Xu Guangjian, Yang Eun Jin, Xu Henglong
Laboratory of Microbial Ecology, Ocean University of China, Qingdao 266003, China; Division of Polar Ocean and Environment Research, Korea Polar Research Institute, Incheon 406-840, Republic of Korea.
Division of Polar Ocean and Environment Research, Korea Polar Research Institute, Incheon 406-840, Republic of Korea.
Mar Pollut Bull. 2017 Aug 15;121(1-2):400-403. doi: 10.1016/j.marpolbul.2017.06.012. Epub 2017 Jun 16.
Trophic-functional groupings are an important biological trait to summarize community structure in functional space. The heterogeneity of the tropic-functional pattern of protozoan communities and its environmental drivers were studied in coastal waters of the Yellow Sea during a 1-year cycle. Samples were collected using the glass slide method at four stations within a water pollution gradient. A second-stage matrix-based analysis was used to summarize spatial variation in the annual pattern of the functional structure. A clustering analysis revealed significant variability in the trophic-functional pattern among the four stations during the 1-year cycle. The heterogeneity in the trophic-functional pattern of the communities was significantly related to changes in environmental variables, particularly ammonium-nitrogen and nitrates, alone or in combination with dissolved oxygen. These results suggest that the heterogeneity in annual patterns of protozoan trophic-functional structure may reflect water quality status in coastal ecosystems.
营养功能分组是在功能空间中总结群落结构的重要生物学特征。在黄海沿岸水域进行了为期1年的周期研究,以探讨原生动物群落营养功能模式的异质性及其环境驱动因素。采用载玻片法在水污染梯度内的四个站点采集样本。使用基于二阶矩阵的分析方法来总结功能结构年度模式的空间变化。聚类分析表明,在1年的周期内,四个站点之间的营养功能模式存在显著差异。群落营养功能模式的异质性与环境变量的变化显著相关,特别是铵态氮和硝酸盐,单独或与溶解氧结合。这些结果表明,原生动物营养功能结构年度模式的异质性可能反映了沿海生态系统的水质状况。