|Table of Contents|

Research Progress in Biocontrol of Plant Microbial Diseases by Bacillus and Pseudomonas

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2021年02
Page:
131-136
Research Field:
Publishing date:

Info

Title:
Research Progress in Biocontrol of Plant Microbial Diseases by Bacillus and Pseudomonas
Author(s):
GAO Yun
(Gansu Medical College,Pingliang,Gansu 744000)
Keywords:
plant microbial diseasesBacillus biocontrolPseudomonas aeruginosa biocontrol
PACS:
-
DOI:
10.11937/bfyy.20200678
Abstract:
Plant microbial diseases can lead to reduced production,while mycotoxins remain in crops,posing a huge threat to crop production.Due to the gradual formation of drug resistance and residual pollution,the way to control plant microbial diseases by using chemical pesticides was very limited,and the methods of microbial control have attracted the attention of many researchers.In this study,the species of biocontrol bacteria of Bacillus and Pseudomonas,the research status of antagonistic plant diseases,the research of genetic engineering technology of biocontrol bacteria and the research prospect of antagonistic plant diseases were reviewed.

References:

[1]黄曦,许兰兰,黄荣韶.枯草芽孢杆菌在抑制植物病原菌中的研究进展[J].生物技术通报,2010(1):24-29.[2]谯天敏,朱天辉.绿粘帚霉与坚强芽孢杆菌对松赤枯病生物防治的研究[D].雅安:四川农业大学,2004.[3]周亚妮.浅谈枯草杆菌的特性及其应用[J].黔南民族医专学报,2010,23(2):84-88.[4]PAUL E A,CLARK F E.土壤微生物学与生物化学[M].顾宗濂,等译.北京:科学技术文献出版社,1993.[5]FENG T Y.Bacillus thuringieusis biotechnology and Environmental benefits[M].Taipei:Hua Shiang Yuan Press,1995.[6]FERREIM.Biological control of Eutypa lata on grapevine by an antibiotic strain on Bacillus subtilis[J].Phytopatholopy,1991,81(3):283-287.[7]AVID M W.Biological control of soil borne plant pathogens in the rhizosphere with bacteria[J].Ann Rev Phytoathol,1988,26:695-706.[8]梅汝鸿.植物微生态学的研究[J].世界农业,1991(7):22-23.[9]张凯.枯草芽孢杆菌Bs-208制剂保护剂研究[D].武汉:华中农业大学,2007.[10]章挺.枯草芽孢杆菌B-FS06对黄曲霉的抑制及活性物质的研究[D].南京:南京师范大学,2007.[11]李晶,杨谦,赵丽华.生防枯草芽孢杆菌B29菌株抗菌物质的初步研究[J].中国生物工程杂志,2008,28(2):59-65.[12]贾凤安,陈亮,陈立.大棚甜瓜三种主要真菌病害拮抗细菌的筛选与鉴定[J].植物保护学报,2010,37(6):505-510.[13]熊艳,张晓喻,李敏.一株抗多种植物病害菌株的筛选、鉴定及其活性成分研究[J].西南农业学报,2011,24(2):589-593.[14]ZHANG H,ZHANG F,LI Z.Gene analysis,optimized production and property of marine lipase from Bacillus pumilus B106 associated with South China Sea sponge Halichondria rugose[J].World Journal of Microbiology and Biotechnology,2009,25(7):1267-1274.[15]曹小红.Bacillus natto TK-1产脂肽的纯化、抑菌活性及其表面活性剂特性[J].中国生物工程杂志,2008,28(1):44-48.[16]GUIZZARDI M,PRATELLA G.Biological control of gray mold in pears by antagonistic bacteria[J].Biological Control,1996,7(1):30-37.[17]高学文,姚仕义,HUONG P,等.基因工程枯草芽孢杆菌GEB3产生的脂肽类抗生素及其生物活性研究[J].中国农业科学,2003,36(12):1496-1501.[18]王益民.几丁质酶基因和β-1,3-葡聚糖酶基因的克隆及双价基因在枯草芽孢杆菌B-908中的表达[J].植物病理学报,1998,28(3):288.[19]NAKANO M M,ZUBER P.Molecular biology of antibiotic production in Bacilllus[J].Cretical Reviews in Biotechnology,1990,10(3):223-240.[20]LEE G W,KO J A,OH B T,et a1.Biological control of postharvest diseases of apples、peaches and nectarines by Bacillus subtilis S16 isolated from halophytes,rhizosphere[J].Biocontrol Science and Technology,2012,22(3):351-361.[21]HUANG X,ZHANG N,YONG X,et a1.Bioeontrol of Rhizoctonia solani damping off disease in cucumber with Bacillus pumilus SQR-N43[J].Microbiological Research,2012,167(3):135-143.[22]王兰英,廖凤仙,骆焱平.九里香内生细菌HBS-1的鉴定及其对芒果采后病害的防效[J].江苏农业学报,2012,28(1):41-45.[23]杨振,郭红莲,张晓松.枯草芽孢杆菌BS-331防治油桃采后病害的研究[J].中国果树,2008(6):35-38.[24]YU X M,AI C X,XIN L,et a1.The siderophore-producing bacterium,Bacillus subtilis CASl5,has a biocontrol effect on Fusarium wilt and promotes the growth of pepper[J].European Journal of Soil Biology,2011,47(2):138-145.[25]CAVAGLIERI L,PASSONE A,ETCHEVERRY M.Screening procedures for selecting rhizobacteria with biocontrol effects upon Fusarium vertieillioides growth and fnmonisin B1 production[J].Research in Microbiology,2004,155(9):747-754.[26]BAIS H P,FALL R,VIVANCO J M.Biocontrol of Bacillus subtilis against infection of arabidopsis roots by Pseudomonas syringe is facilitated by biofilm formation and surfaetin production[J].Plant Physiology,2004,134(1):307-319.[27]ALVINDIA D G,NATSUAKI K T.Biocontrol activities of Bacillus amylolique Jaciens DGAl4 isolated from banana fruit surface against banana crown rot causing pathogens[J].Crop Protection,2009,28(3):236-242.[28]KILDEA S,RANSBOTYN V,KHAN M R,et a1.Bacillus megaterium shows potential for the biocontrol of septoria tritici blotch of wheat[J].Biological Control,2008,47(1):37-45.[29]LEE J P,LEE S,KIM C S,et a1.Evaluation of formulations of Bacillus licheniformis for the biological control of tomato gray mold caused by Botrytls cinema[J].Biological Control,2006,37(3):329-337.[30]BARGABUS R L,ZIDACK N K,SHERWOOD J E,et al.Characterisation of systemicresistance in sugar beet elicited by a non-pathogenic,phyllosphere colonizing Bacillus mycoides,biological control agent[J].Physiological and Molecular Plant Pathology,2002,61(5):289-298.[31]朱昌雄,孙东园,蒋细良.我国微生物农药产业化标准及产业化对策研究[J].现代化工,2004,24(3):6-10.[32]朱昌雄,蒋细良,孙东园,等.中国青年农业科学学术年报[M].北京:中国农业出版社,2002.[33]朱昌雄.微生物农药及其产业化[M].北京:科学出版社,2000.[34]LAURSEN J B,NIELSEN J.Phenazine natural products:Biosynthesis,synthetic analogues,and biological activity[J].Chem Rev,2004,104:1663-1686.[35]THOMASHOW L S,WELLER D M,BONSALL R F,et al.Production of the antibiotic phenazine-1-carboxylic acid by fluorescent Pseudomonas species in the rhizosphere of wheat[J].Applied and Environmental Microbiology,1990,56(4):908-912.[36]PIERSON L S,THOMASHOW L S.Cloning and heterologous expression of the phenazine biosynthetic locus from Pseudomonas aureofaciens 30-84[J].Molecular Plant-Microbe Interactions,1992,5(4):330-339.[37]LIU H M,HE Y J,JIANG H X,et al.Characterization of aphenazine-producing strain Pseudomonas chlororaphis GP72 with broad-spectrum antifungal activity from green pepper rhizosphere[J].Current Microbiology,2007,54(4):302-306.[38]ANJAIAH V,KOEDAM N,NOWAK-THOMPSON B,et al.Involvement of phenazines and anthranilate in the antagonism of Pseudomonas aeruginosa PNA1 and Tn5 derivatives toward Fusarium spp.and Pythium spp.[J].Molecular Plant-Microbe Interactions,1998,11(9):847-854.[39]TAMBONG J T,HOFTE M.Phenazines are involved in biocontrol of Pythium myriotylum on cocoyam by Pseudomonas aeruginosa PNA1[J].European Journal of Plant Pathology,2001,107(5):511-521.[40]周莲,蒋海霞,金凯明,等.高产申嗪霉素和吩嗪-1-酰胺的水稻根际铜绿假单胞菌PA1201分离、鉴定与应用潜力[J].微生物学报,2015,55(4):401-411.[41]WU D Q,YE J,OU H Y,et al.Genomic analysis and temperature-dependent transcriptome profiles of the rhizosphere originating strain Pseudomonas aeruginosa M18[J].BMC Genomics,2011,12:438.[42]LEE J Y,MOON S S,HWANG B K.Isolation and in vitro and in vivo activity against Phytophthora capsici and Colletotrichum orbiculare of phenazine-1-carboxylic acid from Pseudomonas aeruginosa strain GC-B26[J].Pest Management Science,2003,59(8):872-882.[43]NOWAK-THOMPSON B,CHANEY N,WING J S,et al.Characterization of the pyoluteorin biosynthetic gene cluster of Pseudomonas fluorescens Pf-5[J].Journal of Bacteriology,1999,181(7):2166-2174.[44]SCHNIDER U,KEEL C,BLUMER C,et al.Amplification of the housekeeping igma factor in Pseudomonas fluorescens CHA0 enhances antibiotic production and improves biocontrol abilities[J].Journal of Bacteriology,1995,177(18):5387-5392.[45]NIELSEN T H,SORENSEN J.Production of cyclic lipopeptides by Pseudomonas fluorescens strains in bulk soil and in the sugar beet rhizosphere[J].Applied and Environmental Microbiology,2003,69(2):861-868.[46]BUYSENS S,HEUNGENS K,POPPE J,et al.Involvement of pyochelin and pyoverdin in suppression of Pythium-induced damping-off of tomato by Pseudomonas aeruginosa 7NSK2[J].Applied and Environmental Microbiology,1996,62(3):865-871.[47]de VLEESSCHAUWER D,CORNELIS P,HFTE M.Redox-active pyocyanin secreted by Pseudomonas aeruginosa 7NSK2 triggers systemic resistance to Magnaporthe grisea but enhances Rhizoctonia solani susceptibility in rice[J].Molecular Plant-Microbe Interactions,2006,19(12):1406-1419.[48]BANO N,MUSARRAT J.Characterization of a new Pseudomonas aeruginosa strain NJ-15 as a potential biocontrol agent[J].Current Microbiology,2003,46(5):324-328.[49]SULOCHANA M B,JAYACHANDRA S Y,KUMAR S K A,et al.Antifungal attributes of siderophore produced by the Pseudomonas aeruginosa JAS-25[J].Journal of Basic Microbiology,2014,54(5):418-424.[50]RANE M R,SARODE P D,CHAUDHARI B L,et al.Exploring antagonistic metabolites of established biocontrol agent of marine origin[J].Applied Biochemistry and Biotechnology,2008,151(2/3):665-675.[51]KUMAR R S,AYYADURAI N,PANDIARAJA P,et al.Characterization of antifungal metabolite produced by a new strain Pseudomonas aeruginosa PUPa3 that exhibits broad-spectrum antifungal activity and biofertilizing traits[J].Journal of Applied Microbiology,2005,98(1):145-154.[52]SHANMUGAIAH V,MATHIVANAN N,VARGHESE B.Purification,crystal structure and antimicrobial activity of phenazine-1-carboxamide produced by a growth-promoting biocontrol bacterium,Pseudomonas aeruginosa MML2212[J].Journal of Applied Microbiology,2010,108(2):703-711.[53]CALVANESE V,LARA E,KAHN A,et al.The role of epigenetics in aging and age-related diseases[J].Ageing Research Reviews,2009,8(4):268-276.

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Last Update: 2021-05-26