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Culture conditions affect the chemical composition of the exopolysaccharide synthesized by the fungus Aureobasidium pullulans

机译:培养条件影响真菌Aureobasidium pullulans合成的胞外多糖的化学组成

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摘要

Aims: To identify if culture conditions affect the chemical composition of exopolysaccharide (EPS) produced by Aureobasidium pullulans. Methods and Results: In batch airlift and continuously stirred tank (CSTR) reactors the EPS produced with low (0.13 g l)1 N) initial NaNO3 or (NH4)2SO4 levels contained pullulan, with maltotriose as its major component, similar to that synthesized in the airlift reactor with high (0.78 g l)1 N) initial NaNO3 levels. EPS produced by CSTR grown cultures with high (NH4)2SO4 levels contained little pullulan, possibly because of a population shift from unicells to mycelium. This chemical difference may explain why total EPS yields did not fall as they did with cultures grown under identical conditions with high NaNO3 levels, where the pullulan component of the EPS disappeared. EPS synthesized in N-limiting chemostat cultures of A. pullulans changed little with growth rate or N source, being predominantly pullulan consisting of maltotriose units. Conclusions: While the EPS chemical composition changed little under N-limiting conditions, high initial medium N levels determined maltotriose content and / or pullulan content possibly by dictating culture morphology. Significance and Impact of the Study: These results emphasize the requirement of all studies to determine EPS chemical composition when examining the influence of culture conditions on EPS yields. © 2009 The Society for Applied Microbiology.
机译:目的:确定培养条件是否会影响金黄色葡萄球菌产生的胞外多糖(EPS)的化学成分。方法和结果:在间歇式气提和连续搅拌釜(CSTR)反应器中,以低(0.13 gl)1 N)初始NaNO3或(NH4)2SO4含量生产的EPS含有支链淀粉,其中以麦芽三糖为主要成分,与合成方法相似。高(0.78 gl)1 N)初始NaNO3水平的空运反应堆。高(NH4)2SO4含量的CSTR栽培培养物产生的EPS几乎不含支链淀粉,可能是因为种群从单细胞转移到菌丝体。这种化学差异可能解释了为什么总EPS产量没有像在相同条件下以高NaNO3水平生长的培养物下降那样,其中EPS的支链淀粉成分消失了。在A.pululans的N限性化粪池培养物中合成的EPS随生长速率或N来源的变化很小,主要是由麦芽三糖单元组成的pululan。结论:尽管在氮限制条件下EPS化学成分变化不大,但较高的初始中等N水平可能通过指示培养物形态来确定麦芽三糖含量和/或支链淀粉含量。研究的意义和影响:这些结果强调了在检查培养条件对EPS产量的影响时,所有研究都必须确定EPS化学成分的要求。 ©2009年应用微生物学会。

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