AndrewsJ. H.
1992Biological control in the phyllosphereAnn. Rev. Phytopathol.3060363510.1146/annurev.py.30.090192.00313118647102Andrews J. H.. 1992;Biological control in the phyllosphere. Ann. Rev. Phytopathol. 30:603-635.
ChenJ.
AbawiG. S.
ZuckermanB. M.
2000Efficacy of Bacillus thuringiensis, Paecilomyces marquandii, and Streptomyces costaricanus with and without organic amendments against Meloidogyne hapla infecting lettuceJ. Nematol.32707719270951PMC2620431Chen J., Abawi G. S., Zuckerman B. M.. 2000;Efficacy of
Bacillus thuringiensis, Paecilomyces marquandii, and
Streptomyces costaricanus with and without organic amendments against
Meloidogyne hapla infecting lettuce. J. Nematol. 32:70-77.
ChoiY.-H.
LeeK.-Y.
YangK.-M.
JeongY.-M.
SeoJ.-S.
2006Effect of larva extract of Allomyrina dichotoma on carbon tetrachloride-induced hepatotoxicity in miceJ. Korean Soc. Food Sci. Nutr.3513491355(In Korean)10.3746/jkfn.2006.35.10.1349Choi Y.-H., Lee K.-Y., Yang K.-M., Jeong Y.-M., Seo J.-S.. 2006 Effect of larva extract of Allomyrina dichotoma on carbon tetrachloride-induced hepatotoxicity in mice. J. Korean Soc. Food Sci. Nutr. 35:1349-1355. (In Korean).
ChungM. Y.
KwonE.-Y.
HwangJ.-S.
GooT.-W.
YunE.-Y.
2013Establishment of food processing methods for larvae of Allomyrina dichotoma, Korean horn beetleJ. Life Sci.23426431(In Korean)10.5352/JLS.2013.23.3.426Chung M. Y., Kwon E.-Y., Hwang J.-S., Goo T.-W., Yun E.-Y.. 2013 Establishment of food processing methods for larvae of
Allomyrina dichotoma, Korean horn beetle. J. Life Sci. 23:426-431. (In Korean).
De WegerL. A.
van BoxtelR.
van der BurgB.
GrutersR. A.
GeelsF. P.
SchippersB.
1986Siderophores and outer membrane proteins of antagonistic, plant-growth-stimulating, root-colonizing Pseudomonas sppJ. Bacteriol.16558559410.1128/JB.165.2.585-594.19863003032PMC214459De Weger L. A., van Boxtel R., van der Burg B., Gruters R. A., Geels F. P., Schippers B., et al. 1986;Siderophores and outer membrane proteins of antagonistic, plant-growth-stimulating, root-colonizing
Pseudomonas spp. J. Bacteriol. 165:585-594.
DharniS.
AlamM.
KalaniK.
KhaliqA.
SamadA.
SrivastavaS. K.
2012Production, purification, and characterization of antifungal metabolite from Pseudomonas aeruginosa SD12, a new strain obtained from tannery waste polluted soilJ. Microbiol. Biotechnol.2267468310.4014/jmb.1109.0906122561863Dharni S., Alam M., Kalani K., Khaliq A., Samad A., Srivastava S. K., et al. 2012;Production, purification, and characterization of antifungal metabolite from
Pseudomonas aeruginosa SD12, a new strain obtained from tannery waste polluted soil. J. Microbiol. Biotechnol. 22:674-683.
GentaF. A.
DillonR. J.
TerraW. R.
FerreiraC.
2006Potential role for gut microbiota in cell wall digestion and glucoside detoxification in Tenebrio molitor larvaeJ. Insect. Physiol.5259360110.1016/j.jinsphys.2006.02.00716600286Genta F. A., Dillon R. J., Terra W. R., Ferreira C.. 2006;Potential role for gut microbiota in cell wall digestion and glucoside detoxification in
Tenebrio molitor larvae. J. Insect. Physiol. 52:593-601.
HameedaB.
HariniG.
RupelaO. P.
WaniS. P.
ReddyG.
2008Growth promotion of maize by phosphate-solubilizing bacteria isolated from composts and macrofaunaMicrobiol. Res.16323424210.1016/j.micres.2006.05.00916831538Hameeda B., Harini G., Rupela O. P., Wani S. P., Reddy G.. 2008;Growth promotion of maize by phosphate-solubilizing bacteria isolated from composts and macrofauna. Microbiol. Res. 163:234-242.
HanJ.-H.
ParkG.-C.
KimJ.-O.
KimK. S.
2015Biological control of Fusarium stalk rot of maize using Bacillus sppRes. Plant Dis.21280289(In Korean)Han J.-H., Park G.-C., Kim J.-O., Kim K. S.. 2015 Biological control of Fusarium stalk rot of maize using Bacillus spp. Res. Plant Dis. 21:280-289. (In Korean)
HuoZ.
YangX.
RazaW.
HuangQ.
XuY.
ShenQ.
2010Investigation of factors influencing spore germination of Paenibacillus polymyxa ACCC10252 and SQR-21Appl. Microbiol. Biotechnol.8752753610.1007/s00253-010-2520-820309541Huo Z., Yang X., Raza W., Huang Q., Xu Y., Shen Q.. 2010;Investigation of factors influencing spore germination of
Paenibacillus polymyxa ACCC10252 and SQR-21. Appl. Microbiol. Biotechnol. 87:527-536.
KatoK.
KozakiS.
SakuranagaM.
1998Degradation of lignin compounds by bacteria from termite gutsBiotechnol. Lett.2045946210.1023/A:1005432027603Kato K., Kozaki S., Sakuranaga M.. 1998;Degradation of lignin compounds by bacteria from termite guts. Biotechnol. Lett. 20:459-462.
KavamuraV. N.
SantosS. N.
SilvaJ. L.
ParmaM. M.
ÁvilaL. A.
ViscontiA.
2013Screening of Brazilian cacti rhizobacteria for plant growth promotion under droughtMicrobiol. Res.16818319110.1016/j.micres.2012.12.00223279812Kavamura V. N., Santos S. N., Silva J. L., Parma M. M., Ávila L. A., Visconti A., et al. 2013;Screening of Brazilian cacti rhizobacteria for plant growth promotion under drought. Microbiol. Res. 168:183-191.
KumarR. S.
AyyaduraiN.
PandiarajaP.
ReddyA. V.
VenkateswarluY.
PrakashO.
2005Characterization of antifungal metabolite produced by a new strain Pseudomonas aeruginosa PUPa3 that exhibits broad-spectrum antifungal activity and biofertilizing traitsJ. Appl. Microbiol.9814515410.1111/j.1365-2672.2004.02435.x15610427Kumar R. S., Ayyadurai N., Pandiaraja P., Reddy A. V., Venkateswarlu Y., Prakash O., et al. 2005;Characterization of antifungal metabolite produced by a new strain
Pseudomonas aeruginosa PUPa3 that exhibits broad-spectrum antifungal activity and biofertilizing traits. J. Appl. Microbiol. 98:145-154.
LaceyL. A.
GeorgisR.
2012Entomopathogenic nematodes for control of insect pests above and below ground with comments on commercial productionJ. Nematol.4421822523482993PMC3578470Lacey L. A., Georgis R.. 2012;Entomopathogenic nematodes for control of insect pests above and below ground with comments on commercial production. J. Nematol. 44:218-225.
LambrechtM.
OkonY.
de BroekA.
VanderleydenJ.
2000Indole-3-acetic acid: a reciprocal signalling molecule in bacteria-plant interactionsTrends Microbiol.829830010.1016/S0966-842X(00)01732-710878760Lambrecht M., Okon Y., de Broek A., Vanderleyden J.. 2000;Indole-3-acetic acid: a reciprocal signalling molecule in bacteria-plant interactions. Trends Microbiol. 8:298-300.
LeeJ. P.
LeeS.-W.
KimC. S.
SonJ. H.
SongJ. H.
LeeK. Y.
2006Evaluation of formulations of Bacillus licheniformis for the biological control of tomato gray mold caused byBotrytis cinerea. Biol. Control3732933710.1016/j.biocontrol.2006.01.001Lee J. P., Lee S.-W., Kim C. S., Son J. H., Song J. H., Lee K. Y., et al. 2006;Evaluation of formulations of
Bacillus licheniformis for the biological control of tomato gray mold caused by. Botrytis cinerea. Biol. Control 37:329-337.
LeeH.-W.
AhnJ.-H.
KimM.
WeonH.-Y.
SongJ.
LeeS.-J.
2013Diversity and antimicrobial activity of actinomycetes from fecal sample of rhinoceros beetle larvaeKorean J. Microbiol.49156164(In Korean)10.7845/kjm.2013.3041Lee H.-W., Ahn J.-H., Kim M., Weon H.-Y., Song J., Lee S.-J., et al. 2013 Diversity and antimicrobial activity of actinomycetes from fecal sample of rhinoceros beetle larvae. Korean J. Microbiol. 49:156-164. (In Korean).
LiQ.
NingP.
ZhengL.
HuangJ.
LiG.
HsiangT.
2012Effects of volatile substances of Streptomyces globisporus JK-1 on control of Botrytis cinerea on tomato fruitBiol. Control6111312010.1016/j.biocontrol.2011.10.014Li Q., Ning P., Zheng L., Huang J., Li G., Hsiang T.. 2012;Effects of volatile substances of
Streptomyces globisporus JK-1 on control of
Botrytis cinerea on tomato fruit. Biol. Control 61:113-120.
den GardenerB. B.
2004Ecology of Bacillus and Paenibacillus spp. in agricultural systemsPhytopathology941252125810.1094/PHYTO.2004.94.11.125218944463den Gardener B. B.. 2004;Ecology of Bacillus and Paenibacillus spp. in agricultural systems. Phytopathology 94:1252-1258.
MinaxiL. N.
YadavR. C.
SaxenaJ.
2012Characterization of multifaceted Bacillus sp. RM-2 for its use as plant growth promoting bioinoculant for crops grown in semi arid desertsAppl. Soil Ecol.5912413510.1016/j.apsoil.2011.08.001Minaxi L. N., Yadav R. C., Saxena J.. 2012;Characterization of multifaceted
Bacillus sp. RM-2 for its use as plant growth promoting bioinoculant for crops grown in semi arid deserts. Appl. Soil Ecol. 59:124-135.
MoonC. W.
KimK. K.
WhangK. S.
SeoM. J.
YounY. N.
YuY. M.
2011Characteristics of Enterobacteria from Harmonia axyridis and effects of Staphylococcus spp. on development of H. axyridisKorean J. Appl. Entomol.50157165(In Korean)Moon C. W., Kim K. K., Whang K. S., Seo M. J., Youn Y. N., Yu Y. M.. 2011 Characteristics of Enterobacteria from Harmonia axyridis and effects of Staphylococcus spp. on development of H. axyridis. Korean J. Appl. Entomol. 50:157-165. (In Korean)
NamH.-S.
YangH.-J.
OhB. J.
AndersonA. J.
KimY. C.
2016Biological control potential of Bacillus amyloliquefaciens KB3 isolated from the feces of Allomyrina dichotoma larvaePlant Pathol. J.3227328010.5423/PPJ.NT.12.2015.027427298603PMC4892824Nam H.-S., Yang H.-J., Oh B. J., Anderson A. J., Kim Y. C.. 2016;Biological control potential of
Bacillus amyloliquefaciens KB3 isolated from the feces of
Allomyrina dichotoma larvae. Plant Pathol. J. 32:273-280.
NicholsonW. L.
MunakataN.
HorneckG.
MeloshH. J.
SetlowP.
2000Resistance of Bacillus endospores to extreme terrestrial and extraterrestrial environmentsMicrobiol. Mol. Biol. Rev.6454857210.1128/MMBR.64.3.548-572.200010974126PMC99004Nicholson W. L., Munakata N., Horneck G., Melosh H. J., Setlow P.. 2000;Resistance of
Bacillus endospores to extreme terrestrial and extraterrestrial environments. Microbiol. Mol. Biol. Rev. 64:548-572.
NishiguchiM. K.
DoukakisP.
EganM.
KizirianD.
PhillipsA.
PrendiniL.
DeSalleR.
GiribetG.
WheelerW.
2002DNA isolation proceduresMethods and Tools in Biosciences and Medicine: Techniques in Molecular Systematics and EvolutionBirkhäuser VerlagBasel, Switzerland24928710.1007/978-3-0348-8125-8_12Nishiguchi M. K., Doukakis P., Egan M., Kizirian D., Phillips A., Prendini L., et al. In: DeSalle R., Giribet G., Wheeler W., 2002. DNA isolation procedures. editors. Methods and Tools in Biosciences and Medicine: Techniques in Molecular Systematics and Evolution. Birkhäuser Verlag; Basel, Switzerland: p. 249-287.
NtusheloK.
LedwabaL. K.
RauwaneM. E.
AdeboO. A.
NjobehP. B.
2019The mode of action of Bacillus species against Fusarium graminearum, tools for investigation, and future prospectsToxins1160610.3390/toxins1110060631635255PMC6832908Ntushelo K., Ledwaba L. K., Rauwane M. E., Adebo O. A., Njobeh P. B.. 2019;The mode of action of
Bacillus species against
Fusarium graminearum, tools for investigation, and future prospects. Toxins 11:606
ParkD.-S.
OhH.-W.
BaeK. S.
KimH.
HeoS.-Y.
KimN.
2007Screening of bacteria producing lipase from insect gut: isolation and characterization of a strain, Burkholderia sp. HY-10 producing lipaseKorean J. Appl. Entomol.46131139(In Korean)10.5656/KSAE.2007.46.1.131Park D.-S., Oh H.-W., Bae K. S., Kim H., Heo S.-Y., Kim N., et al. 2007 Screening of bacteria producing lipase from insect gut: isolation and characterization of a strain,
Burkholderia sp. HY-10 producing lipase. Korean J. Appl. Entomol. 46:131-139. (In Korean).
RajanS. S. S.
WatkinsonJ. H.
SinclairA. G.
1996Phosphate rocks for direct application to soilsAdv. Agron.577715910.1016/S0065-2113(08)60923-2Rajan S. S. S., Watkinson J. H., Sinclair A. G.. 1996;Phosphate rocks for direct application to soils. Adv. Agron. 57:77-159.
RuffnerB.
Péchy-TarrM.
RyffelF.
HoeggerP.
ObristC.
RindlisbacherA.
2013Oral insecticidal activity of plant-associated pseudomonadsEnviron. Microbiol.1575176310.1111/j.1462-2920.2012.02884.x23033861Ruffner B., Péchy-Tarr M., Ryffel F., Hoegger P., Obrist C., Rindlisbacher A., et al. 2013;Oral insecticidal activity of plant-associated pseudomonads. Environ. Microbiol. 15:751-763.
SanahujaG.
BanakarR.
TwymanR. M.
CapellT.
ChristouP.
2011Bacillus thuringiensis: a century of research, development and commercial applicationsPlant Biotechnol. J.928330010.1111/j.1467-7652.2011.00595.x21375687Sanahuja G., Banakar R., Twyman R. M., Capell T., Christou P.. 2011;
Bacillus thuringiensis: a century of research, development and commercial applications. Plant Biotechnol. J. 9:283-300.
SchwynB.
NeilandsJ. B.
1997Universal chemical assay for the detection and determination of siderophoresAnal. Biochem.160475610.1016/0003-2697(87)90612-92952030Schwyn B., Neilands J. B.. 1997;Universal chemical assay for the detection and determination of siderophores. Anal. Biochem. 160:47-56.
ShaoY.
ChenB.
SunC.
IshidaK.
HertweckC.
BolandW.
2017Symbiont-derived antimicrobials contribute to the control of the lepidopteran gut microbiotaCell Chem. Biol.24667510.1016/j.chembiol.2016.11.01528107652Shao Y., Chen B., Sun C., Ishida K., Hertweck C., Boland W.. 2017;Symbiont-derived antimicrobials contribute to the control of the lepidopteran gut microbiota. Cell Chem. Biol. 24:66-75.
SonJ.-S.
SumayoM.
HwangY.-J.
KimB.-S.
GhimS.-Y.
2014Screening of plant growth-promoting rhizobacteria as elicitor of systemic resistance against gray leaf spot disease in pepperAppl. Soil Ecol.731810.1016/j.apsoil.2013.07.016Son J.-S., Sumayo M., Hwang Y.-J., Kim B.-S., Ghim S.-Y.. 2014;Screening of plant growth-promoting rhizobacteria as elicitor of systemic resistance against gray leaf spot disease in pepper. Appl. Soil Ecol. 73:1-8.
SwainM. R.
RayR. C.
2008Optimization of cultural conditions and their statistical interpretation for production of indole-3-acetic acid by Bacillus subtilis CM5 using cassava fibrous residueJ. Sci. Ind. Res.67622628Swain M. R., Ray R. C.. 2008;Optimization of cultural conditions and their statistical interpretation for production of indole-3-acetic acid by Bacillus subtilis CM5 using cassava fibrous residue. J. Sci. Ind. Res. 67:622-628
SwainM. R.
RayR. C.
2009Biocontrol and other beneficial activities of Bacillus subtilis isolated from cowdung microfloraMicrobiol. Res.16412113010.1016/j.micres.2006.10.00917320363Swain M. R., Ray R. C.. 2009;Biocontrol and other beneficial activities of
Bacillus subtilis isolated from cowdung microflora. Microbiol. Res. 164:121-130.
TorabiA.
BonjarG. H. S.
AbdolshahiR.
PournamdariM.
SaadounI.
BarkaE. A.
2019Biological control of Paecilomyces formosus, the causal agent of dieback and canker diseases of pistachio by two strains of Streptomyces misionensisBiol. Control13710402910.1016/j.biocontrol.2019.104029Torabi A., Bonjar G. H. S., Abdolshahi R., Pournamdari M., Saadoun I., Barka E. A.. 2019;Biological control of
Paecilomyces formosus, the causal agent of dieback and canker diseases of pistachio by two strains of
Streptomyces misionensis. Biol. Control 137:104029.
VesseyJ. K.
2003Plant growth promoting rhizobacteria as biofertilizersPlant Soil.25557158610.1023/A:1026037216893Vessey J. K.. 2003;Plant growth promoting rhizobacteria as biofertilizers. Plant Soil. 255:571-586.
WatanabeH.
NodaH.
TokudaG.
LoN.
1998A cellulase gene of termite originNature39433033110.1038/285279690469Watanabe H., Noda H., Tokuda G., Lo N.. 1998;A cellulase gene of termite origin. Nature 394:330-331.
WhippsJ. M.
McQuilkenM. P.
WaltersD.
2009Biological control agents in plant disease controlDisease Control in Crops: Biological and Environmentally Friendly ApproachesWiley-BlackwellHoboken, NJ, USA276110.1002/9781444312157.ch3Whipps J. M., McQuilken M. P.. In: Walters D., 2009. Biological control agents in plant disease control. editors. Disease Control in Crops: Biological and Environmentally Friendly Approaches. Wiley-Blackwell; Hoboken, NJ, USA: p. 27-61.
XuS. J.
KimB. S.
2014Biocontrol of Fusarium crown and root rot and promotion of growth of tomato by Paenibacillus strains isolated from soilMycobiology4215816610.5941/MYCO.2014.42.2.15825071385PMC4112232Xu S. J., Kim B. S.. 2014;Biocontrol of Fusarium crown and root rot and promotion of growth of tomato by
Paenibacillus strains isolated from soil. Mycobiology 42:158-166.
XuS. J.
ParkD. H.
KimJ.-Y.
KimB.-S.
2016Biological control of gray mold and growth promotion of tomato using Bacillus spp. isolated from soilTrop. Plant Pathol.4116917610.1007/s40858-016-0082-8Xu S. J., Park D. H., Kim J.-Y., Kim B.-S.. 2016;Biological control of gray mold and growth promotion of tomato using
Bacillus spp. isolated from soil. Trop. Plant Pathol. 41:169-176.
ZaidiS.
UsmaniS.
SinghB. R.
MusarratJ.
2006Significance of Bacillus subtilis strain SJ-101 as a bioinoculant for concurrent plant growth promotion and nickel accumulation in Brassica junceaChemosphere6499199710.1016/j.chemosphere.2005.12.05716487570Zaidi S., Usmani S., Singh B. R., Musarrat J.. 2006;Significance of
Bacillus subtilis strain SJ-101 as a bioinoculant for concurrent plant growth promotion and nickel accumulation in
Brassica juncea. Chemosphere 64:991-997.
ZeriouhH.
RomeroD.
García-GutiérrezL.
CazorlaF. M.
de VicenteA.
Pérez-GarcíaA.
2011The iturin-like lipopeptides are essential components in the biological control arsenal of Bacillus subtilis against bacterial diseases of cucurbitsMol. Plant-Microbe Interact.241540155210.1094/MPMI-06-11-016222066902Zeriouh H., Romero D., García-Gutiérrez L., Cazorla F. M., de Vicente A., Pérez-García A.. 2011;The iturin-like lipopeptides are essential components in the biological control arsenal of
Bacillus subtilis against bacterial diseases of cucurbits. Mol. Plant-Microbe Interact. 24:1540-1552.