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首页> 外文期刊>Applied Biochemistry and Biotechnology >Overproduction of Glucoamylase by a Deregulated Mutant of a Thermophilic Mould Thermomucor indicae-seudaticae
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Overproduction of Glucoamylase by a Deregulated Mutant of a Thermophilic Mould Thermomucor indicae-seudaticae

机译:嗜热的霉菌Thermomucor indicae-seudaticae的失控突变体过量生产葡糖淀粉酶。

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Thermomucor indicae-seudaticae, a glucoamylase-producing thermophilic mould, was mutagenised using nitrous acid and gamma (60Co) irradiation in a sequential manner to isolate deregulated mutants for enhanced production of glucoamylase. The mutants were isolated on Emerson YpSs agar containing a non-metabolisable glucose analogue 2-deoxy-d-glucose (2-DG) for selection. The preliminary screening for glucoamylase production using starch–iodine plate assay followed by quantitative confirmation in submerged fermentation permitted the isolation of several variants showing varying levels of derepression and glucoamylase secretion. The mutant strain T. indicae-seudaticae CR19 was able to grow in the presence of 0.5 g l?1 2-DG and produced 1.8-fold higher glucoamylase. As with the parent strain, glucoamylase production by T. indicae-seudaticae CR19 in 250-ml Erlenmeyer flasks attained a peak in 48 h of fermentation, showing higher glucoamylase productivity (0.67 U ml?1 h?1) than the former (0.375 U ml?1 h?1). A large-scale cultivation in 5-l laboratory bioreactor confirmed similar fermentation profiles, though the glucoamylase production peak was attained within 36 h attributable to the better control of process parameters. Although the mutant grew slightly slow in the presence of 2-DG and exhibited less sporulation, it showed faster growth on normal Emerson medium with a higher specific growth rate (0.138 h?1) compared to the parent strain (0.123 h?1). The glucoamylase produced by both strains was optimally active at 60 °C and pH 7.0 and displayed broad substrate specificity by cleaving α-1,4- and α-1,6-glycosidic linkages in starch, amylopectin, amylose and pullulan. Improved productivity and higher specific growth rate make T. indicae-seudaticae CR19 a useful strain for glucoamylase production.
机译:依次使用亚硝酸和γ(60Co)辐射诱变产葡糖淀粉酶的嗜热霉-嗜热霉,以提高葡糖淀粉酶的产量。在含有不可代谢的葡萄糖类似物2-脱氧-d-葡萄糖(2-DG)的艾默生YpSs琼脂上分离突变体以供选择。通过使用淀粉-碘平板分析法初步筛选葡糖淀粉酶的产生,然后在浸没发酵中进行定量确认,可以分离出显示出不同水平的抑制和葡糖淀粉酶分泌的多种变体。突变株印度线虫-seudaticae CR19能够在0.5 g l?1 2-DG存在下生长,并产生高出1.8倍的葡糖淀粉酶。与亲本菌株一样,在250 ml锥形瓶中,印度圆线虫CR19产生的淀粉淀粉酶在发酵48小时达到峰值,显示出较高的葡糖淀粉酶生产率(0.67 U ml?1 h?1 ),比前者(0.375 U ml?1 h?1 )高。在5-l实验室生物反应器中进行的大规模培养确认了相似的发酵特性,尽管归因于对工艺参数的更好控制,葡糖淀粉酶的产量峰值在36小时内达到。尽管该突变体在2-DG存在下生长稍慢并且孢子形成较少,但是与亲本菌株(0.123 h)相比,它在正常的艾默生培养基上显示出更快的生长,具有更高的比生长速率(0.138 h?1 )。 ?1 )。两种菌株产生的葡糖淀粉酶在60°C和pH 7.0时均具有最佳活性,并通过切割淀粉,支链淀粉,直链淀粉和支链淀粉中的α-1,4-和α-1,6-糖苷键显示出广泛的底物特异性。生产率提高和比生长速率提高,使得印度印度丁草CR19成为生产葡糖淀粉酶的有用菌株。

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