首页> 美国卫生研究院文献>PLoS Clinical Trials >Deciphering the Hybridisation History Leading to the Lager Lineage Based on the Mosaic Genomes of Saccharomyces bayanus Strains NBRC1948 and CBS380T
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Deciphering the Hybridisation History Leading to the Lager Lineage Based on the Mosaic Genomes of Saccharomyces bayanus Strains NBRC1948 and CBS380T

机译:基于巴氏酵母菌株NBRC1948和CBS380T的镶嵌基因组,解读导致更大家族谱系的杂交历史

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摘要

Saccharomyces bayanus is a yeast species described as one of the two parents of the hybrid brewing yeast S. pastorianus. Strains CBS380T and NBRC1948 have been retained successively as pure-line representatives of S. bayanus. In the present study, sequence analyses confirmed and upgraded our previous finding: S. bayanus type strain CBS380T harbours a mosaic genome. The genome of strain NBRC1948 was also revealed to be mosaic. Both genomes were characterized by amplification and sequencing of different markers, including genes involved in maltotriose utilization or genes detected by array-CGH mapping. Sequence comparisons with public Saccharomyces spp. nucleotide sequences revealed that the CBS380T and NBRC1948 genomes are composed of: a predominant non-cerevisiae genetic background belonging to S. uvarum, a second unidentified species provisionally named S. lagerae, and several introgressed S. cerevisiae fragments. The largest cerevisiae-introgressed DNA common to both genomes totals 70kb in length and is distributed in three contigs, cA, cB and cC. These vary in terms of length and presence of MAL31 or MTY1 (maltotriose-transporter gene). In NBRC1948, two additional cerevisiae-contigs, cD and cE, totaling 12kb in length, as well as several smaller cerevisiae fragments were identified. All of these contigs were partially detected in the genomes of S. pastorianus lager strains CBS1503 (S. monacensis) and CBS1513 (S. carlsbergensis) explaining the noticeable common ability of S. bayanus and S. pastorianus to metabolize maltotriose. NBRC1948 was shown to be inter-fertile with S. uvarum CBS7001. The cross involving these two strains produced F1 segregants resembling the strains CBS380T or NRRLY-1551. This demonstrates that these S. bayanus strains were the offspring of a cross between S. uvarum and a strain similar to NBRC1948. Phylogenies established with selected cerevisiae and non-cerevisiae genes allowed us to decipher the complex hybridisation events linking S. lagerae/S. uvarum/S. cerevisiae with their hybrid species, S. bayanus/pastorianus.
机译:巴氏酵母是被描述为杂交酿造酵母巴氏酵母的两个亲本之一的酵母物种。菌株CBS380 T 和NBRC1948被连续保留为巴耶纳酵母的纯系代表。在本研究中,序列分析证实并升级了我们先前的发现:巴氏链球菌型菌株CBS380 T 包含一个镶嵌基因组。菌株NBRC1948的基因组也被发现是镶嵌的。通过扩增和测序不同的标记物来表征这两个基因组,这些标记物包括与麦芽三糖利用有关的基因或通过阵列-CGH作图检测的基因。与公共酿酒酵母属的序列比较。核苷酸序列显示,CBS380 T 和NBRC1948基因组由以下组成:属于葡萄链球菌的主要非酿酒酵母遗传背景,第二个未命名种,临时命名为啤酒链霉菌,以及一些渗入的啤酒酵母。碎片。这两个基因组共有的最大的啤酒糖渗入DNA的总长度为70kb,并分布在三个重叠群中,即cA,cB和cC。这些在长度和MAL31或MTY1(麦芽三糖转运蛋白基因)的存在方面有所不同。在NBRC1948中,鉴定出了另外两个总计12kb的啤酒酵母重叠群cD和cE,以及几个较小的啤酒酵母片段。所有这些重叠群都在啤酒链霉菌CBS1503(S. monacensis)和CBS1513( S。carlsbergensis )的基因组中部分检测到,这解释了 S的明显共同能力。巴南斯(Bayanus) S。 pastorianus 代谢麦芽三糖。 NBRC1948被证明与 S互育。 uvarum CBS7001。涉及这两个菌株的杂交产生了类似于CBS380 T 或NRRLY-1551菌株的F1分离子。这表明这些 S。巴南氏菌 S之间杂交的后代。 uvarum 和类似于NBRC1948 的菌株。用选定的 cerevisiae 和非 cerevisiae 基因建立的系统发育可以解密复杂的杂交链接 S的事件。啤酒 / S。 uvarum / S。酿酒酵母及其杂交种 S。巴耶努斯/帕斯托里亚努斯。

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