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酿酒酵母中的多个α-葡萄糖苷转运蛋白基因。

Multiple alpha-glucoside transporter genes in brewer's yeast.

作者信息

Jespersen L, Cesar L B, Meaden P G, Jakobsen M

机构信息

Department of Dairy and Food Science, Royal Veterinary and Agricultural University, 1958 Frederiksberg C, Denmark.

出版信息

Appl Environ Microbiol. 1999 Feb;65(2):450-6. doi: 10.1128/AEM.65.2.450-456.1999.

Abstract

Maltose and maltotriose are the two most abundant fermentable sugars in brewer's wort, and the rate of uptake of these sugars by brewer's yeast can have a major impact on fermentation performance. In spite of this, no information is currently available on the genetics of maltose and maltotriose uptake in brewing strains of yeast. In this work, we studied 30 brewing strains of yeast (5 ale strains and 25 lager strains) with the aim of examining the alleles of maltose and maltotriose transporter genes contained by them. To do this, we hybridized gene probes to chromosome blots. Studies performed with laboratory strains have shown that maltose utilization is conferred by any one of five unlinked but highly homologous MAL loci (MAL1 to MAL4 and MAL6). Gene 1 at each locus encodes a maltose transporter. All of the strains of brewer's yeast examined except two were found to contain MAL11 and MAL31 sequences, and only one of these strains lacked MAL41. MAL21 was not present in the five ale strains and 12 of the lager strains. MAL61 was not found in any of the yeast strains. In three of the lager strains, there was evidence that MAL transporter gene sequences occurred on chromosomes other than those known to carry MAL loci. Sequences corresponding to the AGT1 gene, which encodes a transporter of several alpha-glucosides, including maltose and maltotriose, were detected in all but one of the yeast strains. Homologues of AGT1 were identified in three of the lager strains, and two of these homologues were mapped, one to chromosome II and the other to chromosome XI. AGT1 appears to be a member of a family of closely related genes, which may have arisen in brewer's yeast in response to selective pressure.

摘要

麦芽糖和麦芽三糖是啤酒麦芽汁中含量最丰富的两种可发酵糖,酿酒酵母对这些糖的摄取速率会对发酵性能产生重大影响。尽管如此,目前尚无关于酵母酿造菌株中麦芽糖和麦芽三糖摄取遗传学的信息。在这项研究中,我们研究了30株酵母酿造菌株(5株艾尔啤酒菌株和25株贮藏啤酒菌株),目的是检测它们所含的麦芽糖和麦芽三糖转运蛋白基因的等位基因。为此,我们将基因探针与染色体印迹进行杂交。对实验室菌株进行的研究表明,麦芽糖的利用由五个不连锁但高度同源的MAL基因座(MAL1至MAL4和MAL6)中的任何一个赋予。每个基因座的基因1编码一种麦芽糖转运蛋白。除两株外,所有检测的酿酒酵母菌株均含有MAL11和MAL31序列,且这些菌株中只有一株缺乏MAL41。MAL21在5株艾尔啤酒菌株和12株贮藏啤酒菌株中不存在。在任何酵母菌株中均未发现MAL61。在3株贮藏啤酒菌株中,有证据表明MAL转运蛋白基因序列出现在已知携带MAL基因座的染色体以外的染色体上。在除一株外的所有酵母菌株中均检测到与AGT1基因相对应的序列,该基因编码包括麦芽糖和麦芽三糖在内的几种α-葡萄糖苷的转运蛋白。在3株贮藏啤酒菌株中鉴定出AGT1的同源物,其中两个同源物被定位,一个定位于染色体II,另一个定位于染色体XI。AGT1似乎是一个密切相关基因家族的成员,该家族可能是酿酒酵母在选择性压力下产生的。

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