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首页> 外文期刊>Applied and Environmental Microbiology >Comparison of the Seasonal Variations of Synechococcus Assemblage Structures in Estuarine Waters and Coastal Waters of Hong Kong
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Comparison of the Seasonal Variations of Synechococcus Assemblage Structures in Estuarine Waters and Coastal Waters of Hong Kong

机译:香港河口水域和沿海水域球菌球菌组装结构季节性变化的比较

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Seasonal variation in the phylogenetic composition of Synechococcus assemblages in estuarine and coastal waters of Hong Kong was examined through pyrosequencing of the rpoC1 gene. Sixteen samples were collected in 2009 from two stations representing estuarine and ocean-influenced coastal waters, respectively. Synechococcus abundance in coastal waters gradually increased from 3.6 × 103 cells ml?1 in March, reaching a peak value of 5.7 × 105 cells ml?1 in July, and then gradually decreased to 9.3 × 103 cells ml?1 in December. The changes in Synechococcus abundance in estuarine waters followed a pattern similar to that in coastal waters, whereas its composition shifted from being dominated by phycoerythrin-rich (PE-type) strains in winter to phycocyanin-only (PC-type) strains in summer owing to the increase in freshwater discharge from the Pearl River and higher water temperature. The high abundance of PC-type Synechococcus was composed of subcluster 5.2 marine Synechococcus, freshwater Synechococcus (F-PC), and Cyanobium. The Synechococcus assemblage in the coastal waters, on the other hand, was dominated by marine PE-type Synechococcus, with subcluster 5.1 clades II and VI as the major lineages from April to September, when the summer monsoon prevailed. Besides these two clades, clade III cooccurred with clade V at relatively high abundance in summer. During winter, the Synechococcus assemblage compositions at the two sites were similar and were dominated by subcluster 5.1 clades II and IX and an undescribed clade (represented by Synechococcus sp. strain miyav). Clade IX Synechococcus was a relatively ubiquitous PE-type Synechococcus found at both sites, and our study demonstrates that some strains of the clade have the ability to deal with large variation of salinity in subtropical estuarine environments. Our study suggests that changes in seawater temperature and salinity caused by the seasonal variation of monsoonal forcing are two major determinants of the community composition and abundance of Synechococcus assemblages in Hong Kong waters.
机译:通过对rpoC1基因进行焦磷酸测序,研究了香港河口和沿海水域中球菌的系统发育组成的季节性变化。 2009年,分别从分别代表河口和受海洋影响的沿海水域的两个站点收集了16个样本。沿海水域的球菌丰度从3月的3.6×103细胞ml?1逐渐增加,到7月达到5.7×105细胞ml?1的峰值,然后在12月逐渐下降到9.3×103细胞ml?1。河口水域中球菌的丰度变化遵循与沿海水域相似的模式,而其组成则从冬季的富含藻红蛋白(PE型)菌株转变为夏季仅含藻蓝蛋白(PC型)菌株。珠江淡水排放量增加和水温升高。 PC型聚球菌高丰度由5.2亚群海洋聚球菌,淡水聚球菌(F-PC)和蓝藻组成。另一方面,沿海水域的球菌群主要是海洋PE型的球菌,从4月到9月(夏季风盛行),亚群5.1和II类和VI类是主要的血统。除了这两个进化枝以外,在夏天,进化枝III与进化枝V也同时发生。在冬季,这两个地点的集球藻球菌组合物组成相似,并且以亚群5.1进化枝II和IX和一个未描述的进化枝(以Synchococcus sp。miiyav代表)为主。进化枝IX Synechococcus是在这两个站点发现的相对普遍的PE型聚合球菌,我们的研究表明,进化枝的某些菌株具有应对亚热带河口环境中盐度变化较大的能力。我们的研究表明,季风强迫的季节性变化引起的海水温度和盐度的变化是香港水域中球菌群组成和丰富度的两个主要决定因素。

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