Spatial and seasonal dynamics of zooplankton functional groups and their relationship with environmental factors in urban rivers in Haikou City, China

IF 2 4区 环境科学与生态学 Q2 LIMNOLOGY
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Abstract

The urban rivers, including Changwang, Meishe, and Wuyuan in Haikou City, China, are vital water resources. Despite the rivers experiencing anthropogenic impacts, limited studies have investigated their water quality and ecological community structure. This study assessed zooplankton functional groups' spatial and seasonal dynamics relative to environmental factors in the three urban rivers. The samples were collected and analyzed seasonally between March and December 2019. The environmental factors varied significantly at spatial and seasonal scales (p < 0.05). Meishe and Wuyuan Rivers had higher electrical conductivity, salinity, TN, and TP than Changwang, which had low turbidity. Seasonally, higher TP, TN, NH3-N, and CODMn levels were found in the spring, while summer and autumn experienced high temperatures. Additionally, spring and summer had high Chl-a levels. Likewise, spring had the lowest heavy metal concentrations, while nearly all metals were elevated in winter and summer. Generally, the average metal content followed the order of Mn > Zn > Cu > Ni > As > Cr > Co > Pb > Cd. The environmental parameters were within class III of the China standard for surface waters (GB 3838–2002), suggesting negligible pollution. This study identified 159 zooplankton species, including 62 Rotifers, 50 Protozoans, 31 Cladocerans, and 16 Copepods. They were classified into 11 functional groups, dominated by Rotifers filter feeders (RF), Rotifers carnivores (RC), and small copepods and cladocerans filter feeders (SCF), followed by Middle copepods and cladocera carnivores (MCC) and Middle copepods and cladocerans filter feeders (MCF). Analysis of similarity (ANOSIM) revealed seasonal differences (p < 0.001) in zooplankton functional groups, with RF and RC most dominant in summer, autumn, and winter, while SCF, MCF, and MCC were dominant in spring. Hence, the redundancy analysis (RDA) and Pearson Correlation analysis revealed that temperature, Chl-a, TP, salinity, CODMn, NH3-N, TN, As, Co, and Cd were the main environmental factors influencing zooplankton functional groups. This study helps understand urban rivers' water quality and ecological community structure, bridging the knowledge gap. The findings are essential for water quality monitoring and management.

中国海口市城市河流浮游动物功能群的空间和季节动态及其与环境因素的关系
中国海口市的昌旺河、美舍河和五源河等城市河流是重要的水资源。尽管这些河流受到人类活动的影响,但对其水质和生态群落结构的研究却十分有限。本研究评估了这三条城市河流中浮游动物功能群与环境因素的空间和季节动态关系。样本于 2019 年 3 月至 12 月期间按季节采集并分析。环境因子在空间和季节尺度上存在显著差异(p <0.05)。梅畲河和五源河的电导率、盐度、TN 和 TP 均高于浊度较低的长望河。从季节上看,春季 TP、TN、NH3-N 和 CODMn 含量较高,而夏秋季气温较高。此外,春季和夏季的 Chl-a 含量较高。同样,春季的重金属含量最低,而冬季和夏季几乎所有金属含量都很高。一般来说,平均金属含量依次为锰、锌、铜、镍、砷、铬、钴、铅、镉。这些环境参数均符合中国地表水环境标准(GB 3838-2002)中的 III 类标准,表明污染程度可以忽略不计。本研究鉴定了 159 种浮游动物,包括 62 种轮虫、50 种原生动物、31 种桡足类和 16 种桡足类。它们被分为 11 个功能组,主要是轮虫滤食者(RF)、轮虫肉食者(RC)、小型桡足类和桡足类滤食者(SCF),其次是中型桡足类和桡足类肉食者(MCC)以及中型桡足类和桡足类滤食者(MCF)。相似性分析(ANOSIM)显示浮游动物功能群的季节性差异(p < 0.001),RF 和 RC 在夏季、秋季和冬季最主要,而 SCF、MCF 和 MCC 在春季最主要。因此,冗余分析(RDA)和皮尔逊相关分析表明,温度、Chl-a、TP、盐度、CODMn、NH3-N、TN、As、Co 和 Cd 是影响浮游动物功能群的主要环境因子。这项研究有助于了解城市河流的水质和生态群落结构,填补了知识空白。研究结果对水质监测和管理至关重要。
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来源期刊
Limnologica
Limnologica 环境科学-湖沼学
CiteScore
3.70
自引率
5.90%
发文量
64
审稿时长
3 months
期刊介绍: Limnologica is a primary journal for limnologists, aquatic ecologists, freshwater biologists, restoration ecologists and ecotoxicologists working with freshwater habitats.
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