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烟草幼苗的从头转录组分析及低钾胁迫下早期响应基因网络的鉴定

De novo transcriptome analysis of tobacco seedlings and identification of the early response gene network under low-potassium stress.

作者信息

Li L Q, Li J, Chen Y, Lu Y F, Lu L M

机构信息

College of Agronomy, Sichuan Agricultural University, Chengdu, China.

College of Agronomy, Sichuan Agricultural University, Chengdu, China

出版信息

Genet Mol Res. 2016 Aug 19;15(3):gmr8599. doi: 10.4238/gmr.15038599.

Abstract

Tobacco is an economically important crop, and its potassium content can greatly affect the quality of tobacco leaves. However, the molecular mechanism involved in potassium starvation in tobacco has not been elucidated to date. In this study, Illumina (Solexa) sequencing technology was used to analyze the transcriptome of tobacco seedlings under low-potassium stress for 6, 12, and 24 h. After analysis, 107,824 assembled unigenes were categorized into 57 GO functional groups, and 31,379 unigenes (29.08%) were clustered into 25 COG categories. A total of 9945 genes were classified into 233 KEGG pathways, and 15,209 SSRs were found among the 107,824 unigenes. Between the two samples, 1034 genes were differentially expressed. Twelve randomly selected gene expression levels were analyzed by quantitative RT-PCR, and the results were highly consistent with those obtained by Solexa sequencing. Our results provide a comprehensive analysis of the gene-regulatory network of tobacco seedlings under low-potassium stress.

摘要

烟草是一种具有重要经济价值的作物,其钾含量会极大地影响烟叶质量。然而,迄今为止,烟草低钾胁迫所涉及的分子机制尚未阐明。在本研究中,利用Illumina(Solexa)测序技术分析了低钾胁迫6小时、12小时和24小时的烟草幼苗转录组。分析后,107,824个组装单基因被归类到57个GO功能组中,31,379个单基因(29.08%)被聚类到25个COG类别中。共有9945个基因被分类到233条KEGG通路中,在107,824个单基因中发现了15,209个SSR。在两个样本之间,有1034个基因差异表达。通过定量RT-PCR分析了随机选择的12个基因的表达水平,结果与Solexa测序获得的结果高度一致。我们的数据为低钾胁迫下烟草幼苗的基因调控网络提供了全面分析。

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