Han Shuo, Wang Xia, Cheng Yao, Wu Guanqi, Dong Xiaoyi, He Xiangwei, Zhao Guozhu
College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.
National Engineering Research Center of Tree Breeding and Ecological Restoration, Beijing Forestry University, Beijing, China.
Front Plant Sci. 2023 Jan 17;13:1068527. doi: 10.3389/fpls.2022.1068527. eCollection 2022.
Poplar is a tree species with important production and application value. The symbiotic relationship between poplar and arbuscular mycorrhizal fungi (AMF) has a key role in ecosystem functioning. However, there remain questions concerning the seasonal dynamics of the AMF community in poplar roots, the relationship between AMF and the soil environment, and its ecological function.
Poplar roots and rhizosphere soil were sampled at the end of April and the end of October. The responses of AMF communities to season, host age, and host species were investigated; the soil environmental factors driving community changes were analyzed.
The diversity and species composition of the AMF community were higher in autumn than in spring. Season, host age, host species, and soil environmental factors affected the formation of the symbiotic mycorrhizal system and the AMF community. Differences in the communities could be explained by soil pH, total nitrogen, total phosphorus, total potassium, available potassium, and glomalin content.
The AMF community was sensitive to changes in soil physicochemical properties caused by seasonal dynamics, particularly total potassium. The change in the mycorrhizal symbiotic system was closely related to the growth and development of poplar trees.
杨树是一种具有重要生产和应用价值的树种。杨树与丛枝菌根真菌(AMF)之间的共生关系在生态系统功能中起着关键作用。然而,关于杨树根系中AMF群落的季节动态、AMF与土壤环境之间的关系及其生态功能,仍存在一些问题。
在四月底和十月底采集杨树根系和根际土壤。研究了AMF群落对季节、宿主年龄和宿主物种的响应;分析了驱动群落变化的土壤环境因素。
AMF群落的多样性和物种组成在秋季高于春季。季节、宿主年龄、宿主物种和土壤环境因素影响共生菌根系统和AMF群落的形成。群落差异可以用土壤pH值、总氮、总磷、总钾、速效钾和球囊霉素含量来解释。
AMF群落对季节动态引起的土壤理化性质变化敏感,尤其是总钾。菌根共生系统的变化与杨树的生长发育密切相关。