The influence of agricultural management practices on microbial functions and networks in biological soil crusts
The influence of agricultural management practices on microbial functions and networks in biological soil crusts
批准号:
321601720
负责人:
Dr. Stefanie Schulz
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2016
资助国家:
德国
项目状态:
已结题
起止时间:
2015-12-31 至 2017-12-31
中文摘要
随着世界人口的不断增加,据估计,到2050年粮食产量必须翻一番。因此,需要在可持续管理系统的基础上提高作物产量。耕地及其连通性多样性高。在德国,耕地评估等级(Ackerzahl)显示的值从100(高度肥沃)到不到30(极低肥沃)。特别是低Ackerzahl的土壤,由于其不利的质地,容易受到侵蚀。在这些土壤中,无植被期生物结皮(BSC)的形成有利于作物生长。这是由于平衡计分卡的关键功能是氮和碳的固定和周转以及EPS的排泄,从而增加了其直接附近的土壤养分含量和土壤稳定性。鉴于平衡计分卡对土壤性质的积极影响,有必要了解土地利用管理对低肥力农田平衡计分卡建立及其功能的影响。因此,该项目的目的是分析BSC中的微生物组成和功能,该试验最初的评估等级很低(25-30)。在多因素设计中,将分析氮肥、有机肥和耕作制度对微生物EPS产量的影响,EPS产量与有机肥的碳输入和微生物氮周转密切相关,而微生物氮周转又受添加的矿物肥料量的影响。此外,分析将集中在细菌,古细菌和真菌的关键参与者和网络。例如,真菌和细菌之间的良好合作可能会改善细菌通过真菌公路向地下区域的运输。为了评估细菌、古细菌和真菌的总体丰度和网络组成的变化,将通过定量实时PCR对不同处理的BSC样品进行定量,并使用MiSeq技术进行表征。为了描述所涉及的微生物关键参与者的功能,将应用宏基因组方法,特别关注氮和外多糖(EPS)的周转。获得的分子数据将与土壤化学分析和EPS的组成联系起来。
英文摘要
As the world population is continuously increasing, it is estimated that food production must be doubled by the year 2050. Therefore, an increase in crop yield connected with a sustainable management system is needed. The diversity of arable land and their connected characteristics is high. In Germany the arable assessment rating (Ackerzahl) revealed values from 100 (highly fertile) to less than 30 (very low fertility). Especially soils with a low Ackerzahl are prone to erosion due to their unfavourable texture. In those soils the establishment of biological soil crusts (BSC) during the vegetation free period displays an advantage for crop growth. This is due to the key functions of BSC, which are the fixation and turnover of nitrogen and carbon and the excretion of EPS, which increase soil nutrient content and soil stability in their direct vicinity. Due to those positive effects of BSC on soil properties, there is a need to understand the impact of land use management on the establishment and functioning of BSC in low fertility agricultural fields. Therefore, it is the aim of this project to analyse the microbial composition and function in BSC from an arable field trial with an initially very low assessment rating (25-30). In a multifactorial design the influence of nitrogen fertilization, organic fertilization and tillage regime will be analysed with respect to the microbial EPS production, which is strongly connected to C input by organic fertilization and microbial nitrogen turnover, which in turn is affected by the amount of added mineral fertilizer. Furthermore, the analyses will focus on bacterial, archaeal and fungal key players and networks. As for example a good collaboration between fungi and bacteria might improve the transport of bacteria to subsoil areas via fungal highways. To assess changes in the overall bacterial, archaeal and fungal abundance and network composition BSC samples from the different treatments will be quantified by quantitative real-time PCR and characterised by using the MiSeq technology. To characterise the functions of the involved microbial key players a metagenomic approach will be applied with a special focus on nitrogen and exopolysaccharide (EPS) turnover. The obtained molecular data will be connected with soil chemical analyses and the composition of EPS.
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会议论文
国内基金
海外基金
黄土高原半城镇化农民非农生计可持续性及农地流转和生态效应
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批准号:41171449
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项目类别:面上项目
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资助金额:60.0万元
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批准年份:2011
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负责人:徐勇
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依托单位: