The enigmatical manipulators in the capsule synthesis of Pasteurella multocida: Iron acquisition proteins

Asli Balevi, Aysegul Ilban, Ali Uslu, Zafer Sayin, Ayten Gok, Beatriz Padron, Eda Toslak, Osman Erganis
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Abstract

Aim: Spontaneous capsular loss or capsular changes in Pasteurella multocida can result from repeated laboratory passages, positive or negative regulatory genes, or an unknown gene. This study, it was aimed to compare the properties of phenotypic, genotypic, and biotypic of each non-typical, and typical Pasteu-rella multocida strain, to determine the dominant genes on capsule synthesis. Materials and Methods: Fifty-six strains, which capsular type was determined, and thirty -six, which capsular type was not determined, were used in this study. Multiple linear regression analysis was used based on the presence of dominant genes (serogroup, serotype, toxin, adhesin, iron acquisition, and protectin) in the isolates. Results: When colony morphologies of strains were evaluated of these strains by culture methods, mucoid colony formation was commonly detected in typical strains (87.5%), in contrast to non-typical strains (27.7%). In typical strains, the highest percentages of ptfA, ompA, and tadD genes were 78.57%, 75%, and 69.64%, respectively. In non-typical strains, the highest rates of ompA, ptfA, and tadD genes were 61.1%, 52.78%, and 52.78%, respectively. According to multiple linear regression analysis results, the together hgbA with hgbB genes caused the increase of capsule synthesis in these strains. The presence of the ompA gene in these strains was secondly a induction on these strains. Other genes were not effective in capsule synthesis in these strains. Conclusion: It was determined that the most significant effect in the forming of non-typical P. multocida strains was related to not enough HgbA and HgbB genes. It was supposed that P. multocida may not be heavily encapsulated under iron-restricted conditions. Consequently, P. multocida may change its capsule or lose its capsule related to iron acquisition proteins.
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多杀巴氏杆菌胶囊合成中的神秘操纵因子:铁获取蛋白
目的:多杀性巴氏杆菌自发性荚膜丢失或荚膜改变可能是由实验室反复传代、阳性或阴性调控基因或未知基因引起的。本研究的目的是比较非典型和典型多杀性巴斯德杆菌菌株的表型、基因型和生物型的特性,以确定胶囊合成的优势基因。材料与方法:用56株确定荚膜类型的菌株和36株未确定荚膜类型的菌株进行研究。基于优势基因(血清群、血清型、毒素、粘附素、铁获取和保护蛋白)的存在,采用多元线性回归分析。结果:用培养法评价菌株菌落形态时,典型菌株(87.5%)常见黏液菌落形成,非典型菌株(27.7%)常见黏液菌落形成。在典型菌株中,ptfA、ompA和tadD基因的比例最高,分别为78.57%、75%和69.64%。在非典型菌株中,ompA、ptfA和tadD基因的最高表达率分别为61.1%、52.78%和52.78%。多元线性回归分析结果表明,hgbA和hgbB基因共同作用导致这些菌株的荚膜合成增加。ompA基因在这些菌株中的存在其次是对这些菌株的诱导。其他基因在这些菌株的胶囊合成中不起作用。结论:对非典型多杀假单胞菌菌株形成影响最大的是HgbA和HgbB基因不足。据推测,在限铁条件下,多杀假单胞菌可能不会被大量包裹。因此,多杀假单胞菌可能会改变或失去与铁获取蛋白相关的包膜。
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