Wei Liman, Zhao Qiong, Chen Xiangyu, Sun Qingye, Zhang Xiang, Chen Yongjing
School of Resources and Environmental Engineering, Anhui University, Hefei, Anhui, China.
Agricultural Sensors and Intelligent Perception Technology Innovation Center of Anhui Province, Zhongke Hefei Institutes of Collaborative Research and Innovation for Intelligent Agriculture, Hefei, China.
Front Plant Sci. 2023 Jul 13;14:1181184. doi: 10.3389/fpls.2023.1181184. eCollection 2023.
Algae exert great impact on soil formation and biogeochemical cycling. However, there is no full understanding of the response of soil algal community structure to the seasonal fluctuations in temperature and moisture and changes of soil physicochemical properties across different forests. Here, based on 23S rRNA gene sequencing, we analyzed soil algal community structure in four different forest plantations in two seasons and examined soil physiochemical properties. The results showed the significantly seasonal variation in soil algal community structure, with the higher overall diversity in summer than in winter. In addition, there existed significant correlations between soil algae (species composition, relative abundance, diversity index) and physicochemical properties (pH, total phosphorus, organic matter and nitrate nitrogen), suggesting that edaphic characteristics are also largely responsible for the variation in soil algal community. Nevertheless, the seasonal variation in algal community structure was greater than the variation across different forest plantations. This suggest temperature and moisture are more important than soil physicochemical properties in determining soil algal community structure. The findings of the present study enhance our understanding of the algal communities in forest ecosystems and are of great significance for the management and protection of algal ecosystem.
藻类对土壤形成和生物地球化学循环具有重大影响。然而,对于不同森林中土壤藻类群落结构对温度和湿度季节性波动以及土壤理化性质变化的响应,目前尚未有全面的认识。在此,基于23S rRNA基因测序,我们分析了两个季节中四个不同人工林的土壤藻类群落结构,并检测了土壤理化性质。结果表明,土壤藻类群落结构存在显著的季节性变化,夏季的总体多样性高于冬季。此外,土壤藻类(物种组成、相对丰度、多样性指数)与理化性质(pH值、总磷、有机质和硝态氮)之间存在显著相关性,这表明土壤特性在很大程度上也导致了土壤藻类群落的变化。尽管如此,藻类群落结构的季节性变化大于不同人工林之间的变化。这表明温度和湿度在决定土壤藻类群落结构方面比土壤理化性质更为重要。本研究结果增进了我们对森林生态系统中藻类群落的理解,对藻类生态系统的管理和保护具有重要意义。