首页> 外文期刊>Current Microbiology: An International Journal >Biological Characterization of the Biocontrol Agent Bacillus amyloliquefaciens CPA-8: The Effect of Temperature, pH and Water Activity on Growth, Susceptibility to Antibiotics and Detection of Enterotoxic Genes
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Biological Characterization of the Biocontrol Agent Bacillus amyloliquefaciens CPA-8: The Effect of Temperature, pH and Water Activity on Growth, Susceptibility to Antibiotics and Detection of Enterotoxic Genes

机译:生物防治的生物学特征芽孢杆菌淀粉胺氨基吡咯胶液CPA-8:温度,pH和水活性对生长,抗生素敏感性的影响,以及肠毒性基因的检测

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摘要

This work focuses on the biological understanding of the biocontrol agent Bacillus amyloliquefaciens CPA-8 in order to accomplish the characterization required in the registration process for the development of a microorganism-based product. The tolerance of CPA-8 to grow under different pH-temperature and water activity (a (w))-temperature conditions was widely demonstrated. Regarding the pH results, optimum growth at the evaluated conditions was observed at 37 A degrees C and pH between 7 and 5. On the contrary, the slowest growth was recorded at 20 A degrees C and pH 4.5. Moreover, the type of solute used to reduce a (w) had a great influence on the minimum a (w) at which the bacterium was able to grow. The lowest a (w) values for CPA-8 growth in media modified with glycerol and glucose were 0.950 and 0.960, respectively. Besides, the lowest a (w) for CPA-8 growth increased when the temperature decreased to 20 A degrees C, at which CPA-8 was not able to grow at less than 0.990 a (w), regardless of the type of solute. Antibiotic susceptibility tests were carried out to determine which antibiotic could affect the behavior of the bacteria and revealed that CPA-8 was clearly resistant to hygromycin. Finally, a PCR amplification assay to detect the presence of enterotoxic genes from Bacillus cereus in CPA-8 was also performed. CPA-8 gave negative results for all the genes tested except for nheA gene, which is not enough for the toxicity expression, suggesting that fruit treated with this antagonist will not be a potential vehicle for foodborne illnesses.
机译:这项工作侧重于生物防治芽孢杆菌淀粉硫胺CPA-8的生物学理解,以实现注册过程中所需的表征,用于开发基于微生物的产品。广泛证明了CPA-8在不同pH温度和水活性(A(W)) - 温度条件下生长的耐受性。关于pH结果,在37℃和7至5之间观察到评估条件下的最佳生长。相反,在20℃和pH 4.5时记录最慢的生长。此外,用于减少(W)的溶质的类型对细菌能够生长的最小A(W)具有很大影响。用甘油和葡萄糖改性的培养基中的CPA-8生长的最低A(W)值分别为0.950和0.960。此外,当温度降低至20℃时,CPA-8生长的最低A(W)增加,其中CPA-8不能以小于0.990a(w),而不管溶质的类型。进行抗生素易感性测试以确定哪种抗生素可能影响细菌的行为,并显示CPA-8显着抵抗潮霉素。最后,还进行了PCR扩增测定以检测CPA-8中芽孢杆菌肠毒性基因的存在。 CPA-8除了NHEA基因外,对所有基因的所有基因进行了负面结果,这对于毒性表达不足,这表明用这种拮抗剂治疗的果实不会是食物造成疾病的潜在车辆。

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    IRTA XaRTA Postharvest Edifici Fruitctr Parc Cient &

    Tecnol Agroalimenta Lleida 25003 Catalonia Spain;

    IRTA XaRTA Postharvest Edifici Fruitctr Parc Cient &

    Tecnol Agroalimenta Lleida 25003 Catalonia Spain;

    IRTA XaRTA Postharvest Edifici Fruitctr Parc Cient &

    Tecnol Agroalimenta Lleida 25003 Catalonia Spain;

    IRTA XaRTA Postharvest Edifici Fruitctr Parc Cient &

    Tecnol Agroalimenta Lleida 25003 Catalonia Spain;

    IRTA XaRTA Postharvest Edifici Fruitctr Parc Cient &

    Tecnol Agroalimenta Lleida 25003 Catalonia Spain;

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  • 正文语种 eng
  • 中图分类 微生物学;
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