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长期盐胁迫下节节麦的转录组分析

Transcriptomic analysis of Aegilops tauschii during long-term salinity stress.

作者信息

Mansouri Mehdi, Naghavi Mohammad Reza, Alizadeh Hoshang, Mohammadi-Nejad Ghasem, Mousavi Seyed Ahmad, Salekdeh Ghasem Hosseini, Tada Yuichi

机构信息

Department of Agricultural Biotechnology, Faculty of Agriculture, Shahid Bahonar University of Kerman, Kerman, Iran.

Agronomy and Plant Breeding Department, Agricultural & Natural Resources College, University of Tehran, Karaj, 31587-11167, Iran.

出版信息

Funct Integr Genomics. 2019 Jan;19(1):13-28. doi: 10.1007/s10142-018-0623-y. Epub 2018 Jun 21.

Abstract

Aegilops tauschii is the diploid progenitor of the bread wheat D-genome. It originated from Iran and is a source of abiotic stress tolerance genes. However, little is known about the molecular events of salinity tolerance in Ae. tauschii. This study investigates the leaf transcriptional changes associated with long-term salt stress. Total RNA extracted from leaf tissues of control and salt-treated samples was sequenced using the Illumina technology, and more than 98 million high-quality reads were assembled into 255,446 unigenes with an average length of 1398 bp and an N50 of 2269 bp. Functional annotation of the unigenes showed that 93,742 (36.69%) had at least a significant BLAST hit in the SwissProt database, while 174,079 (68.14%) showed significant similarity to proteins in the NCBI nr database. Differential expression analysis identified 4506 salt stress-responsive unigenes. Bioinformatic analysis of the differentially expressed unigenes (DEUs) revealed a number of biological processes and pathways involved in the establishment of ion homeostasis, signaling processes, carbohydrate metabolism, and post-translational modifications. Fine regulation of starch and sucrose content may be important features involved in salt tolerance in Ae. tauschii. Moreover, 82% of DEUs mapped to the D-subgenome, including known QTL for salt tolerance, and these DEUs showed similar salt stress responses in other accessions of Ae. tauschii. These results could provide fundamental insight into the regulatory process underlying salt tolerance in Ae. tauschii and wheat and facilitate identification of genes involved in their salt tolerance mechanisms.

摘要

节节麦是普通小麦D基因组的二倍体祖先。它起源于伊朗,是抗逆胁迫基因的一个来源。然而,对于节节麦耐盐性的分子事件了解甚少。本研究调查了与长期盐胁迫相关的叶片转录变化。使用Illumina技术对从对照和盐处理样品的叶片组织中提取的总RNA进行测序,超过9800万个高质量读段被组装成255446个单基因,平均长度为1398 bp,N50为2269 bp。单基因的功能注释表明,93742个(36.69%)在SwissProt数据库中至少有一个显著的BLAST比对结果,而174079个(68.14%)与NCBI nr数据库中的蛋白质具有显著相似性。差异表达分析鉴定出4506个盐胁迫响应单基因。对差异表达单基因(DEU)的生物信息学分析揭示了许多参与离子稳态建立、信号传导过程、碳水化合物代谢和翻译后修饰的生物学过程和途径。淀粉和蔗糖含量的精细调节可能是节节麦耐盐性的重要特征。此外,82%的DEU映射到D亚基因组,包括已知的耐盐QTL,并且这些DEU在节节麦的其他种质中表现出相似的盐胁迫响应。这些结果可以为节节麦和小麦耐盐性的调控过程提供基本见解,并有助于鉴定参与其耐盐机制的基因。

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