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川西北高寒草甸土壤微生物生物量空间分布格局及影响因素

陈丹阳 王长庭 丁路明 廖小琴 乔福生 索南江才

土壤学报2025,Vol.62Issue(3):905-916,12.
土壤学报2025,Vol.62Issue(3):905-916,12.DOI:10.11766/trxb202401290049

川西北高寒草甸土壤微生物生物量空间分布格局及影响因素

Spatial Distribution Pattern of Soil Microbiota Stoichiometry and the Influencing Factors in the Northwest Sichuan Alpine Meadow

陈丹阳 1王长庭 1丁路明 1廖小琴 1乔福生 1索南江才2

作者信息

  • 1. 青藏高原高寒草地生态保护与利用四川林业草原重点实验室,西南民族大学草地资源学院,青藏高原研究院,成都 610041
  • 2. 澜沧江源园区国家公园管理委员会,西宁 810003
  • 折叠

摘要

Abstract

[Objective]As indicators reflecting soil fertility and biological activity,the soil microbial community plays key roles in global biogeochemical cycles by participating in litter decomposition and nutrient mineralization.The soil microbial biomass carbon(MBC),microbial biomass nitrogen(MBN),and microbial biomass phosphorus(MBP)are labile and available nutrients for plants,and important for maintaining ecosystem functions.However,there is still a lack of information on the spatial distribution of the soil microbial biomass and the potential key drivers affecting it in the alpine meadows of Northwest Sichuan Province.Therefore,the current study aims to investigate the spatial heterogeneity of soil microbial biomass in the alpine meadows of Northwest Sichuan and its influencing factors based on the Second Comprehensive Scientific Expedition to the Qinghai-Tibet Plateau project.[Method]The typical alpine meadows in Northwestern Sichuan were investigated in this study to determine soil MBC,MBN and MBP by chloroform fumigation method.Soil pH,water content,total carbon,total nitrogen and total phosphorous were also measured.[Result]The results showed that(1)The content of MBC and MBN showed a decreasing trend from South to North alpine meadow in the Northwest Sichuan Province.Conversely,the MBP content showed an increasing trend from South to North while the MBC:MBN ratio showed a decreasing trend from Northeast to Southwest.Nevertheless,the MBC:MBP ratio was more complex and showed an overall decreasing trend from South to North while the MBN:MBP ratio showed an increasing trend from West to East.(2)Random forest modeling results showed that mean annual temperature(MAT),mean annual precipitation(MAP),soil pH,and soil moisture(SMC)were important factors that positively affected soil microbial biomass and its stoichiometric ratio.The structural equation modeling(SEM)results further showed that soil pH and soil bulk density(BD)had direct negative effects on the changes of soil microbial carbon,nitrogen and phosphorous biomass whereas the stoichiometric ratio and soil total carbon(TC)had direct positive effects on them.MAT and MAP indirectly and negatively affected soil MBC,MBN,MBP,and the stoichiometric ratio,which was mainly attributed to the effects of MAT and MAP on soil physicochemical properties.Specifically,MAT and MAP increased both MBC and MBP mainly by lowering soil pH,and MAT also directly decreased TC,which increases MBN as well as decreased MBP.(3)Generally,the soil nutrients are limited in the alpine meadows of Northwest Sichuan Province,and showed the following trend:carbon>nitrogen>phosphorus.[Conclusion]Soil pH,BD,and TC had direct effects on the alteration of soil microbial biomass and its stoichiometric ratios in the alpine meadows of Northwest Sichuan Province,while MAT and MAP indirectly affected the soil microbial biomass and its stoichiometric ratios.In addition,the latitude and longitude showed effects on the spatial distribution pattern of nutrient limitation in the study area.

关键词

高寒草甸/微生物生物量/生态化学计量比/空间分布格局

Key words

Alpine grassland/Microbial biomass/Eco-stoichiometric ratios/Spatial distribution

分类

农业科技

引用本文复制引用

陈丹阳,王长庭,丁路明,廖小琴,乔福生,索南江才..川西北高寒草甸土壤微生物生物量空间分布格局及影响因素[J].土壤学报,2025,62(3):905-916,12.

基金项目

第二次青藏高原综合科学考察研究项目(2019QZKK0302-02)、国家自然科学基金重点项目(U20A2008)、西南民族大学青藏高原研究科技创新团队项目(2024CXTD01)资助Supported by the Research Project on the Second Comprehensive Scientific Expedition to the Qinghai-Tibet Plateau(No.2019QZKK0302-02),the Key Projects of the National Natural Science Foundation of China(No.U20A2008)and the Scientific and Technological Innovation Team for Qinghai-Tibet Plateau Research in Southwest Minzu University(No.2024CXTD01) (2019QZKK0302-02)

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