Paul SI, Rahman MM, Salam MA, Khan MA, Islam MT (2021-12-15). "Identification of marine sponge-associated bacteria of the Saint Martin's island of the Bay of Bengal emphasizing on the prevention of motile Aeromonas septicemia in Labeo rohita". Aquaculture. 545: 737156. doi:10.1016/j.aquaculture.2021.737156. ISSN0044-8486.
Yu AC, Loo JF, Yu S, Kong SK, Chan TF (January 2014). "Monitoring bacterial growth using tunable resistive pulse sensing with a pore-based technique". Applied Microbiology and Biotechnology. 98 (2): 855–62. doi:10.1007/s00253-013-5377-9. PMID24287933. S2CID2956197.
Nakano MM, Zuber P (1998). "Anaerobic growth of a "strict aerobe" (Bacillus subtilis)". Annual Review of Microbiology. 52 (1): 165–90. doi:10.1146/annurev.micro.52.1.165. PMID9891797.
Saito S, Kakeshita H, Nakamura K (January 2009). "Novel small RNA-encoding genes in the intergenic regions of Bacillus subtilis". Gene. 428 (1–2): 2–8. doi:10.1016/j.gene.2008.09.024. PMID18948176.
Saito Y, Taguchi H, Akamatsu T (March 2006). "Fate of transforming bacterial genome following incorporation into competent cells of Bacillus subtilis: a continuous length of incorporated DNA". Journal of Bioscience and Bioengineering. 101 (3): 257–62. doi:10.1263/jbb.101.257. PMID16716928.
Saito Y, Taguchi H, Akamatsu T (April 2006). "DNA taken into Bacillus subtilis competent cells by lysed-protoplast transformation is not ssDNA but dsDNA". Journal of Bioscience and Bioengineering. 101 (4): 334–39. doi:10.1263/jbb.101.334. PMID16716942.
Michod RE, Bernstein H, Nedelcu AM (May 2008). "Adaptive value of sex in microbial pathogens". Infection, Genetics and Evolution. 8 (3): 267–85. doi:10.1016/j.meegid.2008.01.002. PMID18295550.
Itaya M, Nagasaku M, Shimada T, Ohtani N, Shiwa Y, Yoshikawa H, et al. (February 2019). "Stable and efficient delivery of DNA to Bacillus subtilis (natto) using pLS20 conjugational transfer plasmids". FEMS Microbiology Letters. 366 (4). doi:10.1093/femsle/fnz032. PMID30726909.
Vaisberg O, Fedorov A, Dunjushkin F, Kozhukhovsky A, Smirnov V, Avanov L, et al. (1995). "Ion populations in the tail of Venus". Advances in Space Research. 16 (4): 105–18. Bibcode:1995AdSpR..16d.105V. doi:10.1016/0273-1177(95)00217-3.
Fajardo-Cavazos P, Link L, Melosh HJ, Nicholson WL (December 2005). "Bacillus subtilis spores on artificial meteorites survive hypervelocity atmospheric entry: implications for Lithopanspermia". Astrobiology. 5 (6): 726–36. Bibcode:2005AsBio...5..726F. doi:10.1089/ast.2005.5.726. PMID16379527.
Brandstätter F, Brack A, Baglioni P, Cockell CS, Demets R, Edwards HG, et al. (2008). "Mineralogical alteration of artificial meteorites during atmospheric entry. The STONE-5 experiment". Planetary and Space Science. 56 (7): 976–84. Bibcode:2008P&SS...56..976B. CiteSeerX10.1.1.549.4307. doi:10.1016/j.pss.2007.12.014.
Wassmann M, Moeller R, Rabbow E, Panitz C, Horneck G, Reitz G, et al. (May 2012). "Survival of spores of the UV-resistant Bacillus subtilis strain MW01 after exposure to low-earth orbit and simulated martian conditions: data from the space experiment ADAPT on EXPOSE-E". Astrobiology. 12 (5): 498–507. Bibcode:2012AsBio..12..498W. doi:10.1089/ast.2011.0772. PMID22680695.
Swain MR, Ray RC (2009). "Biocontrol and other beneficial activities of Bacillus subtilis isolated from cowdung microflora". Microbiological Research. 164 (2): 121–30. doi:10.1016/j.micres.2006.10.009. PMID17320363.
Yánez-Mendizábal V (2011). "Biological control of peach brown rot (Monilinia spp.) by Bacillus subtilis CPA-8 is based on production of fengycin-like lipopeptides". European Journal of Plant Pathology. 132 (4): 609–19. doi:10.1007/s10658-011-9905-0. S2CID15761522.
Harrigan GG, Ridley WP, Miller KD, Sorbet R, Riordan SG, Nemeth MA, et al. (October 2009). "The forage and grain of MON 87460, a drought-tolerant corn hybrid, are compositionally equivalent to that of conventional corn". Journal of Agricultural and Food Chemistry. 57 (20): 9754–63. doi:10.1021/jf9021515. PMID19778059.
"Monilinia fructicola"(PDF). Data Sheets on Quarantine Pests. European Public Prosecutor's Office (EPPO). Archived from the original(PDF) on 2015-06-04. Retrieved 2015-07-21.
Vaisberg O, Fedorov A, Dunjushkin F, Kozhukhovsky A, Smirnov V, Avanov L, et al. (1995). "Ion populations in the tail of Venus". Advances in Space Research. 16 (4): 105–18. Bibcode:1995AdSpR..16d.105V. doi:10.1016/0273-1177(95)00217-3.
Fajardo-Cavazos P, Link L, Melosh HJ, Nicholson WL (December 2005). "Bacillus subtilis spores on artificial meteorites survive hypervelocity atmospheric entry: implications for Lithopanspermia". Astrobiology. 5 (6): 726–36. Bibcode:2005AsBio...5..726F. doi:10.1089/ast.2005.5.726. PMID16379527.
Brandstätter F, Brack A, Baglioni P, Cockell CS, Demets R, Edwards HG, et al. (2008). "Mineralogical alteration of artificial meteorites during atmospheric entry. The STONE-5 experiment". Planetary and Space Science. 56 (7): 976–84. Bibcode:2008P&SS...56..976B. CiteSeerX10.1.1.549.4307. doi:10.1016/j.pss.2007.12.014.
Wassmann M, Moeller R, Rabbow E, Panitz C, Horneck G, Reitz G, et al. (May 2012). "Survival of spores of the UV-resistant Bacillus subtilis strain MW01 after exposure to low-earth orbit and simulated martian conditions: data from the space experiment ADAPT on EXPOSE-E". Astrobiology. 12 (5): 498–507. Bibcode:2012AsBio..12..498W. doi:10.1089/ast.2011.0772. PMID22680695.
Yu AC, Loo JF, Yu S, Kong SK, Chan TF (January 2014). "Monitoring bacterial growth using tunable resistive pulse sensing with a pore-based technique". Applied Microbiology and Biotechnology. 98 (2): 855–62. doi:10.1007/s00253-013-5377-9. PMID24287933. S2CID2956197.
Nakano MM, Zuber P (1998). "Anaerobic growth of a "strict aerobe" (Bacillus subtilis)". Annual Review of Microbiology. 52 (1): 165–90. doi:10.1146/annurev.micro.52.1.165. PMID9891797.
Saito S, Kakeshita H, Nakamura K (January 2009). "Novel small RNA-encoding genes in the intergenic regions of Bacillus subtilis". Gene. 428 (1–2): 2–8. doi:10.1016/j.gene.2008.09.024. PMID18948176.
Saito Y, Taguchi H, Akamatsu T (March 2006). "Fate of transforming bacterial genome following incorporation into competent cells of Bacillus subtilis: a continuous length of incorporated DNA". Journal of Bioscience and Bioengineering. 101 (3): 257–62. doi:10.1263/jbb.101.257. PMID16716928.
Saito Y, Taguchi H, Akamatsu T (April 2006). "DNA taken into Bacillus subtilis competent cells by lysed-protoplast transformation is not ssDNA but dsDNA". Journal of Bioscience and Bioengineering. 101 (4): 334–39. doi:10.1263/jbb.101.334. PMID16716942.
Michod RE, Bernstein H, Nedelcu AM (May 2008). "Adaptive value of sex in microbial pathogens". Infection, Genetics and Evolution. 8 (3): 267–85. doi:10.1016/j.meegid.2008.01.002. PMID18295550.
Itaya M, Nagasaku M, Shimada T, Ohtani N, Shiwa Y, Yoshikawa H, et al. (February 2019). "Stable and efficient delivery of DNA to Bacillus subtilis (natto) using pLS20 conjugational transfer plasmids". FEMS Microbiology Letters. 366 (4). doi:10.1093/femsle/fnz032. PMID30726909.
Ciprandi G, Scordamaglia A, Venuti D, Caria M, Canonica GW (December 1986). "In vitro effects of Bacillus subtilis on the immune response". Chemioterapia. 5 (6): 404–07. PMID3100070.
Fajardo-Cavazos P, Link L, Melosh HJ, Nicholson WL (December 2005). "Bacillus subtilis spores on artificial meteorites survive hypervelocity atmospheric entry: implications for Lithopanspermia". Astrobiology. 5 (6): 726–36. Bibcode:2005AsBio...5..726F. doi:10.1089/ast.2005.5.726. PMID16379527.
Wassmann M, Moeller R, Rabbow E, Panitz C, Horneck G, Reitz G, et al. (May 2012). "Survival of spores of the UV-resistant Bacillus subtilis strain MW01 after exposure to low-earth orbit and simulated martian conditions: data from the space experiment ADAPT on EXPOSE-E". Astrobiology. 12 (5): 498–507. Bibcode:2012AsBio..12..498W. doi:10.1089/ast.2011.0772. PMID22680695.
Swain MR, Ray RC (2009). "Biocontrol and other beneficial activities of Bacillus subtilis isolated from cowdung microflora". Microbiological Research. 164 (2): 121–30. doi:10.1016/j.micres.2006.10.009. PMID17320363.
Harrigan GG, Ridley WP, Miller KD, Sorbet R, Riordan SG, Nemeth MA, et al. (October 2009). "The forage and grain of MON 87460, a drought-tolerant corn hybrid, are compositionally equivalent to that of conventional corn". Journal of Agricultural and Food Chemistry. 57 (20): 9754–63. doi:10.1021/jf9021515. PMID19778059.
Yánez-Mendizábal V (2011). "Biological control of peach brown rot (Monilinia spp.) by Bacillus subtilis CPA-8 is based on production of fengycin-like lipopeptides". European Journal of Plant Pathology. 132 (4): 609–19. doi:10.1007/s10658-011-9905-0. S2CID15761522.
"Monilinia fructicola"(PDF). Data Sheets on Quarantine Pests. European Public Prosecutor's Office (EPPO). Archived from the original(PDF) on 2015-06-04. Retrieved 2015-07-21.
Paul SI, Rahman MM, Salam MA, Khan MA, Islam MT (2021-12-15). "Identification of marine sponge-associated bacteria of the Saint Martin's island of the Bay of Bengal emphasizing on the prevention of motile Aeromonas septicemia in Labeo rohita". Aquaculture. 545: 737156. doi:10.1016/j.aquaculture.2021.737156. ISSN0044-8486.
Ngugi HK, Dedej S, Delaplane KS, Savelle AT, Scherm H (2005-04-01). "Effect of flower-applied Serenade biofungicide (Bacillus subtilis) on pollination-related variables in rabbiteye blueberry". Biological Control. 33 (1): 32–38. doi:10.1016/j.biocontrol.2005.01.002. ISSN1049-9644.