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Gene expression and biochemical analysis of cheese-ripening yeasts: focus on catabolism of L-methionine, lactate, and lactose.

机译:干酪成熟酵母的基因表达和生化分析:专注于L-蛋氨酸,乳酸和乳糖的分解代谢。

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摘要

DNA microarrays of 86 genes from the yeasts Debaryomyces hansenii, Kluyveromyces marxianus, and Yarrowia lipolytica were developed to determine which genes were expressed in a medium mimicking a cheese-ripening environment. These genes were selected for potential involvement in lactose/lactate catabolism and the biosynthesis of sulfur-flavored compounds. Hybridization conditions to follow specifically the expression of homologous genes belonging to different species were set up. The microarray was first validated on pure cultures of each yeast; no interspecies cross-hybridization was observed. Expression patterns of targeted genes were studied in pure cultures of each yeast, as well as in coculture, and compared to biochemical data. As expected, a high expression of the LAC genes of K. marxianus was observed. This is a yeast that efficiently degrades lactose. Several lactate dehydrogenase-encoding genes were also expressed essentially in D. hansenii and K. marxianus, which are two efficient deacidifying yeasts in cheese ripening. A set of genes possibly involved in l-methionine catabolism was also used on the array. Y. lipolytica, which efficiently assimilates l-methionine, also exhibited a high expression of the Saccharomyces cerevisiae orthologs BAT2 and ARO8, which are involved in the l-methionine degradation pathway. Our data provide the first evidence that the use of a multispecies microarray could be a powerful tool to investigate targeted metabolism and possible metabolic interactions between species within microbial cocultures.
机译:开发了来自汉逊酵母(Debaryomyces hansenii),马克斯克鲁维酵母(Kluyveromyces marxianus)和解脂耶氏酵母(Yarrowia lipolytica)的86个基因的DNA微阵列,以确定哪些基因在模仿干酪成熟环境的培养基中表达。选择这些基因可能参与乳糖/乳酸分解代谢和含硫风味化合物的生物合成。建立了专门遵循属于不同物种的同源基因表达的杂交条件。首先在每种酵母的纯培养物中验证了微阵列;没有观察到种间交叉杂交。在每种酵母的纯培养物中以及在共培养物中研究了靶基因的表达模式,并将其与生化数据进行了比较。如所期望的,观察到了马克斯克鲁维酵母的LAC基因的高表达。这是一种可以有效降解乳糖的酵母。几个乳酸脱氢酶编码基因也基本上在汉氏梭菌和马克斯克鲁维酵母中表达,这是奶酪成熟中两个有效的脱酸酵母。阵列上还使用了一组可能涉及L-蛋氨酸分解代谢的基因。有效吸收1-蛋氨酸的解脂​​耶氏酵母也表现出高表达酿酒酵母直系同源物BAT2和ARO8,它们参与1-蛋氨酸的降解途径。我们的数据提供了第一个证据,即使用多物种微阵列可能是研究微生物共培养物中目标代谢和物种之间可能的代谢相互作用的有力工具。

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