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De novo transcriptome sequencing and analysis of genes related to salt stress response in Glehnia littoralis

机译:GLEHNIA Littoralis盐胁迫反应相关的基因De Novo转录组测序和分析

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摘要

Soil salinity is one of the major environmental stresses affecting plant growth, development, and reproduction. Salt stress also affects the accumulation of some secondary metabolites in plants. Glehnia littoralis is an endangered medicinal halophyte that grows in coastal habitats. Peeled and dried Glehnia littoralis roots, named Radix Glehniae, have been used traditionally as a Chinese herbal medicine. Although Glehnia littoralis has great ecological and commercial value, salt-related mechanisms in Glehnia littoralis remain largely unknown. In this study, we analysed the transcriptome of Glehnia littoralis in response to salt stress by RNA-sequencing to identify potential salt tolerance gene networks. After de novo assembly, we obtained 105,875 unigenes, of which 75,559 were annotated in public databases. We identified 10,335 differentially expressed genes (DEGs; false discovery rate <0.05 and |log2 fold-change| ≥ 1) between NaCl treatment (GL2) and control (GL1), with 5,018 upregulated and 5,317 downregulated DEGs. To further this investigation, we performed Gene Ontology (GO) analysis and the Kyoto Encyclopaedia of Genes and Genomes (KEGG) pathway analysis. DEGs involved in secondary metabolite biosynthetic pathways, plant signal transduction pathways, and transcription factors in response to salt stress were analysed. In addition, we tested the gene expression of 15 unigenes by quantitative real-time PCR (qRT-PCR) to confirm the RNA-sequencing results. Our findings represent a large-scale assessment of the Glehnia littoralis gene resource, and provide useful information for exploring its molecular mechanisms of salt tolerance. Moreover, genes enriched in metabolic pathways could be used to investigate potential biosynthetic pathways of active compounds by Glehnia littoralis.
机译:土壤盐度是影响植物生长,发展和繁殖的主要环境压力之一。盐胁迫还会影响植物中一些次级代谢物的积累。 Glehnia Littoralis是一种濒临灭绝的药用烟灰,在沿海栖息地生长。被剥皮和干燥的Glehnia Littoralis Roots,名为Nadix Glehniae,传统上用作中草药。虽然Glehnia Littoralis具有巨大的生态和商业价值,但Glehnia Littoralis的盐相关机制仍然很大程度上是未知的。在这项研究中,我们通过RNA测序响应于盐胁迫来分析Glehnia Littoralis的转录组,以鉴定潜在的耐盐性基因网络。在De Novo集会之后,我们获得了105,875人的未成年人,其中75,559人在公共数据库中注释。在NaCl处理(GL2)和对照(GL1)之间,我们鉴定了10,335个差异表达基因(DEGS;假发现率<0.05和1倍),控制(GL1),下降5,018,下调5,317次。为了进一步调查,我们进行基因本体(GO)分析和基因和基因组(KEGG)途径分析的京都百科全书。分析了涉及次级代谢物生物合成途径,植物信号转导途径和转录因子的DEG。此外,我们通过定量实时PCR(QRT-PCR)测试了15个unigenes的基因表达,以确认RNA测序结果。我们的研究结果代表了Glehnia Littoralis基因资源的大规模评估,并提供了探索其耐盐性的有用信息。此外,富含代谢途径的基因可用于通过Glehnia Littoralis研究活性化合物的潜在生物合成途径。

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