...
首页> 外文期刊>The Plant Cell >A Sister Group Contrast Using Untargeted Global Metabolomic Analysis Delineates the Biochemical Regulation Underlying Desiccation Tolerance in Sporobolus stapfianus
【24h】

A Sister Group Contrast Using Untargeted Global Metabolomic Analysis Delineates the Biochemical Regulation Underlying Desiccation Tolerance in Sporobolus stapfianus

机译:使用未靶向的全局代谢组学分析的姐妹群体对比描述了Sporobolus stapfianus的脱水耐受性背后的生化调节。

获取原文
获取原文并翻译 | 示例
           

摘要

Understanding how plants tolerate dehydration is a prerequisite for developing novel strategies for improving drought tolerance. The desiccation-tolerant (DT) Sporobolus stapfianus and the desiccation-sensitive (DS) Sporobolus pyramidalis formed a sister group contrast to reveal adaptive metabolic responses to dehydration using untargeted global metabolomic analysis. Young leaves from both grasses at full hydration or at 60% relative water content (RWC) and from S. stapfianus at lower RWCs were analyzed using liquid and gas chromatography linked to mass spectrometry or tandem mass spectrometry. Comparison of the two species in the fully hydrated state revealed intrinsic differences between the two metabolomes. S. stapfianus had higher concentrations of osmolytes, lower concentrations of metabolites associated with energy metabolism, and higher concentrations of nitrogen metabolites, suggesting that it is primed metabolically for dehydration stress. Further reduction of the leaf RWC to 60% instigated a metabolic shift in S. stapfianus toward the production of protective compounds, whereas S. pyramidalis responded differently. The metabolomes of S. stapfianus leaves below 40% RWC were strongly directed toward antioxidant production, nitrogen remobilization, ammonia detoxification, and soluble sugar production. Collectively, the metabolic profiles obtained uncovered a cascade of biochemical regulation strategies critical to the survival of S. stapfianus under desiccation.
机译:了解植物如何耐受脱水是开发提高抗旱性的新策略的先决条件。耐干燥性(DT)的Sporobolus stapfianus和干燥性敏感的(DS)的Sporobolus pyramidalis形成了姐妹组对比,使用非靶向全局代谢组学分析揭示了对脱水的适应性代谢反应。使用与质谱法或串联质谱法联用的液​​相色谱和气相色谱法分析了两种草在完全水合或相对水含量(RWC)为60%(RWC)时的幼叶,以及在较低RWCs下的葡萄球菌的幼叶。两种物质在完全水合状态下的比较揭示了两种代谢组之间的内在差异。金黄色葡萄球菌的渗透压浓度较高,与能量代谢相关的代谢物浓度较低,而氮代谢物的浓度较高,表明其在代谢上因脱水应激而致敏。将叶片的RWC进一步降低至60%,可以促使葡萄球菌向保护性化合物的代谢转变,而锥体球菌的反应则有所不同。低于RWC 40%的葡萄球菌叶片的代谢组强烈针对抗氧化剂的生产,固氮,氨解毒和可溶性糖的生产。总的来说,获得的代谢谱揭示了一系列对干枯链球菌存活至关重要的生化调节策略。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号