首页> 外文期刊>Journal of Cereal Science >Protein mobilization and malting-specific proteinase expression during barley germination.
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Protein mobilization and malting-specific proteinase expression during barley germination.

机译:大麦萌发过程中的蛋白质动员和麦芽特异性蛋白酶表达。

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摘要

Malting is a process of controlled germination and early seedling growth. With appropriate control of grain moisture, environmental conditions, germination time, and kilning conditions, maltsters produce malt with the composition and enzymatic activity needed for brewing. In this study we compared protein mobilization in a widely grown malting barley variety germinated under controlled malting regimens and in a laboratory incubator not optimized for malting. Analysis of malts produced under three regimes showed differences in nitrogen mobilization and expression profiles of some proteinase genes. Many transcript probes changed in abundance during malting, with transcripts from the commercial malting and micromalting series trending similarly. Fewer transcripts showed differential expression between the laboratory germination series and the malting series that corresponded to protein mobilization differentials. Expression differentials that matched protein mobilization differences were seen for previously identified germination proteinases as well as those not previously linked to seed germination. These expression differentials suggest that several proteinases may serve previously unrecognized functions in protein mobilization during germination and early seed growth. Similarity of malting quality results and gene expression profiles in the two malting environments suggest that barley germination in an optimized micromalter is a suitable model system for barley germination in a commercial malting process
机译:制麦是发芽受控和幼苗早期生长的过程。通过适当控制谷物的水分,环境条件,发芽时间和煮沸条件,麦芽生产的麦芽具有酿造所需的组成和酶促活性。在这项研究中,我们比较了在受控麦芽处理条件下发芽的大麦芽大麦品种和未针对麦芽优化的实验室培养箱中的蛋白质动员。在三种情况下产生的麦芽分析表明,氮的动员和某些蛋白酶基因的表达谱不同。在制麦芽过程中,许多转录本探针的丰度发生了变化,来自商业制麦芽和微制麦芽系列的转录本也有相似的趋势。较少的转录本显示了实验室发芽序列和麦芽序列之间的差异表达,其与蛋白质动员差异相对应。对于先前鉴定的发芽蛋白酶以及与种子发芽没有关联的蛋白,可以看到与蛋白质动员差异相匹配的表达差异。这些表达差异表明,几种蛋白酶可能在发芽和种子早期生长过程中,在蛋白动员中发挥了以前无法识别的功能。两种制麦环境中制麦质量结果和基因表达谱的相似性表明,优化的微制麦芽中的大麦发芽是商业制麦过程中大麦发芽的合适模型系统

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