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Transcriptome Analysis of Drought Induced Stress in Chenopodium quinoa

机译:藜藜藜干旱的转录组分析

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Quinoa (Chenopodium quinoa Willd.) is a halophytic, allotetraploid grain crop of the Amaranthaceae family with impressive drought tolerance, nutritional content and an increasing worldwide market. Here we report the results of an RNA-seq transcriptome analysis of Chenopodium quinoa using four water treatments (field capacity to drought) on the varieties “Ingapirca” (representing valley ecotypes) and “Ollague” (representing Altiplano Salares ecotypes). Physiological results, including growth rate, photosynthetic rate, stomatal conductance, and stem water potential, support the earlier findings that the Altiplano Salares ecotypes display greater tolerance to drought-like stress conditions than the valley ecotypes. cDNA libraries from root tissue samples for each variety × treatment combination were sequenced using Illumina Hi-Seq technology in an RNA-seq experiment. De novo assembly of the transcriptome generated 20,337 unique transcripts. Gene expression analysis of the RNA-seq data identified 462 putative gene products that showed differential expression based on treatment, and 27 putative gene products differentially expressed based on variety × treatment, including significant expression differences in root tissue in response to increasing water stress. BLAST searches and gene ontology analysis show an overlap between drought tolerance stress and other abiotic stress mechanisms.
机译:藜麦(Chenopodium quinoa Willd。)是the菜科的一种盐生,异源四倍体谷物,具有令人印象深刻的耐旱性,营养成分和不断增长的全球市场。在这里,我们报告了藜麦藜藜RNA-seq转录组分析的结果,该藜麦对“ Ingapirca”(代表山谷生态型)和“ Ollague”(代表高原葡萄型)的四种水处理(田间干旱能力)进行了分析。生理结果,包括生长速率,光合速率,气孔导度和茎水势,支持了较早的发现,即高原生态型比山谷生态型对干旱样胁迫条件的耐受性更高。在RNA-seq实验中,使用Illumina Hi-Seq技术对来自每种组织×处理组合的来自根组织样品的cDNA文库进行测序。转录组的从头组装产生了20,337个独特的转录本。对RNA-seq数据的基因表达分析确定了462种推定的基因产物,这些产物在处理后表现出差异表达,在27种推定的基因产物中,由于品种×处理而表现出差异表达,其中包括根系组织的显着表达差异。 BLAST搜索和基因本体分析表明,耐旱胁迫与其他非生物胁迫机制之间存在重叠。

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