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不同麦芽品质大麦品种的比较从头转录组分析

Comparative de novo transcriptome analysis of barley varieties with different malting qualities.

作者信息

Leišová-Svobodová Leona, Psota Vratislav, Stočes Štěpán, Vácha Petr, Kučera Ladislav

机构信息

Crop Research Institute, Drnovská, 507 161 06, Prague 6, Czech Republic.

Research Institute of Brewing and Malting, Analytical Testing Laboratory - Malting Institute Brno, Mostecká 971/7, 614 00, Brno, Czech Republic.

出版信息

Funct Integr Genomics. 2020 Nov;20(6):801-812. doi: 10.1007/s10142-020-00750-z. Epub 2020 Sep 18.

Abstract

Barley is one of the most important crops in the world. Barley is used as both food and feed and is important for malt production. Demands for malting quality differ among countries and customs. Malting quality is a complex characteristic involving barley genetics, the environmental conditions during barley growth, and the technological parameters of the malting process. In this study, the hypothesis was that there were no differences between two groups of barley varieties with different but defined malting qualities, which was tested using RNA sequencing during selected stages of malting. In total, 919 differentially transcribed genes between the two barley groups were identified and annotated. Differentially expressed genes (DEGs) were primarily assigned to gene ontology (GO) terms of oxidation-reduction process - oxidoreductase activity, response to stress, carbohydrate metabolic process, and proteolysis - hydrolase activity, and metal ion binding. Genes connected with the plasma membrane and its integral components also play important roles in malting quality. DEG profiles of selected genes in the three malting stages indicate a complex character of malting quality. Many single-nucleotide polymorphisms (SNPs) and insertions and deletions (indels) were identified. SNPs and indels with the best quality were used for primer design. After optimization and validation, five molecular markers were developed for use in barley breeding.

摘要

大麦是世界上最重要的作物之一。大麦既用作食物也用作饲料,并且对麦芽生产很重要。不同国家和习俗对麦芽品质的要求有所不同。麦芽品质是一个复杂的特性,涉及大麦的遗传学、大麦生长期间的环境条件以及麦芽制造过程的技术参数。在本研究中,假设是具有不同但明确麦芽品质的两组大麦品种之间没有差异,这一假设在麦芽制造的选定阶段通过RNA测序进行了检验。总共鉴定并注释了两组大麦之间919个差异转录基因。差异表达基因(DEG)主要被归类到氧化还原过程-氧化还原酶活性、应激反应、碳水化合物代谢过程以及蛋白水解-水解酶活性和金属离子结合等基因本体(GO)术语中。与质膜及其整合成分相关的基因在麦芽品质中也起着重要作用。在三个麦芽制造阶段中选定基因的DEG谱表明麦芽品质具有复杂的特性。鉴定出了许多单核苷酸多态性(SNP)以及插入和缺失(indel)。质量最佳的SNP和indel被用于引物设计。经过优化和验证,开发了五个分子标记用于大麦育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcc5/7585565/e06cd3355bf5/10142_2020_750_Fig1_HTML.jpg

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