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Mutagenesis induced by high hydrostatic pressure treatment: a useful method to improve the bacterial cellulose yield of a Gluconoacetobacter xylinus strain

机译:高静水压力处理引起的诱变:提高木糖葡糖杆菌菌株细菌纤维素产量的有用方法

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摘要

Bacterial cellulose (BC) is a new biomaterial which has wide application potential in various industries. BC industrialization requires bacterial strains with high BC productivity. The objective of this study is to increase the BC yield of a Gluconoacetobacter xylinus strain through mutagenesis induced by high hydrostatic pressure (HHP) treatment. In this study, the parental strain in its exponential phase was treated at 250 MPa and 25 °C for 15 min to induce mutagenesis using a HHP machine. The HHP-treated strains were incubated in glucose agar plate at 30 °C for 4 days. After the incubation, 50 larger colonies in these plates were randomly selected and cultivated to produce BC membrane in a tailor-made glass vessel, and wet weights of the BC membranes were tested. Compared with the parental strain, 29 mutants showed higher BC yields, of which eight mutants with BC yield >130.00 g/L were initially screened and were then cultivated for five generations to test their genetic stabilities for BC production. Among the eight mutants, M438, a mutant which showed the highest average BC yield (158.56 g/L) and lowest coefficient of variation (2.4%) for five generations, was finally screened as objective mutant. HHP treatment can serve as an effective method to cause mutagenesis in BC-producing bacteria. The HHP-treated strains with significantly higher BC yield than parental strain can be screened from the HHP-induced mutants.
机译:细菌纤维素(BC)是一种新型生物材料,在各种行业中具有广泛的应用潜力。 BC工业化需要具有高BC生产率的细菌菌株。这项研究的目的是通过高静水压(HHP)处理引起的诱变来提高木糖葡糖杆菌的BC产量。在这项研究中,使用HHP机将处于指数期的亲本菌株在250 MPa和25°C下处理15分钟,以诱变。将经HHP处理的菌株在葡萄糖琼脂平板中于30°C孵育4天。温育后,在这些平板中随机选择50个较大的菌落,并在定制的玻璃容器中培养以产生BC膜,并测试BC膜的湿重。与亲本菌株相比,有29个突变体显示出更高的BC产量,其中最初筛选了8个BC产量> 130.00 g / L的突变体,然后进行了5代培养,以测试其遗传稳定性。在这8个突变体中,M 438 是一个连续5代表现出最高平均BC产量(158.56 g / L)和最低变异系数(2.4%)的突变体,最终被选为目标突变体。 HHP处理可作为引起BC生产细菌诱变的有效方法。可以从HHP诱导的突变体中筛选出BC产量明显高于亲本菌株的HHP处理菌株。

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