|Table of Contents|

Isolation and Identification of A Bacillus vallismortis CZ and Primary Testing Its Disease-suppressive and Growth-promoting Capacities(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2014年13期
Page:
88-92
Research Field:
Publishing date:

Info

Title:
Isolation and Identification of A Bacillus vallismortis CZ and Primary Testing Its Disease-suppressive and Growth-promoting Capacities
Author(s):
LIN Ying1SI Chun-can2ZHAO Qing-song1DU Dao-lin2LI Ping-ping13
1.Key Laboratory of Modern Agricultural Equipment and Technology,Ministry of Education and Jiangsu Province,Institute of Agricultural Engineering,Jiangsu University,Zhenjiang,Jiangsu 212013;
2.School of Environment,Jiangsu University,Zhenjiang,Jiangsu 212013;
3.College of Forest Resources and Environment,Nanjing Forestry University,Nanjing,Jiangsu 210037
Keywords:
vinegar wasteantagonistic bacterialisolateddisease-suppressivegrowth-promoting
PACS:
S 476
DOI:
-
Abstract:
In order to seek new biocontrol agents,taking the vinegar residue substrate as the test materials,bacteria isolated from the vinegar residue substrate with inhibitory activities toward R.Solani using the dilution plate method,their broad antifungal inhibitory activity were tested using the dual plate assay,combining with morphological characteristics,16S rDNA sequence and physiological and biochemical characteristics to identify and determine its taxonomic status,its antagonistic potential against disease and plant growth promotion under greenhouse were further evaluated.The results showed that strain CZ isolated from the vinegar residue substrate exhibited broad-spectrum antagonism towards the tested fungi,including Fusarium oxysporum f.sp.niveumFusarium oxysporum f.sp.MelonisFusarium oxysporum f.sp.cucumerinumGibberella fujikuroi (Sawada) Wollenw,Fusarium graminearumGlomerella cingulate.According to the morphological,phylogenetic analysis of the 16S rDNA sequence and physiological characteristics,strain CZ was identified as Bacillus vallismortis.Strain CZ also was found to be effective in controlling damping-off disease caused by Rhizoctonia solani under greenhouse conditions,inoculated with strain CZ led the percent disease index reductions in 18.3%.Together all,strain CZ has great potential as a biocontrol agent.

References:

[1]Claude A,Chantal O,Quirico M,et al.Microbiological control of soil-borne phytopathogenic fungi with special emphasis on wilt-inducing Fusarium oxysporum[J].New Phytologist,2009,184(3):529-544.
[2]周秀华,崔磊,武术杰,等.三种拮抗菌对苗木立枯病病原菌的影响[J].北方园艺,2011(24):167-169.
[3]Federico G R,Maria M R,Marcela F,et al.Biological control by  Trichoderma species of Fusarium solani causing peanut brown root rot under field conditions[J].Crop Protection,2007,26(4):549-555.
[4]谢永丽,徐志伟,马莉贞,等.青海北山林场桦树根围芽胞杆菌分子鉴定及其拮抗活性分析[J].植物保护学报,2012,39(3):246-252.
[5]Pugliese M,Liu B P,Gullino M L,et al.Selection of antagonists from compost to control soil-borne pathogens[J].Journal of Plant Diseases and Protection,2008,115(5):220.
[6]Cuesta G,García-de-la-Fuente R,Abad M,et al.Isolation and identification of actinomycetes from a compost-amended soil with potential as biocontrol agents[J].Journal of Environmental Management,2012,95:280-284.
[7]赵青松,李萍萍,郑洪倩,等.灌水量对有机基质栽培黄瓜生长及氮素利用的影响[J].农业工程学报,2012,28(12):117-121.
[8]Zhao Q S,Li P P,Sun D M.Effects of inoculating thermophiles and Rhizopus on composting process of vinegar residue and their nutrients status[J].Advanced Materials Research,2012,518,68-72. [9]Chen L,Yang X,Raza W,et al.Solid-state fermentation of agro-industrial wastes to produce bioorganic fertilizer for the biocontrol of  Fusarium wilt of cucumber in continuously cropped soil[J].Bioresource Technology,2011,102(4):3900-3910. [10]Lin Y,Du D,Si C,et al.Potential biocontrol  Bacillus sp.strains isolated by an improved method from vinegar waste compost exhibit antibiosis against fungal pathogens and promote growth of cucumbers[J].Biological Control,2014,71:7-15. 
[11]Anith K N,Radhakrishnan N V,Manomohandas T P.Screening of antagonistic bacteria for biological control of nursery wilt of black pepper (Piper nigrum) [J].Microbiological Research,2003,158(2):91-97.
[12] 李振国,骆永明,腾应.土壤与环境微生物研究方法[M].北京:科学出版社,2008.
[13]东秀珠,蔡秒英.常见细菌鉴定手册[M].北京:科学出版社,2001.
[14]Deng H,Han Y,Liu Y,et al.Identification of a newly isolated erythritol-producing yeast and cloning of its erythritol reductase genes[J].Journal of Industrial Microbiology and Biotechnology,2012,39(11):1663-1672. 
[15]Tamura K,Dudley J,Nei M,et al.MEGA4:molecular evolutionary geneticsanalysis (MEGA) software version 40[J].Molecular Biology and Evolution,2007,24(8):1596-1599. [16]Fuchs J G.Interactions between beneficial and harmful microorganisms:from the composting process to compost application[M]//Microbes at Work.Springer Berlin Heidelberg,2010:213-229.
[17]Chandanie W A,Kubota M,Hyakumachi M.Interactions between the arbuscular mycorrhizal fungus Glomus mosseae and plant growth-promoting fungi and their significance for enhancing plant growth and suppressing damping-off of cucumber (Cucumis sativus L.) [J].Applied Soil Ecology,2009,41(3):336-341.
[18]权春善,王军华,徐洪涛,等.一株抗真菌解淀粉芽孢杆菌的分离鉴定及其发酵条件的初步研究[J].微生物学报,2006,4(6):7-12. 
[19]Chen F,Wang M,Zheng Y.Quantitative changes of plant defense enzymes and phytohormone in biocontrol of cucumber Fusarium wilt by Bacillus subtilis B579[J].World Journal of Microbiology and Biotechnology,2010,26(4):675-684. 
[20]Zhou K,Yamagishi M,Osaki M.Paenibacillus  BRF-1 has biocontrol ability against  Phialophora gregata disease and promotes soybean growth[J].Soil Science and Plant Nutrition,2008,54(6):870-875.
[21]Guo J H,Qi H Y,Guo Y H,et al.Biocontrol of tomato wilt by plant growth-promoting rhizobacteria[J].Biological Control,2004,29(1):66-72.
[22]Lemessa F,Zeller W.Screening rhizobacteria for biological control of Ralstonia solanacearum in Ethiopia[J].Biological Control,2007,42(3):336-344.
[23]Lugtenberg B,Kamilova F.Plant-growth-promoting rhizobacteria[J].Annual Review of Microbiology,2009,63:541-556.
[24]Ran L X,Liu C Y,Wu G J,et al.Suppression of bacterial wilt in Eucalyptus urophylla by  fluorescent Pseudomonas spp.in China [J].Biological Control,2005,32(1):111-120. [25]Simonetti E,Carmona M A,Scandiani M M,et al.Evaluation of indigenous bacterial strains for biocontrol of the frogeye leaf spot of soya bean caused by Cercospora sojina[J]. Letters in Applied Microbiology,2012,55(2):170-173.
[26]Dal Bello G,Mónaco C,Rollan M C,et al.Biocontrol of postharvest grey mould on tomato by yeasts[J].Journal of Phytopathology,2008,156(5):257-263.

Memo

Memo:
-
Last Update: 2014-08-02