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A Novel Stress-induced Sugarcane Gene Confers Tolerance To Drought, Salt And Oxidative Stress In Transgenic Tobacco Plants.

机译:一个新的胁迫诱导甘蔗基因赋予转基因烟草植物抗旱,耐盐和氧化胁迫的能力。

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摘要

Drought is a major abiotic stress that affects crop productivity worldwide. Sugarcane can withstand periods of water scarcity during the final stage of culm maturation, during which sucrose accumulation occurs. Meanwhile, prolonged periods of drought can cause severe plant losses. In a previous study, we evaluated the transcriptome of drought-stressed plants to better understand sugarcane responses to drought. Among the up-regulated genes was Scdr1 (sugarcane drought-responsive 1). The aim of the research reported here was to characterize this gene. Scdr1 encodes a putative protein containing 248 amino acids with a large number of proline (19%) and cysteine (13%) residues. Phylogenetic analysis showed that ScDR1is in a clade with homologs from other monocotyledonous plants, separate from those of dicotyledonous plants. The expression of Scdr1 in different varieties of sugarcane plants has not shown a clear association with drought tolerance. The overexpression of Scdr1 in transgenic tobacco plants increased their tolerance to drought, salinity and oxidative stress, as demonstrated by increased photosynthesis, water content, biomass, germination rate, chlorophyll content and reduced accumulation of ROS. Physiological parameters, such as transpiration rate (E), net photosynthesis (A), stomatal conductance (gs) and internal leaf CO(2) concentration, were less affected by abiotic stresses in transgenic Scdr1 plants compared with wild-type plants. Overall, our results indicated that Scdr1 conferred tolerance to multiple abiotic stresses, highlighting the potential of this gene for biotechnological applications.
机译:干旱是一种主要的非生物胁迫,会影响全球的农作物生产力。在茎秆成熟的最后阶段,甘蔗可以忍受缺水的时期,在此期间会发生蔗糖积累。同时,长期干旱会造成严重的植物损失。在先前的研究中,我们评估了干旱胁迫植物的转录组,以更好地了解甘蔗对干旱的反应。在上调的基因中有Scdr1(甘蔗干旱反应型1)。本文报道的研究目的是鉴定该基因。 Scdr1编码一个推测的蛋白质,该蛋白质包含248个氨基酸,并带有大量脯氨酸(19%)和半胱氨酸(13%)残基。系统发育分析表明,ScDR1与其他单子叶植物的同源物位于进化枝中。 Scdr1在不同品种的甘蔗植物中的表达尚未显示出与耐旱性的明确关联。通过增加光合作用,水分,生物量,发芽率,叶绿素含量和减少ROS的积累,可以证明转基因烟草植物中Scdr1的过表达提高了其对干旱,盐分和氧化胁迫的耐受性。与野生型植物相比,转基因Scrd1植物的生理参数,例如蒸腾速率(E),净光合作用(A),气孔导度(gs)和内部叶片CO(2)浓度受非生物胁迫的影响较小。总体而言,我们的结果表明Scdr1赋予了对多种非生物胁迫的耐受性,突出了该基因在生物技术应用中的潜力。

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