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植物根际优良促生菌(PGPR)筛选及其接种剂部分替代化肥对玉米生长影响研究 被引量:36

Screening of plant growth promoting rhizobacteria strains and effects of inoculant on growth of maize by replacing part of chemical fertilizers
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摘要 通过测定植物根际促生菌株固氮酶活性、溶磷量、分泌植物生长素、对病原菌的拮抗作用及菌株生长速度,筛选出了5株具有较好促生特性的优良菌株。利用筛选的优良菌株研制复合接种剂,并于2009年和2010年进行田试,测定其部分替代化肥对玉米生长的影响。结果表明:利用筛选的优良促生菌研制的复合微生物接种剂符合《微生物肥料》NY227-94标准。施用接种剂替代20%~30%的化肥,玉米株高、地上植物量、穗长、穗粗、单位面积穗数、穗粒数和经济产量等均有提高。研制的微生物接种剂(菌肥+80%化肥),2010年大田推广使用,玉米增产9.86%,减少化肥投入、增产收入及直接经济效益分别为620.1元.hm-2、2 291.4元.hm-2和2 851.5元.hm-2。 Five potential plant growth promoting rhizobacteria(PGPR) strains were screened based on their properties of phosphate dissolving,nitrogenase activity,3-indoleacetic acid(IAA) secreting,antagonism of pathogens and growth rate,and the rhizosphere inoculant was produced by mixing these strains.A field experiment was conducted in 2009 and 2020 to investigate the effects of the inoculant on growth of maize by replacing part of chemical fertilizers.The results showed that the quality of the composite microbial inoculant complied with the standard of Microbiological Fertilizer of China(NY227-94).By applying the inoculant to replace 20%~30% of chemical fertilizers,the plant height,above-ground biomass,ear length,ear diameter,ear number per unit area, grain number per ear and economic yield of maize were all raised.In the demonstrative fields in 2010,the inoculant treatment(inoculant + 80% fertilizer) could increase maize yield by 9.86%,reduce cost by 620.1 yuan·hm-2,increase income by 2 291.4 yuan·hm-2,and increase direct economic benefit by 2 851.5 yuan·hm-2.
出处 《干旱地区农业研究》 CSCD 北大核心 2013年第2期59-65,共7页 Agricultural Research in the Arid Areas
基金 国家科技支撑计划(2007BAD89B17 2012BAD14B10) 国家自然基金(30960265)
关键词 促生菌(PGPR) 接种剂 玉米 植物量 经济产量 plant growth promoting rhizobacteria(PGPR) inoculant maize biomass economic yield
作者简介 荣良燕(1983-),女,甘肃兰州人,在读博士生,研究方向为草地生物多样性。 通信作者:姚拓(1968-),男,教授,博士生导师,研究方向为草业科学及生物多样性。E-mail:yaotuo@gsau.edu.cn。
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  • 1赵其国,孙波,张桃林.土壤质量与持续环境 Ⅰ.土壤质量的定义及评价方法[J].土壤,1997,29(3):113-120. 被引量:295
  • 2Banchio E, Bogino P C, Zygadlo J, et al. Plant growth promoting rhi- zobacteria improve growth and essential oil yield in Origanum majorana L. Biochem[ J]. Syst. Ecol., 2005,36:766-771.
  • 3Bardas G A, Lagopodi A L, Kadoglidou K, et al. Biological control of three Colletotrichum lindemuthianum races using Pseudomonas chloro- raphis PCL1391 and Pseudomonas fluorescens WCS365 [ J ]. Biol. Control, 2009,49:139-145.
  • 4Esitken A, Yildiz H E, Ercisli S, et al. Effects of plant growth pro-rooting bacteria (PGPB) on yield, growth and nutrient contents of or- ganically grown strawberry [ J ]. Sci. Hortic - Amsterdam, 2010, 124 : 62-66.
  • 5Kumar S, Pandey P, Maheshwari D K. Reduction in dose of chemical fertilizers and growth enhancement of sesame ( Sesamum indicum L. ) with application of rhizospheric competent Pseudomonas aernginosa LES4[J]. Eur. J. Soil biol., 2009,45:334-340.
  • 6LIU Hui WU Xiao-Qin REN Jia-Hong YE Jian-Ren.Isolation and Identification of Phosphobacteria in PoplarRhizosphere from Different Regions of China[J].Pedosphere,2011,21(1):90-97. 被引量:22
  • 7Oliveira C A, Alves V M C, Marriel I E. Phosphate solubilizing mi- croorganisms isolated from rhizosphere of maize cultivated in an Oxisol of the Brazilian Cerrado Biome [ J ]. Soil Biol. Biochern., 2009,41 : 1782-1787.
  • 8YAO T, YASMIN S, HAFEEZ F Y. Potential role of rhizobacteria isolated from Northwestern China for enhancing wheat and oat yield [J]. The Journal of Agricultural Science, 2008,146:49-56.
  • 9姚拓,龙瑞军,王刚,胡自治.兰州地区盐碱地小麦根际联合固氮菌分离及部分特性研究[J].土壤学报,2004,41(3):444-448. 被引量:74
  • 10姚拓,张德罡,胡自治.高寒地区燕麦根际联合固氮菌研究 Ι固氮菌分离及鉴定[J].草业学报,2004,13(2):106-111. 被引量:66

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