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Comparative de novo transcriptomic profiling of the salinity stress responsiveness in contrasting pearl millet lines

机译:对比珍珠小米线上盐度应力反应性的比较De Novo转录组分析

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Pearl millet (Pennisetum glaucwn (L) R. Br.) is a staple crop for more than 90 million poor farmers. It is known for its tolerance against drought, salinity, and high temperature. To understand the molecular mechanisms underlying its salinity tolerance, physiological analyses and a comparative transcriptome analysis between salinity tolerant (ICMB 01222) and salinity susceptible (ICMB 081) lines were conducted under control and salinity conditions. The physiological studies revealed that the tolerant line ICMB 01222 had a higher growth rate and accumulated higher amount of sugar in leaves under salinity stress. Sequencing using the Illumina HiSeq 2500 system generated a total of 977 million reads, and these reads were assembled de novo into contigs corresponding to gene products. A total of 11,627 differentially expressed genes (DEGs) were identified in both lines. These DEGs are involved in various metabolic pathways such as plant hormone signal transduction, mitogen-activated protein kinase signaling pathways, and so on. Genes involved in ubiquitin-mediated proteolysis and phenyl-propanoid biosynthesis pathways were upregulated in the tolerant line. In contrast, unigenes involved in glycolysis/gluconeogenesis and genes for ribosomes were downregulated in the susceptible line. Genes encoding SBPs (SQUAMOSA promoter binding proteins), which are plant-specific transcription factors, were differentially expressed only in the tolerant line. Functional unigenes and pathways that are identified can provide useful clues for improving salinity stress tolerance in pearl millet.
机译:珍珠小米(Pennisetum glaucwn(L)R.Br.)是一个超过9000万贫困农民的主食作物。它已知其耐受干旱,盐度和高温的耐受性。为了了解其盐度耐受性的分子机制,在对照和盐度条件下进行生理分析和盐度耐受性(ICMB 01222)和盐度易感(ICMB 081)线的比较转录组分析。生理研究表明,耐受线ICMB 01222在盐度应力下含有较高的生长速率并积累叶片中的糖量较多。使用Illumina Hiseq 2500系统测序总共产生了977万读数,这些读数将DE Novo组装成对应于基因产品的Contig。在两条线中鉴定了总共11,627个差异表达基因(DEG)。这些DEG涉及各种代谢途径,例如植物激素信号转导,丝裂原激活的蛋白激酶信号传导途径等。涉及遍历蛋白介导的蛋白水解和苯基 - 丙烯酸生物合成途径的基因在耐受线中升高。相反,在易感线中下调糖酵解/糖氨基胺酰胺类糖酵解/葡糖苷和核糖体基因的未成体。编码Sbps(Squamosa启动子结合蛋白)的基因仅在耐受线中差异表达。鉴定的功能unigenes和途径可以提供用于改善珍珠米中的盐度应力耐受的有用线索。

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