首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Prediction of Flocculation Ability of Brewing Yeast Inoculates by Flow Cytometry, Proteome Analysis, and mRNA Profiling
【24h】

Prediction of Flocculation Ability of Brewing Yeast Inoculates by Flow Cytometry, Proteome Analysis, and mRNA Profiling

机译:流式细胞术,蛋白质组分析和mRNA谱分析预测酿造酵母菌的絮凝能力

获取原文
获取原文并翻译 | 示例
           

摘要

The ability of brewing yeast to flocculate is an important feature for brewing of qualitatively good beer. Flocculation involves two main cell wall structures, which are the flocculation proteins (flocculins) and mannans, to which these flocculins bind. Unfortunately, in practice, the flocculation ability may get lost after several repitches. Flow cytometry was employed to analyze glucose and mannose structures of the cell surface by application of fluorescent lectins. Validation of the expression of the flocculin genes Lg-FLO1, FLO1, FLO5, and FLO9 was carried out using microarray techniques. SDS-PAGE, western blot, and ESI-MS/MS analyses served to isolate and determine yeast cell flocculins. Mannose and glucose labeling with fluorescent lectins allowed differentiating powdery and flocculent yeast cells under laboratory conditions. Using microarray techniques and proteomics, the four flocculation genes Lg-FLO1, FLO1, FLO5, FLO9, and the protein Lg-Flo1p were identified as factors of major importance for flocculation. The expression of the genes was several times higher in flocculent yeast cells than in powdery ones. Flow cytometry is a fast and simple method to quantify the proportions of powdery and flocculent yeast cells in suspensions under defined cultivation conditions. However, differentiation under industrial conditions will require mRNA and protein expression profiling.
机译:酿造酵母絮凝的能力是酿造高质量啤酒的重要特征。絮凝涉及两个主要的细胞壁结构,即絮凝蛋白(絮凝素)和甘露聚糖,这些絮凝蛋白与之结合。不幸的是,在实践中,几次重击后絮凝能力可能会丧失。流式细胞术用于通过应用荧光凝集素分析细胞表面的葡萄糖和甘露糖结构。使用微阵列技术验证了絮凝蛋白基因Lg-FLO1,FLO1,FLO5和FLO9的表达。 SDS-PAGE,蛋白质印迹和ESI-MS / MS分析可用于分离和确定酵母细胞絮凝蛋白。用荧光凝集素标记甘露糖和葡萄糖可以在实验室条件下区分粉末状和絮凝的酵母细胞。使用微阵列技术和蛋白质组学,四个絮凝基因Lg-FLO1,FLO1,FLO5,FLO9和蛋白Lg-Flo1p被确定为絮凝的重要因素。基因的表达在絮凝酵母细胞中比在粉状酵母细胞中高几倍。流式细胞仪是一种快速简便的方法,用于在定义的培养条件下定量悬浮液中粉状和絮凝酵母细胞的比例。但是,在工业条件下进行分化将需要mRNA和蛋白质表达谱分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号