Is the response of plant root systems to precipitation primarily driven by the rhizosphere soil?
文献类型:期刊论文
作者 | Liu, Yanling1,2; Yan, Yan2![]() |
刊名 | ECOLOGICAL PROCESSES
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出版日期 | 2024-11-14 |
卷号 | 13期号:1页码:18 |
关键词 | Semi-arid alpine steppe Water variability Soil nutrient Microorganism Rhizosphere and bulk soil Root functional trait |
ISSN号 | 2192-1709 |
DOI | 10.1186/s13717-024-00554-0 |
英文摘要 | BackgroundChanges in precipitation alter soil moisture, thereby affecting the aboveground and belowground ecological processes. However, it remains unclear whether plant root systems alter these effects through rhizospheric processes. In this study, a precipitation control experiment was conducted in the alpine grassland of northern Tibet to simulate precipitation changes with a 50% decrease and 50% increase in precipitation. Nutrient and microbial biomass, root traits, and survival strategies in the rhizosphere and bulk soils of the dominant plant, Stipa purpurea, were analyzed for alterations under precipitation changes.ResultsIncreased precipitation (IP) significantly decreased the rhizosphere soil total phosphorus and bulk soil ammonium nitrogen and increased the rhizosphere soil total potassium. Decreasing precipitation (DP) significantly increased the rhizosphere soil total potassium and decreased the bulk soil total potassium. DP significantly reduced microbial biomass carbon, nitrogen and phosphorus in rhizosphere soil, while IP significantly increased the bulk soil MBC:MBP, soil C:P imbalance, and soil N:P imbalance. Along the PC1 axis, where the contribution of the traits was relatively large, it was possible to define the root economic spectrum. The root system of Stipa purpurea from the DP treatment was distributed on the conservative side of the economic spectrum, whereas that from the control and IP treatments were clustered on the acquisition side.ConclusionsIncreasing and decreasing precipitation mainly affected the contents of total phosphorus and total potassium in rhizosphere soil and the contents of ammonium nitrogen and total potassium in bulk soil of Stipa purpurea. The microbial biomass carbon, nitrogen and phosphorus were mainly affected by a decrease in precipitation. Decreasing precipitation significantly reduced microbial biomass carbon, nitrogen and phosphorus, but the rhizosphere MBC:MBN, MBC:MBP and MBN:MBP remained stable under the change of precipitation. Increasing precipitation exacerbated the C:P imbalance and N:P imbalance in bulk soil, and increased the demand for phosphorus by bulk microorganisms. Increased precipitation promoted root access to resources. The root system of Stipa purpurea in the context of precipitation changes was driven by rhizosphere nutrients and bulk microorganisms. This study is important for revealing plant-microbe-soil interactions in terrestrial ecosystems. |
WOS关键词 | ECONOMICS SPECTRUM ; MICROBIAL BIOMASS ; LOESS PLATEAU ; CARBON ; MOISTURE ; COMMUNITIES ; LEAF ; STOICHIOMETRY ; RESPIRATION ; HOMEOSTASIS |
资助项目 | Sichuan Province Science and Technology Support Program |
WOS研究方向 | Environmental Sciences & Ecology |
语种 | 英语 |
WOS记录号 | WOS:001355102600002 |
出版者 | SPRINGER |
资助机构 | Sichuan Province Science and Technology Support Program |
源URL | [http://ir.imde.ac.cn/handle/131551/58518] ![]() |
专题 | 成都山地灾害与环境研究所_山地表生过程与生态调控重点实验室 |
通讯作者 | Yan, Yan |
作者单位 | 1.Univ Chinese Acad Sci, 1 East Yanqi Lake Rd, Beijing 101408, Peoples R China 2.Chinese Acad Sci, Inst Mt Hazards & Environm, Key Lab Mt Surface Proc & Ecol Regulat, Tianfu New Area, 189 Qunxiannan St, Chengdu 610299, Sichuan, Peoples R China |
推荐引用方式 GB/T 7714 | Liu, Yanling,Yan, Yan,Chen, Jiuyun,et al. Is the response of plant root systems to precipitation primarily driven by the rhizosphere soil?[J]. ECOLOGICAL PROCESSES,2024,13(1):18. |
APA | Liu, Yanling,Yan, Yan,Chen, Jiuyun,&Lu, Xuyang.(2024).Is the response of plant root systems to precipitation primarily driven by the rhizosphere soil?.ECOLOGICAL PROCESSES,13(1),18. |
MLA | Liu, Yanling,et al."Is the response of plant root systems to precipitation primarily driven by the rhizosphere soil?".ECOLOGICAL PROCESSES 13.1(2024):18. |
入库方式: OAI收割
来源:成都山地灾害与环境研究所
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