首页> 外文期刊>Revista de microbiologia >Molecular variations in Vibrio alginolyticus and V. harveyi in shrimp-farming systems upon stress
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Molecular variations in Vibrio alginolyticus and V. harveyi in shrimp-farming systems upon stress

机译:虾养殖系统中溶藻弧菌和哈维弧菌在胁迫下的分子变化

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A study was performed to investigate the genomic variations in the shrimp farm isolates of Vibrio alginolyticus and V. harveyi when the isolates were subjected to environmental stress. Samples of shrimps, water and sediment were collected from Southern Indian coastal shrimp farms. Vibrio isolates were biochemically identified and confirmed using 16S rDNA and gyrB gene specific PCR. The bacterial strains were genotyped by PCR fingerprinting using GTG(5) and IS (Insertion Sequence) primers. Seven strains each of V. alginolyticus and V. harveyi were subjected to 10 passages through trypticase soya broth (TSB), which contained different NaCl concentrations (3, 6 and 8%) and trypticase soya agar (TSA). V. alginolyticus was also passaged through TSB with a 12% NaCl concentration. PCR fingerprinting, which was performed on the strains that were passaged through different salt concentrations, confirmed that V. alginolyticus and V. harveyi could affect the genomic variations, depending on the environmental conditions of the culture. The study highlights the complex genotypic variations that occur in Vibrio strains of tropical aquatic environment because of varied environmental conditions, which result in genetic divergence and/or probable convergence. Such genetic divergence and/or convergence can lead to the organismal adaptive variation, which results in their ability to cause a productive infection in aquatic organisms or generation of new strains.
机译:进行了一项研究以调查溶藻弧菌和哈维弧菌对虾养殖场分离株在受到环境胁迫时的基因组变异。从印度南部沿海对虾养殖场收集了虾,水和沉积物的样本。使用16S rDNA和gyrB基因特异性PCR对生弧菌进行了生化鉴定和确认。使用GTG(5)和IS(插入序列)引物通过PCR指纹图谱对细菌菌株进行基因分型。分别对溶藻弧菌和哈维弧菌的7个菌株进行10次传代,分别通过含有不同NaCl浓度(3、6和8%)和胰蛋白酶大豆琼脂(TSA)的胰蛋白酶大豆肉汤(TSB)。溶藻弧菌还以12%NaCl浓度通过TSB。对通过不同盐浓度传代的菌株进行的PCR指纹图谱确认,根据培养的环境条件,溶藻弧菌和哈氏弧菌可能会影响基因组变异。该研究突出了热带水生环境弧菌菌株中复杂的基因型变异,原因是环境条件各异,这导致遗传差异和/或可能的趋同。这种遗传差异和/或融合可能导致生物适应性变异,从而导致其在水生生物中引起生产性感染或产生新品系的能力。

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