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空心莲子草转录组的从头测序分析揭示了缺钾条件下的基因表达情况。

De novo characterization of the alligator weed (Alternanthera philoxeroides) transcriptome illuminates gene expression under potassium deprivation.

作者信息

Li Liqin, Xu Li, Wang Xiyao, Pan Gang, Lu Liming

机构信息

College of Agronomy, Sichuan Agricultural University, Chengdu 625014, People's Republic of China.

出版信息

J Genet. 2015 Mar;94(1):95-104. doi: 10.1007/s12041-015-0493-1.

Abstract

As one of the three macronutrients, potassium participates in many physiological processes in plant life cycle. Recently, potassium-dependent transcriptome analysis has been reported in Arabidopsis, rice and soybean. Alligator weed is well known, particularly for its strong ability to accumulate potassium. However, the molecular mechanism that underlies potassium starvation responses has not yet been described. In this study, we used Illumina (Solexa) sequencing technology to analyse the root transcriptome information of alligator weed under low potassium stress. Further analysis suggested that 9253 differentially expressed genes (DEGs) were upregulated, and 2138 DEGs were downregulated after seven days of potassium deficiency. These factors included 121 transcription factors, 108 kinases, 136 transporters and 178 genes that were related to stress. Twelve transcription factors were randomly selected for further analysis. The expression level of each transcription factor was confirmed by quantitative RT-PCR, and the results of this secondary analysis were consistent with the results of Solexa sequencing. Enrichment analysis indicated that 10,993 DEGs were assigned to 54 gene ontology terms and 123 KEGG pathways. Approximately 24% of DEGs belong to the metabolic, ribosome and biosynthesis of secondary metabolite KEGG pathways. Our results provide a comprehensive analysis of the gene regulatory network of alligator weed under low potassium stress, and afford a valuable resource for genetic and genomic research on plant potassium deficiency.

摘要

作为三大常量营养素之一,钾参与植物生命周期中的许多生理过程。最近,已报道了拟南芥、水稻和大豆中钾依赖性转录组分析。空心莲子草广为人知,尤其是其强大的钾积累能力。然而,钾饥饿反应的分子机制尚未得到描述。在本研究中,我们使用Illumina(Solexa)测序技术分析低钾胁迫下空心莲子草的根转录组信息。进一步分析表明,缺钾7天后,9253个差异表达基因(DEG)上调,2138个DEG下调。这些因子包括121个转录因子、108个激酶、136个转运蛋白和178个与胁迫相关的基因。随机选择12个转录因子进行进一步分析。通过定量RT-PCR确认每个转录因子的表达水平,二次分析结果与Solexa测序结果一致。富集分析表明,10993个DEG被分配到54个基因本体术语和123个KEGG通路。约24%的DEG属于代谢、核糖体和次生代谢物KEGG通路的生物合成。我们的结果提供了低钾胁迫下空心莲子草基因调控网络的综合分析,并为植物缺钾的遗传和基因组研究提供了宝贵资源。

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