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基于微卫星标记的本土生物乙醇酵母菌株多样性评估。

Microsatellite marker-based assessment of the biodiversity of native bioethanol yeast strains.

机构信息

Laboratório de Pesquisas e Análises Genéticas (PANGENE), Depto de Parasitologia, IBB-UNESP, Botucatu, SP, Brazil.

出版信息

Yeast. 2013 Aug;30(8):307-17. doi: 10.1002/yea.2964. Epub 2013 Jul 19.

Abstract

Although many Brazilian sugar mills initiate the fermentation process by inoculating selected commercial Saccharomyces cerevisiae strains, the unsterile conditions of the industrial sugar cane ethanol fermentation process permit the constant entry of native yeast strains. Certain of those native strains are better adapted and tend to predominate over the initial strain, which may cause problems during fermentation. In the industrial fermentation process, yeast cells are often exposed to stressful environmental conditions, including prolonged cell recycling, ethanol toxicity and osmotic, oxidative or temperature stress. Little is known about these S. cerevisiae strains, although recent studies have demonstrated that heterogeneous genome architecture is exhibited by some selected well-adapted Brazilian indigenous yeast strains that display high performance in bioethanol fermentation. In this study, 11 microsatellite markers were used to assess the genetic diversity and population structure of the native autochthonous S. cerevisiae strains in various Brazilian sugar mills. The resulting multilocus data were used to build a similarity-based phenetic tree and to perform a Bayesian population structure analysis. The tree revealed the presence of great genetic diversity among the strains, which were arranged according to the place of origin and the collection year. The population structure analysis revealed genotypic differences among populations; in certain populations, these genotypic differences are combined to yield notably genotypically diverse individuals. The high yeast diversity observed among native S. cerevisiae strains provides new insights on the use of autochthonous high-fitness strains with industrial characteristics as starter cultures at bioethanol plants.

摘要

尽管许多巴西糖厂通过接种选定的商业酿酒酵母菌株来启动发酵过程,但工业甘蔗乙醇发酵过程的非无菌条件允许本土酵母菌株不断进入。其中一些本土菌株适应性更好,往往会超过初始菌株,这可能会在发酵过程中造成问题。在工业发酵过程中,酵母细胞经常暴露于应激环境条件下,包括长时间的细胞回收、乙醇毒性以及渗透、氧化或温度应激。尽管最近的研究表明,一些经过精心挑选的适应能力强的巴西本土酵母菌株表现出在生物乙醇发酵中具有高性能,其具有不均匀的基因组结构,但对于这些酿酒酵母菌株知之甚少。在这项研究中,使用了 11 个微卫星标记来评估不同巴西糖厂中本土酿酒酵母菌株的遗传多样性和种群结构。所得的多位点数据用于构建基于相似性的表型树,并进行贝叶斯种群结构分析。该树揭示了菌株之间存在巨大的遗传多样性,这些菌株根据起源地和采集年份进行排列。种群结构分析显示种群之间存在基因型差异;在某些种群中,这些基因型差异组合在一起产生了显著基因型多样化的个体。在本土酿酒酵母菌株中观察到的高酵母多样性为使用具有工业特性的本土高适应性菌株作为生物乙醇工厂的起始培养物提供了新的见解。

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