Chan Ya-Fan, Chung Chih-Ching, Gong Gwo-Ching, Lin I-Jung, Hsu Ching-Wei
Department of Microbiology, Soochow University, Taipei 11101, Taiwan.
Institute of Marine Environment and Ecology, National Taiwan Ocean University, 2 Pei-Ning Road, Keelung 20224, Taiwan.
Biology (Basel). 2023 Nov 13;12(11):1424. doi: 10.3390/biology12111424.
The nutrient-scarce, warm, and high-salinity Kuroshio current has a profound impact on both the marine ecology of the northwestern Pacific Ocean and the global climate. This study aims to reveal the seasonal dynamics of picoplankton in the subtropical Kuroshio current. Our results showed that one of the picocyanobacteria, , mainly distributed in the surface water layer regardless of seasonal changes, and the cell abundance ranged from 10 to 10 cells mL. In contrast, the maximum concentration of the other picocyanobacteria, , was maintained at more than 10 cells mL throughout the year. In the summer and the autumn, were mainly concentrated at the water layer near the bottom of the euphotic zone. They were evenly distributed in the euphotic zone in the spring and winter. The stirring effect caused by the monsoon determined their distribution in the water column. In addition, the results of 16S rRNA gene diversity analysis showed that the seasonal changes in the relative abundance of and in the surface water of each station accounted for 20 to 40% of the total reads. The clade II of and the High-light II of were the dominant strains in the waters all year round. Regarding other picoplankton, and occupied 45% and 10% of the total picoplankton in the four seasons. These data should be helpful for elucidating the impacts of global climate changes on marine ecology and biogeochemical cycles in the Western Boundary Currents in the future.
营养匮乏、温暖且高盐的黑潮对西北太平洋的海洋生态和全球气候都有着深远影响。本研究旨在揭示亚热带黑潮中微微型浮游生物的季节动态。我们的结果表明,其中一种蓝细菌, ,无论季节变化,主要分布在表层水层,细胞丰度范围为10至10个细胞/毫升。相比之下,另一种蓝细菌 的最大浓度全年维持在10个细胞/毫升以上。在夏季和秋季, 主要集中在真光层底部附近的水层。它们在春季和冬季均匀分布在真光层中。季风引起的搅动作用决定了它们在水柱中的分布。此外,16S rRNA基因多样性分析结果表明,各站位表层水中 和 的相对丰度的季节变化占总读数的20%至40%。 的进化枝II和 的高光II全年都是水域中的优势菌株。关于其他微微型浮游生物, 和 在四个季节中分别占微微型浮游生物总数的45%和10%。这些数据应有助于阐明未来全球气候变化对西边界流海洋生态和生物地球化学循环的影响。