外生菌根真菌对森林土壤有机质形成和分解影响的研究进展。

Q3 Environmental Science
Shu-Jie Yu, Rong Shen, Dun-Mei Lin
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引用次数: 0

摘要

外生菌根真菌(Ectomycorrhizal, EcM)是土壤真菌的重要功能类群之一,在土壤有机质(SOM)的形成、稳定和分解中起着至关重要的作用。本文综述了EcM真菌在森林中促进SOM形成、稳定和分解的主要过程和机制。植物将一部分光合产物分配给共生的EcM真菌,这些真菌以菌根渗出物或坏死块的形式进入土壤,参与SOM的形成,其活动促进土壤团聚体结构的形成和SOM的稳定。EcM真菌通过分泌胞外酶或驱动芬顿反应产生羟基自由基直接分解SOM。它们还通过增强腐养真菌的活性(启动效应)或抑制其活性(Gadgil效应)间接影响SOM的分解。EcM真菌在SOM形成中的作用的精确量化仍然不清楚。大多数现有的研究集中在欧洲和北美,但是方法上的差异使得很难整合跨区域的数据。未来的研究应采用标准化技术,促进跨区域合作研究。目前对EcM真菌在SOM分解中的作用的了解主要是基于少数实验室培养的菌种。未来的研究应包括更广泛的EcM真菌种类,并调查它们在自然环境中的作用,特别是在不同的土壤类型和森林群落中。此外,EcM真菌与腐养真菌的相互作用对SOM动力学有显著影响。未来的研究应深入探讨EcM真菌对气候、土壤和植被的响应,以更好地了解其在土壤碳循环中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research advances in the impacts of ectomycorrhizal fungi on the formation and decomposition of soil organic matter in forests.

Ectomycorrhizal (EcM) fungi are one of the important functional groups of soil fungi, playing a crucial role in the formation, stabilization, and decomposition of soil organic matter (SOM). We summarized the main processes and mechanisms by which EcM fungi contribute to SOM formation, stabilization, and decomposition in forests. Plants allocate a portion of photosynthetic products to symbiotic EcM fungi, which participate in SOM formation by importing them into the soil in the form of mycorrhizal exudates or necromass, whose activities promote the formation of soil aggregate structure and SOM stabilization. EcM fungi decompose SOM directly by secreting extracellular enzymes or by driving the Fenton reaction to generate hydroxyl radicals. They also influence SOM decomposition indirectly by enhancing the activity of saprotrophic fungi (priming effect) or inhibiting their activity (Gadgil effect). The precise quantification of EcM fungi's role in SOM formation remains unclear. Most available studies are concentrated in Europe and North America, but the difference in methodologies makes it difficult to integrate data across regions. Future research should adopt standardized techniques and promote cross-regional collaborative studies. Current understanding of EcM fungi's role in SOM decomposition is mainly based on a few laboratory-cultured species. Future studies should include a broader range of EcM fungal species and investigate their roles in natural environments, particularly in different soil types and forest communities. In addition, the interactions between EcM fungi and saprotrophic fungi have significant impacts on SOM dynamics. Future research should explore the responses of EcM fungi to climate, soil and vegetation in depth to better understand their role in soil carbon cycling.

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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
自引率
0.00%
发文量
11393
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