划(XDYC-QNRC-2023-0356)联合资助


Spatial Distribution and Sources of Sterols in Surface Sediments of Lake Dian
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Affiliation:

1.Yunnan Key Laboratory of Ecological Protection and Resource Utilization of River-lake Networks, Institute for Ecological Research and Pollution Control of Plateau Lakes, School of Ecology and Environmental Sciences, Yunnan University;2.Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences

Fund Project:

Supported by the National Natural Science Foundation of China (Grant Nos. 42361025, U2202207), the Yunnan Provincial Basic Research Program (Grant Nos. 202301AU070191, 202401AT070478), and the Xingdian Talent Support Program (Grant No. XDYC-QNRC-2023-0356).

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    摘要:

    滇池作为我国典型的高原淡水湖泊,近年来受人类活动和外源营养物质持续输入的影响,富营养化问题日益突出。甾醇作为沉积物中重要的有机分子标志物,能够有效指示有机物质的来源及受人类活动影响的程度。为探明滇池表层沉积物甾醇的组成特征及来源,本研究基于多点采样,系统分析了沉积物中甾醇类分子标志物、总有机碳(TOC)、总氮(TN)及C/N等地球化学指标的空间分布特征,并结合流域土地利用类型探讨其指示意义。结果表明,滇池表层沉积物有机质含量及C/N空间分布差异显著,草海区域受城市径流和河流汇入影响,有机质及C/N值均高于外海,且表现出西南高、东北低的空间分布格局,外海区域湖心深水区有机质含量和C/N值高于湖滨浅水区。甾醇分子标志物分析显示,C27型粪甾醇和差向异构粪甾醇主要分布于草海、外海东北部和南部,受生活污水输入影响显著;C27型胆固醇和二氢胆固醇在草海北部和外海南部含量较高,指示浮游生物的贡献;C28、C29型甾醇(菜油甾醇、豆甾醇、β-谷甾醇)在草海、外海中部和南部区域富集,指示高等植物甾醇来源,受农业活动影响显著;C30型甾醇(甲藻甾醇)在外海南部沉积物中含量最高,指示甲藻生物量,反映该区域甲藻植物初级生产力旺盛。本研究不仅揭示了滇池沉积物中内源、陆源及人源有机物的空间异质性,也为湖泊富营养化监测与污染源解析提供了有效工具。

    Abstract:

    Lake Dian, a typical plateau freshwater lake in China, has experienced increasingly severe eutrophication in recent years due to intensified human activities and continuous nutrient inputs. To elucidate the composition and sources of sterols in surface sediments of Lake Dian , this study conducted systematic multi-site sampling and analyzed the spatial distribution of sterol molecular markers, total organic carbon (TOC), total nitrogen (TN), and the C/N ratio, in conjunction with watershed land use patterns. The results revealed pronounced spatial heterogeneity in organic matter content and C/N ratios across the lake. The Caohai area, influenced by urban runoff and multiple river inflows, exhibited higher organic matter content and C/N values compared to Waihai, displaying a southwest-high, northeast-low gradient. In Waihai, deep central zones had greater organic matter content and C/N ratios than littoral shallow areas, forming a center-high, margin-low pattern. Sterol biomarker analysis indicated that C27 sterols (coprostanol, epicoprostanol, cholesterol, and cholestanol) were primarily enriched in Caohai and the northern and southeastern Waihai, reflecting significant inputs from domestic sewage and anthropogenic activities, C?? sterols, including coprostanol and epicoprostanol, were mainly distributed in Caohai, as well as in the northeastern and southern regions of Waihai, indicating strong influence from domestic sewage inputs. C28 and C29 sterols (campesterol, stigmasterol, and β-sitosterol) were enriched in Caohai as well as in the central and southern regions of Waihai,, indicating substantial higher plant inputs associated with intensive agricultural activity. C30 sterol (dinosterol) was notably elevated in the southern sediments, suggesting high dinoflagellate biomass. Overall, the integration of sterols with TOC, TN, C/N ratios, and land use analysis effectively reveals the spatial heterogeneity of autochthonous, allochthonous, and anthropogenic organic matter in Lake Dian sediments, providing a robust tool for eutrophication monitoring and pollution source apportionment in plateau lake systems.

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  • 收稿日期:2025-06-16
  • 最后修改日期:2026-04-04
  • 录用日期:2025-09-02
  • 在线发布日期: 2025-11-03
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