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引用本文:刘宪洁,王业迪,袁涌铨,李才文,宋书群.山东近海分粒级叶绿素a的时空格局及其成因分析[J].海洋科学,2025,49(10):39-51.
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山东近海分粒级叶绿素a的时空格局及其成因分析
刘宪洁1,2, 王业迪1,2, 袁涌铨1,2,3, 李才文1,2,3, 宋书群1,2,3
1.中国科学院海洋研究所中国科学院海洋生态与环境科学重点实验室, 山东 青岛 266071;2.中国科学院大学 北京 100049;3.青岛海洋科技中心海洋生态与环境科学功能实验室, 山东 青岛 266237
摘要:
浮游植物是海洋生态系统的基础环节, 不同粒径的浮游植物在光合效率与生产力、营养盐利用策略、生物地球化学循环以及对气候变化的响应等方面存在差异。系统探查山东近海分粒级叶绿素a的时空格局及其成因, 可为深入解析目标海区生态系统的结构与功能提供重要依据。为此, 本研究基于2022—2023年开展的3次现场调查, 刻画了山东近海叶绿素a的时空分布和粒级组成, 并分析了其与理化因子和贝藻养殖的关系。结果表明: 山东近海叶绿素a在夏季最高, 质量浓度平均为2.94±3.23μg/L, 总体呈近岸高、远岸低的分布特征, 高值区分布在莱州湾、荣成-乳山和青岛-日照近海, 丰富的溶解无机氮支撑了浮游植物的高生物量; 浮游植物粒级组成存在显著的季节差异, 春季以微型和微微型浮游植物为主, 夏季小型和微微型浮游植物占优, 冬季微型浮游植物占比最高, 其次是小型浮游植物; 浮游植物粒级结构及时空格局除了受温度、浊度和营养盐等理化因子的影响, 滤食性贝类的选择性摄食和海带的营养竞争也会改变浮游植物粒级结构。以上研究结果为研究山东近海生态系统结构和功能, 加强生态环境保护, 提供了基础数据和科学参考。
关键词:  叶绿素a  粒级结构  时空格局  山东近海
DOI:10.11759/hykx20250403001
分类号:Q948.8
基金项目:崂山实验室科技创新项目(2021QNLM040001-5); 国家重点研发计划(2023YFD2401102)
Spatiotemporal distribution patterns of size-fractionated chlorophyll a and its cause analysis in coastal waters of Shandong
LIU Xianjie1,2, WANG Yedi1,2, YUAN Yongquan1,2,3, LI Caiwen1,2,3, SONG Shuqun1,2,3
1.CAS Key Laboratory of Marine Ecology and Environmental Sciences, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China;2.University of Chinese Academy of Sciences, Beijing 100049, China;3.Marine Ecology and Environmental Science Laboratory, Qingdao Marine Science and Technology Center, Qingdao 266237, China
Abstract:
Phytoplankton are fundamental components of marine ecosystems, with variations in particle size influencing their photosynthetic efficiency and productivity, nutrient utilization strategies, biogeochemical cycles, and responses to climate change. Herein, we performed a systematic investigation of the spatiotemporal patterns of size-fractionated chlorophyll a and their underlying causes in the coastal waters of Shandong. The results provided critical insights into the structural and functional dynamics of this regional ecosystem. Based on three marine surveys conducted between 2022 and 2023, the spatiotemporal distribution and size composition of chlorophyll a in Shandong’s coastal waters were delineated, and their relationships with physicochemical factors and shellfish-algae aquaculture were analyzed. Results indicated that chlorophyll a concentrations peaked during summer (average 2.94±3.23 μg/L), exhibiting a general nearshore-high and offshore-low distribution pattern. Furthermore, elevated levels were observed in Laizhou Bay, Rongcheng-Rushan, and Qingdao-Rizhao coastal areas, where abundant nitrogen supported high phytoplankton biomass. Moreover, substantial seasonal variations in phytoplankton size composition were identified, where micro- and picophytoplankton dominated in spring; nano- and picophytoplankton prevailed in summer, and during winter, the largest proportion comprised microphytoplankton, followed by nanophytoplankton. Beyond the influence of temperature, turbidity, and nutrients on the phytoplankton size structure and spatiotemporal patterns, selective feeding by filter-feeding bivalves and competition with kelp cultivation were identified as modifying factors of the phytoplankton size spectrum. These findings provide valuable data and scientific references for future ecosystem studies and better ecological conservation in Shandong’s coastal waters.
Key words:  chlorophyll a  size structure  spatiotemporal distribution pattern  coastal waters of Shandong
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