我国微生物肥料产业需求与技术创新
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Development demand and technical innovation for bio-fertilizer industry in China
  • 作者:李俊 ; 姜昕 ; 马鸣超 ; 关大伟 ; 曹凤明 ; 李力
  • 英文作者:LI Jun;JIANG Xin;MA Ming-chao;GUAN Da-wei;CAO Feng-ming;LI Li;Institute of Agricultural Resources and Regional Planning,Chinese Academy of Agricultural Sciences,Laboratory of Quality & Safety Risk Assessment for Microbial Products,Ministry of Agriculture and Rural Affairs;
  • 关键词:微生物肥料 ; 产业需求 ; 技术创新
  • 英文关键词:bio-fertilizer;;development demand;;technical innovation
  • 中文刊名:TRFL
  • 英文刊名:Soil and Fertilizer Sciences in China
  • 机构:中国农业科学院农业资源与农业区划研究所农业农村部微生物产品质量安全风险评估实验室(北京);
  • 出版日期:2019-03-22 09:09
  • 出版单位:中国土壤与肥料
  • 年:2019
  • 期:No.280
  • 基金:国家质量基础的共性技术研究与应用重点专项(2016YFF-0201801);; 大豆产业技术体系岗位科学家(nycytx-004);; 国家农产品质量安全风险评估项目(GJFP201901202)
  • 语种:中文;
  • 页:TRFL201902001
  • 页数:5
  • CN:02
  • ISSN:11-5498/S
  • 分类号:7-11
摘要
在国家绿色农业发展和乡村振兴计划等战略中,微生物肥料均被列为绿色新型投入品和优先支持发展的生物制品,必将在新时代迎来更好的发展机遇。本文在分析我国微生物肥料行业现状与标准体系特点基础上,阐述了微生物肥料具备的多功能、主动响应、信号调控、绿色环保等方面特征,提出了下一步发展的技术创新与新产品名录。
        According to the report of "Rural Vitalization Strategy",bio-fertilizers were listed as new biological products in sustainable agriculture and enjoyed the priority supports of the Chinese government,which would promote rapid industry development and achieve important progress. In this paper,based on the development status and standard system of biofertilizers in China,the characteristics of multi-function,positive response,signal regulation,and environmental protection of bio-fertilizer were analyzed,and a list of new technologies and new products was declared.
引文
[1]李俊,沈德龙,林先贵.农业微生物研究与产业化进展[M].北京:科学出版社,2011.3-6.
    [2]马鸣超,姜昕,曹凤明,等.我国生物有机肥质量安全风险分析及其对策建议[J].农产品质量与安全,2017,(5):44-48.
    [3]中华人民共和国中央人民政府国务院.国务院关于印发生物产业发展规划的通知[Z/OL].http://www.gov.cn/zwgk/2013-01-06/content_2305639.htm.
    [4]中华人民共和国农业部.农业部关于印发《到2020年化肥使用量零增长行动方案》和《到2020年农药使用量零增长行动方案》的通知[Z/OL].http://www.moa.gov.cn/zwllm/tzgg/tz/201503/t20150318_4444765.htm.
    [5]农业部微生物肥料和食用菌菌种质量监督检验测试中心.登记产品[EB/OL].[2018-12-03].http://www.biofertilizer95.cn.
    [6]马鸣超,姜昕,曹凤明,等.微生物肥料产品质量安全风险因子识别及现状评价[J].农产品质量与安全,2016,(5):8-12.
    [7]GB 20287-2006,农用微生物菌剂[S].
    [8]NY 884-2012,生物有机肥[S].
    [9]NY/T 798-2015,复合微生物肥料[S].
    [10]GB/T 19524.1-2004,肥料中粪大肠菌群值的测定[S].
    [11]GB/T 19524.2-2004,肥料中蛔虫卵死亡率的测定[S].
    [12]NY/T 1113-2006,微生物肥料术语[S].
    [13]NY 885-2004,农用微生物产品标识要求[S].
    [14]NY/T 1109-2017,微生物肥料生物安全通用技术准则[S].
    [15]NY 882-2004,硅酸盐细菌菌种[S].
    [16]NY/T 1735-2009,根瘤菌生产菌株质量评价技术规范[S].
    [17]NY/T 1847-2010,微生物肥料生产菌株质量评价通用技术要求[S].
    [18]NY/T 3083-2017,农用微生物浓缩制剂[S].
    [19]NY 609-2002,有机物料腐熟剂[S].
    [20]NY/T 2066-2011,微生物肥料生产菌株鉴别——PCR方法[S].
    [21]NY/T 883-2004,农用微生物菌剂生产技术规程[S].
    [22]NY/T 1114-2006,微生物肥料实验用培养基技术条件[S].
    [23]NY/T 1536-2007,微生物肥料田间试验技术规程及肥效评价指南[S].
    [24]NY/T 1535-2007,微生物肥料使用准则[S].
    [25]NY/T 1736-2009,微生物肥料菌种鉴定技术规范[S].
    [26]NY/T 2321-2013,微生物肥料产品检验技术规程[S].
    [27]NY/T 2722-2015,秸秆腐熟菌剂腐解效果评价技术规程[S].
    [28]Yuan Q,Druzhinina I S,Pan X,et al.Microbially mediated plant salt tolerance and microbiome-based solutions for saline agriculture[J].Biotechnology Advances,2016,34(7):1245-1259.
    [29]Sahoo R K,Ansari M W,Dangar T K,et al.Phenotypic and molecular characterisation of efficient nitrogen-fixing Azotobacter strains from rice fields for crop improvement[J].Protoplasma,2014,251:511-523.
    [30]Shanware A S,Kalkar S A,Trivedi M M.Potassium solublisers:Occurrence,mechanism and their role as competent biofertilizers[J].Int J Curr Microbiol App Sci,2014,(3):622-629.
    [31]Poel B V D,Straeten D V D.1-aminocyclopropane-1-carboxylic acid(ACC)in plants:more than just the precursor of ethylene[J].Frontiers in Plant Science,2014,5:640-651.
    [32]Ruzzi M,Aroca R.Plant growth-promoting rhizobacteria act as biostimulants in horticulture[J].Scientia Horticulturae,2015,196:124-134.
    [33]Nayaka S,Vidyasagar G M.Development of eco-friendly biofertilizer using feather compost[J].Annals of Plant Sciences,2013,2(7):238-244.
    [34]Indumathi D.Microbial conversion of vegetable wastes for biofertilizer production[J].Journal of Biotechnology and Biochemistry,2017,3(2):43-47.
    [35]Attia M A,Guibali A H E,Shaban K A,et al.Influence of applied biofertilizer on productivity,quality and nutrients content of some soybean cultivars under saline soil conditions[J].J Soil Sci and Agric Eng,2014,5(12):1647-1666.
    [36]Itelima J U,Bang W J,Sila M D,et al.A review:BiofertilizerA key player in enhancing soil fertility and crop productivity[J].Microbiol Biotechnol Rep,2018,2(1):22-28.
    [37]Naveed M,Hussain M B,Zahir Z A,et al.Drought stress amelioration in wheat through inoculation with Burkholderia phytofirmans strain PsJN[J].Plant Growth Regul,2014,73:121-131.
    [38]Baum C,El-Tohamy W,Gruda N.Increasing the productivity and product quality of vegetable crops using arbuscular mycorrhizal fungi:A review[J].Scientia Horticulturae,2015,187:131-141.
    [39]Etesami H,Maheshwari D K.Use of plant growth promoting rhizobacteria(PGPRs)with multiple plant growth promoting traits in stress agriculture:Action mechanisms and future prospects[J].Ecotoxicol Environ Saf,2018,156:225-246.
    [40]Mbarki S,CerdàA,Brestic M,et al.Vineyard compost supplemented with Trichoderma harzianum T78 improve saline soil quality[J].Land Degradation&Development,2017,28(3):961-972.
    [41]Sandhya V,Ali S Z.The production of exopolysaccharide by Pseudomonas putida,GAP-P45 under various abiotic stress conditions and its role in soil aggregation[J].Microbiology,2015,84(4):512-519.
    [42]Ann R.Microbes can help feed the world[R].Washington,D C:American Academy of Microbiology Colloquium,2012.
    [43]West S A,Griffin A S,Gardner A,et al.Social evolution theory for microorganisms[J].Nat Rev Microbiol,2006,4:597-607.
    [44]Strassmann J E,Gilbert O M,Queller D C.Kin discrimination and cooperation in microbes[J].Annu Rev Microbiol,2011,65:349-367.
    [45]Griffin A S,West S A,Buckling A.Cooperation and competition in pathogenic bacteria[J].Nature,2004,430:1024-1027.
    [46]Ma M C,Jiang X,Wang Q F,et al.Isolation and identification of PGPR strain and its effect on soybean growth and soil bacterial community composition[J].International Journal of Agriculture&Biology,2018,20:1289-1297.
    [47]中华人民共和国农业农村部.农业农村部关于印发《农业绿色发展技术导则(2018—2030年)》的通知[Z/OL].[2018-07-02].http://www.moa.gov.cn/govpublic/KJJYS/201807/t20180706_6153629.htm.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700