花酵母在葡萄酒酒精发酵过程中重新连接中央碳代谢
Emilien Peltier1,2,3, Charlotte Vion1,2, Omar Abou Saada3
1Unité de Recherche Œnologie EA 4577, USC 1366 INRA, Bordeaux INP, ISVV, Université de Bordeaux, Bordeaux, France.
Frontiers in fungal biology
|September 25, 2023
概括
研究人员发现葡萄酒酵母 (Saccharomyces cerevisiae) 的遗传变异与代谢差异有关. 这些变异,通常来自花酵母,解释了葡萄酒发酵中的适应分歧.
科学领域:
- * 微生物学和酵母遗传学
- *新陈代谢适应和进化
背景情况:
- * 自然的等位基变异影响定量特征,并且可能源于化过程中的选择压力.
- *了解这些变异是解读同一物种不同种群的代谢适应的关键.
研究的目的:
- * 在酒发酵过程中研究*Saccharomyces cerevisiae*中中央碳代谢变化的遗传基础.
- *确定负责葡萄酒和花酵母之间的代谢分歧的特定基因和等位基因.
主要方法:
- *采用定量特征位点 (QTL) 绘制,使用来自两个不同的葡萄酒酵母菌株的后代.
- *通过基因工程验证识别的QTL,并分析了403个葡萄酒菌株的等位基因频率.
主要成果:
- *鉴定了14个QTL,其中8个被验证为基因水平,揭示了通常与花酵母等位基因相关的变异.
- * 观察到,花酵母在一个父株中的内移引入了这些关键等位基因.
- * 致病基因与三碳酸循环中的蛋白质组变异相关,氧化物突变和辅因子恒常.
结论:
- *鉴定了导致葡萄酒环境中花和葡萄酒酵母之间的适应差异的遗传因素.
- * 已证明,种内杂交事件有助于酵母碳代谢中的表型变异.
关键词:
在 QTL 时段,你会得到 QTL.这种植物是Saccharomyces cerevisiae.酒精发酵的酒精发酵方式花开酵母花开酵母花开酵母花开链接分析 链接分析这是一个定量遗传遗传学.葡萄酒发酵 葡萄酒发酵酵母酵母是一种酵母.更多相关视频
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