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环境 DNA 宏条形码揭示了环境选择对亚热带河流浮游植物群落结构的影响。

Environmental DNA metabarcoding reveals the effect of environmental selection on phytoplankton community structure along a subtropical river.

机构信息

The Key Laboratory of Water and Air Pollution Control of Guangdong Province, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, No. 18 Ruihe Road, Guangzhou, 510530, China.

Research Center of Hydrobiology, Department of Ecology, Jinan University, Guangzhou, 510632, China.

出版信息

Environ Res. 2024 Feb 15;243:117708. doi: 10.1016/j.envres.2023.117708. Epub 2023 Nov 21.

Abstract

The Dongjiang River, a major tributary of the Pearl River system that supplies water to more than 40 million people in Guangdong Province and neighboring regions of China, harbors rich biodiversity, including many endemic and endangered species. However, human activities such as urbanization, agriculture, and industrialization have posed serious threats to its water quality and biodiversity. To assess the status and drivers of phytoplankton diversity, which is a key indicator of aquatic ecosystem health, this study used Environmental DNA (eDNA) metabarcoding combined with machine learning methods to explore spatial variations in the composition and structure of phytoplankton communities along the Dongjiang River, including its estuary. The results showed that phytoplankton diversity exhibited spatial distribution patterns, with higher community structure similarity and lower network complexity in the upstream than in the downstream regions. Environmental selection was the main mechanism shaping phytoplankton community composition, with natural factors driving the dominance of Pyrrophyta, Ochrophyta, and Cryptophyta in the upstream regions and estuaries. In contrast, the downstream regions was influenced by high concentrations of pollutants, resulting in increased abundance of Cryptophyta. The random forest model identified temperature, dissolved oxygen, chlorophyll a, NO, and NH as the main factors influencing the primary phytoplankton communities and could be used to predict changes during wet periods. This study provides valuable insights into the factors influencing phytoplankton diversity and community composition in the Dongjiang River, and demonstrates the application value of eDNA metabarcoding technique in large-scale, long-distance river biodiversity monitoring.

摘要

东江是珠江水系的一条主要支流,为广东省及中国周边地区的 4000 多万人提供水源,拥有丰富的生物多样性,包括许多特有和濒危物种。然而,城市化、农业和工业化等人类活动对其水质和生物多样性构成了严重威胁。为了评估浮游植物多样性的现状和驱动因素,浮游植物多样性是水生生态系统健康的关键指标之一,本研究采用环境 DNA(eDNA)宏条形码结合机器学习方法,探讨了东江及其河口沿程浮游植物群落组成和结构的空间变化。结果表明,浮游植物多样性呈现出空间分布格局,上游地区的群落结构相似性较高,网络复杂性较低。环境选择是塑造浮游植物群落组成的主要机制,自然因素驱动着甲藻、黄藻和隐藻在上游地区和河口的优势地位。相比之下,下游地区受到高浓度污染物的影响,导致隐藻丰度增加。随机森林模型确定了温度、溶解氧、叶绿素 a、NO 和 NH 是影响主要浮游植物群落的主要因素,可用于预测湿期的变化。本研究为东江浮游植物多样性和群落组成的影响因素提供了有价值的见解,并展示了 eDNA 宏条形码技术在大规模、长距离河流生物多样性监测中的应用价值。

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