不同有机物料还田对白浆土土壤胞外酶活性的影响
Effects of different organic materials returning on extracellular enzyme activity in albic soil
投稿时间:2024-02-02  修订日期:2024-09-20
DOI:10.7606/j.issn.1000-7601.2024.05.20
中文关键词:  白浆土  有机物料  胞外酶活性  土壤微生物养分限制
英文关键词:Albic soil  Organic matter  Extracellular enzyme activity  Soil microbial nutrients limitation
基金项目:国家重点研发计划(2022YFD1500802);黑龙江省“揭榜挂帅”科技攻关项目(2021ZXJ05B03);现代农业产业技术体系建设专项资金资助项目(CARS-04)中国科学院战略性先导科技专项A类(XDA28070000);
作者单位邮编
高瑞敏 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 150081
严君* 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 150081
韩晓增 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 
陈旭 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 
邹文秀 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 
陆欣春 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 
许梦琪 东北林业大学 
杨舒纯 中国科学院东北地理与农业生态研究所黑土地保护与利用重点实验室 
蒋锐 北大荒集团八五二分公司农业技术推广中心 
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中文摘要:
      为探讨有机物料还田对白浆土土壤胞外酶活性的影响,本研究在白浆土地区进行了为期2年的定位试验,设置4个处理:常规对照处理(CK,无秸秆无有机肥添加)、秸秆还田处理(S)、有机肥还田处理(M)与秸秆搭配有机肥还田处理(SM)。结果表明:施用有机物料均增加土壤碳氮磷含量,但对C:N、C:P、N:P含量的化学计量比无显著影响。施用有机物料均显著增加土壤碳氮磷获取酶的活性,其中对土壤氮获取酶活性的增加最为显著,且以有机肥(M,SM)还田对土壤碳氮磷获取酶的提升效果优于秸秆(S)还田处理。胞外酶化学计量散点图表明,土壤微生物群落受到碳和磷的共同限制,而有机物料的投入可缓解土壤微生物群落受到的碳磷限制;此外,基于随机森林分析发现土壤速效磷、微生物生物量碳、氮、磷是影响土壤微生物碳磷限制指标的重要因素。本研究加深了我们对有机物料还田后白浆土胞外酶的化学计量特征与微生物群落资源需求的认识,为改良东北地区白浆土提供了新的思路与数据支持。
英文摘要:
      In order to explore the effect of organic materials returning on the extracellular enzyme activity of albic soil, a two-year positioning experiment was conducted in the albic soil area. Four treatments were set up : conventional control treatment ( CK, no straw and no organic fertilizer addition ), straw returning treatment ( S ), organic fertilizer returning treatment ( M ) and straw with organic fertilizer returning treatment ( SM ).The results showed that the application of organic materials increased the content of soil carbon, nitrogen and phosphorus, but had no significant effect on the stoichiometric ratio of C:N, C:P and N:P content. The application of organic materials significantly increased the activity of soil carbon, nitrogen and phosphorus acquisition enzymes, among which the increase of soil nitrogen acquisition enzyme activity was the most significant, and the effect of organic fertilizer ( M, SM ) returning on soil carbon, nitrogen and phosphorus acquisition enzymes was better than that of straw ( S ) returning. The stoichiometric scatter diagram of extracellular enzymes showed that the soil microbial community was limited by both carbon and phosphorus, and the input of organic materials could alleviate the carbon and phosphorus limitation of the soil microbial community. In addition, based on random forest analysis, it was found that soil available phosphorus, microbial biomass carbon, nitrogen and phosphorus were important factors affecting soil microbial carbon and phosphorus limitation indicators. This study deepened our understanding of the stoichiometric characteristics of extracellular enzymes and the demand of microbial community resources in albic soil after the return of organic materials to the field, and provided new ideas and data support for the improvement of albic soil in Northeast China.
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