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黑龙江省农田养分循环与平衡状况的初步探讨 被引量:17
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作者 王英 《土壤通报》 CAS CSCD 北大核心 2002年第4期268-271,共4页
本文对黑龙江省 1977~ 1997年农田生态系统中氮、磷、钾三要素输入输出及其平衡状况、土壤养分变化状况进行了研究 ;分析了农田养分循环与平衡的变化趋势 。
关键词 黑龙江 农田养分循环 平衡状况 养分平衡
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我国典型地区农业生态系统养分循环和平衡研究 Ⅱ.农田养分收入参数 被引量:92
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作者 鲁如坤 刘鸿翔 +3 位作者 闻大中 钦绳武 郑剑英 王周琼 《土壤通报》 CAS CSCD 北大核心 1996年第4期151-154,共4页
本文研究了五个生态站地区农田养分循环的养分收入参数,包括有机肥养分含量,降雨带入的养分量,灌溉水带入的养分量,豆科作物共生固N量等。
关键词 农田养分循环 养分支出参数 农业生态系统
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Structure and functional heterogeneity of soil microbial communities in different farmland types on the Loess Plateau
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作者 XU Chen SU Cuicui +3 位作者 CHEN Yiping MA Jifu WU Junhua JIANG Yao 《地球环境学报》 CSCD 2024年第4期653-664,共12页
Background,aim,and scope Soil microbes are important drivers of nutrient transformation and energy f low.Reclaiming forest land for agricultural use may have profound effects on soil properties and microbial communiti... Background,aim,and scope Soil microbes are important drivers of nutrient transformation and energy f low.Reclaiming forest land for agricultural use may have profound effects on soil properties and microbial communities.However,the response of soil microbial communities to soil reclamation in the dryland agroecosystem is less understood.Therefore,it is necessary to investigate the changes of soil microbial communities driven by land use conversion to promote nutrient cycling in reclaimed farmland.Materials and methods Based on the metagenomic technique,we evaluated the microbial composition and function of the newly created farmland(NF)after reclamation with two types of traditional farmland(slope farmland(SF),checkdam farmland(CF))on the Loess Plateau,and explored the response of nutrient cycling function to dominant genera and soil properties.Results The results showed that Proteobacteria,Actinobacteria,and Acidobacteria were prevalent in the three types of farmlands.Compared with SF and CF,NF increased the relative abundance of Actinobacteria and Nocardioides,as well as genes related to amino acid metabolism and carbohydrate metabolism.The relative abundance of functional genes related to carbon and nitrogen cycling in the NF was higher than that in the traditional farmland(SF and CF).The relative abundance of nutrient cycling functional genes was positively correlated with dominant genera in the three types of farmlands.Except for pH,soil physicochemical factors were negatively correlated with genes related to amino acid metabolism and carbon cycle.Discussion Previous studies have shown that the nutrient conditions of the soil may intensify the competition between the eutrophic and oligotrophic microbial populations.After long-term cultivation and fertilization,the soil properties of traditional farmland were significantly different from those of NF,leading to the differentiation of dominant microbial groups.Microbes usually have functional redundancy to cope with changing environments.Soil microbes in traditional farmland may contain more genes related to replication and repair,cell growth and death,and environmental adaptation in response to disturbances caused by agricultural practices.On the contrary,the NF was less disturbed by agricultural activities,and the soil properties were more similar to forest land,so the carbon and nitrogen cycle function genes were more abundant.The nutrient cycling function was affected by the abundance of microbial dominant groups and soil properties,which may be related to the availability of soil nutrients and agricultural disturbance in different farmlands.Aspects of soil microbial-driven nutrient cycling in agriculture could be regulated in sustainable method.Conclusions The change from forest land to farmland kept more carbon and nitrogen cycling function in the newly created farmland,while long-term agricultural activities have drastically changed the functional structure of traditional farmland,resulting in the nutrient cycling function more concentrated to meet the needs of crop growth.Recommendations and perspectives Hence,it is necessary to apply sustainable agricultural method to regulate microbial-driven nutrient cycling.The insights are meaningful for sustainable agricultural development and land management in arid areas. 展开更多
关键词 METAGENOMICS microbial function FARMLAND nutrient cycling Loess Plateau
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