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1.
J Appl Microbiol ; 112(5): 954-65, 2012 May.
Article in English | MEDLINE | ID: mdl-22332943

ABSTRACT

AIMS: To prepare commercially acceptable formulations of Bacillus subtilis CPA-8 by spray-drying with long storage life and retained efficacy to control peach and nectarine brown rot caused by Monilinia spp. METHODS AND RESULTS: CPA-8 24-h- and 72-h-old cultures were spray dried using 10% skimmed milk, 10% skimmed milk plus 10% MgSO(4) , 10% MgSO(4) and 20% MgSO(4) as carriers/protectants. All carriers/protectants gave good percentages of powder recovery (28-38%) and moisture content (7-13%). CPA-8 survival varied considerably among spray-dried 24-h- and 72-h-old cultures. Seventy-two hours culture spray dried formulations showed the highest survival (28-32%) with final concentration products of 1·6-3·3 × 10(9) CFU g(-1) , while viability of 24-h-old formulations was lower than 1%. Spray-dried 72-h-old formulations were selected to subsequent evaluation. Rehydration of cells with water provided a good recovery of CPA-8 dried cells, similar to other complex rehydration media tested. Spray-dried formulations stored at 4 ± 1 and 20 ± 1°C showed good shelf life during 6 months, and viability was maintained or slightly decreased by 0·2-0·3-log. CPA-8 formulations after 4- and 6 months storage were effective in controlling brown rot caused by Monilinia spp. on nectarines and peaches resulting in a 90-100% reduction in disease incidence. CONCLUSIONS: Stable and effective formulations of biocontrol agent B. subtilis CPA-8 could be obtained by spray-drying. SIGNIFICANCE AND IMPACT OF THE STUDY: New shelf-stable and effective formulations of a biocontrol agent have been obtained by spray-drying to control brown rot on peach.


Subject(s)
Ascomycota , Bacillus subtilis , Pest Control, Biological , Plant Diseases/prevention & control , Prunus/microbiology , Bacillus subtilis/classification , Bacillus subtilis/physiology , Desiccation , Microbial Viability , Plant Diseases/microbiology
2.
Biotechnol Lett ; 34(4): 729-35, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22187082

ABSTRACT

The role of endospore production by Bacillus subtilis CPA-8 on survival during spray-drying was investigated by comparison with a non-spore-forming biocontrol agent Pantoea agglomerans CPA-2. Endospore formation promoted heat resistance in CPA-8 depending on growth time (72 h cultures were more resistant than 24 h ones). The survival of CPA-8 and CPA-2 after spray-drying was determined after being grown in optimised media for 24 and 72 h. Spray-dried 72 h CPA-8 had the best survival (32%), while CPA-2 viability was less than 2%. CPA-8 survival directly related with its ability to produce endospores. Spray-dried CPA-8 reduced Monilinia fructicola conidia germination similarly to fresh cells, demonstrating that spray-drying did not adversely affect biocontrol efficacy. Endospore production thus improves CPA-8 resistance to spray-drying. These results can provide a reliable basis for optimising of the spray-drying formulation process for CPA-8 and other microorganisms.


Subject(s)
Aerosols , Bacillus subtilis/physiology , Desiccation , Pest Control, Biological/methods , Spores, Bacterial/physiology , Ascomycota/growth & development , Microbial Interactions , Microbial Viability , Spores, Fungal/growth & development , Time Factors
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