Shenzhen Institute of Guangdong Ocean University, Shenzhen, 518108, Guangdong, PR China.
College of Food Science and Technology, Modern Biochemistry Experimental Center, Guangdong Ocean University, Zhanjiang, 518088, Guangdong, PR China.
Ecotoxicology. 2021 Oct;30(8):1644-1651. doi: 10.1007/s10646-020-02341-x. Epub 2021 Jan 16.
Eukaryotic microorganisms are ubiquitous in the marine environment, and have a wide variety of ecosystem functions. Shenzhen is one of the most developed cities in South China, but the eukaryotic communities in the water along its coastlines remain poorly understood. The study applied 18S rRNA gene ITS (internal transcribed spacer) sequencing to identify the eukaryotic community from twenty sites of Shenzhen coast water. The alpha-diversity of the samples between these sites were significantly different, and the seawater of eastern coast had higher alpha-diversity compared to that of the western coast. The abundance of Chlorophyta was notably higher in the seawater of western coast, but Picozoa was relatively depleted. Specifically, Cryptocaryon, Pseudovorticella, and Cyclotella were significantly higher in the water of western coast, while Guinardia, Minutocellus, and Amoebophrya were increased in eastern samples. The spatially variations of eukaryotic microorganism community in the seawater of Shenzhen coast were associated with the water quality. The results have important significance for the understanding of coastal eukaryotic community, their interaction network, and build a foundation for future management and protection of coastal water quality.
真核微生物在海洋环境中无处不在,具有广泛的生态系统功能。深圳是中国南方最发达的城市之一,但人们对其沿海水域的真核生物群落仍知之甚少。本研究采用 18S rRNA 基因 ITS(内部转录间隔区)测序技术,从深圳沿海 20 个地点的水样中鉴定出真核生物群落。这些地点之间的样本 alpha 多样性有显著差异,与西部海岸相比,东部海岸的海水具有更高的 alpha 多样性。西部海岸海水中绿藻的丰度明显较高,但微微型浮游动物相对较少。具体而言,西部海岸水中的 Cryptocaryon、Pseudovorticella 和 Cyclotella 明显较高,而东部水样中的 Guinardia、Minutocellus 和 Amoebophrya 则增加。深圳沿海海水真核微生物群落的空间变化与水质有关。本研究结果对了解沿海真核生物群落及其相互作用网络具有重要意义,为未来沿海水质的管理和保护奠定了基础。