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首页> 外文期刊>Journal of applied microbiology >Characterization of Saccharomyces cerevisiae strains from spontaneously fermented maize dough by profiles of assimilation, chromosome polymorphism, PCR and MAL genotyping
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Characterization of Saccharomyces cerevisiae strains from spontaneously fermented maize dough by profiles of assimilation, chromosome polymorphism, PCR and MAL genotyping

机译:通过同化,染色体多态性,PCR和MAL基因分型来表征自发发酵的玉米面团中的酿酒酵母菌株

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摘要

Several isolates of Saccharomyces cerevisiae from indigenous spontaneously fermented maize dough have been characterized with the purpose of selecting appropriate starter cultures and methods for their subspecies typing. The techniques applied included assimilation of carbon compounds by the API ID 32 C kit, determination of chromosome profiles by PFGE, PCR and MAL genotyping. For the 48 isolates investigated, use of the API ID 32 C kit resulted in eight different assimilation profiles. The most common assimilation profile was the ability of 50% of the isolates to assimilate galactose, saccharose, DL-lactate, raffinose, maltose and glucose. Both chromosome and PCR profiles could be used for subspecies typing of the isolates and on this basis, the isolates were grouped into clusters. The discriminative power of the two techniques was equal; a few isolates not separated by their chromosome profiles could be separated by their PCR profiles and vice versa. Four different MAL genotypes were observed with MAL11 and MAL31 predominating. MAL11 was seen for all isolates whereas no evidence of MAL21 and MAL41 was observed. Based on the results obtained, a high number of Saccharomyces cerevisiae isolates were found to be involved throughout the spontaneous fermentation of maize dough. All methods included appeared to be suitable for subspecies typing. However, the discriminative power was highest for the PFGE and PGR techniques.
机译:已经从本地自发发酵的玉米面团中分离出了几种酿酒酵母,目的是为它们的亚种选择合适的发酵剂和方法。应用的技术包括通过API ID 32 C试剂盒吸收碳化合物,通过PFGE,PCR和MAL基因分型确定染色体谱。对于所调查的48个分离株,API ID 32 C试剂盒的使用产生了8种不同的同化图谱。最常见的同化作用是50%的分离物具有吸收半乳糖,蔗糖,DL-乳酸,棉子糖,麦芽糖和葡萄糖的能力。染色体和PCR谱均可用于分离株的亚种分型,并在此基础上将分离株分组。两种技术的判别力是相等的。一些未被其染色体图谱分离的分离株可以被其PCR图谱分离,反之亦然。观察到四种不同的MAL基因型,其中MAL11和MAL31占主导。所有分离物均可见MAL11,而未观察到MAL21和MAL41的迹象。根据获得的结果,发现在整个玉米面团的自发发酵过程中都涉及大量的酿酒酵母。包括的所有方法似乎都适合于亚种分型。但是,对于PFGE和PGR技术,判别力最高。

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