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De novo transcriptome analysis of Viola ×wittrockiana exposed to high temperature stress

机译:高温胁迫下中提琴的从头转录组分析

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摘要

Around the world, pansies are one of the most popular garden flowers, but they are generally sensitive to high temperatures, and this limits the practicality of planting them during the warmest days of the year. However, a few pansy germplasms with improved heat tolerance have been discovered or bred, but the mechanisms of their heat resistance are not understood. In this study, we investigated the transcript profiles of a heat-tolerant pansy inbred line, DFM16, in response to high temperatures using RNAseq. Approximately 55.48 Gb of nucleotide data were obtained and assembled into 167,576 unigenes with an average length of 959 bp, of which, 5,708 genes were found to be differentially expressed after heat treatments. Real-time qPCR was performed to validate the expression profiles of the selected genes. Nine metabolic pathways were found to be significantly enriched, in the analysis of the differentially expressed genes. Several potentially interesting genes that encoded putative transcription regulators or key components involving heat shock protein (HSP), heat shock transcription factors (HSF), and antioxidants biosynthesis, were identified. These genes were highlighted to indicate their significance in response to heat stress and will be used as candidate genes to improve pansy heat-tolerance in the future.
机译:紫罗兰是世界上最受欢迎的花园花之一,但它们通常对高温敏感,因此限制了在一年中最温暖的日子种植它们的实用性。然而,已经发现或培育了一些具有改善的耐热性的三色堇种质,但是其耐热机理尚不清楚。在这项研究中,我们调查了耐高温的三色堇自交系DFM16的转录本谱,使用RNAseq响应高温。获得了大约55.48 Gb的核苷酸数据,并将其组装成167,576个单基因,平均长度为959 bp,其中发现5,708个基因在热处理后差异表达。进行实时qPCR以验证所选基因的表达谱。在差异表达基因的分析中,发现九种代谢途径显着丰富。确定了几个可能有趣的基因,这些基因编码推测的转录调节因子或涉及热激蛋白(HSP),热激转录因子(HSF)和抗氧化剂生物合成的关键成分。这些基因被突出显示以表明它们对热应激的响应的重要性,并将在将来用作候选基因以提高三色堇的耐热性。

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