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Heat-Responsive Proteomics of a Heat-Sensitive Spinach Variety

机译:热敏菠菜品种的热响应蛋白质组学

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摘要

High temperatures seriously limit plant growth and productivity. Investigating heat-responsive molecular mechanisms is important for breeding heat-tolerant crops. In this study, heat-responsive mechanisms in leaves from a heat-sensitive spinach (Spinacia oleracea L.) variety Sp73 were investigated using two-dimensional gel electrophoresis (2DE)-based and isobaric tags for relative and absolute quantification (iTRAQ)-based proteomics approaches. In total, 257 heat-responsive proteins were identified in the spinach leaves. The abundance patterns of these proteins indicated that the photosynthesis process was inhibited, reactive oxygen species (ROS) scavenging pathways were initiated, and protein synthesis and turnover, carbohydrate and amino acid metabolism were promoted in the spinach Sp73 in response to high temperature. By comparing this with our previous results in the heat-tolerant spinach variety Sp75, we found that heat inhibited photosynthesis, as well as heat-enhanced ROS scavenging, stress defense pathways, carbohydrate and energy metabolism, and protein folding and turnover constituting a conservative strategy for spinach in response to heat stress. However, the heat-decreased biosynthesis of chlorophyll and carotenoid as well as soluble sugar content in the variety Sp73 was quite different from that in the variety Sp75, leading to a lower capability for photosynthetic adaptation and osmotic homeostasis in Sp73 under heat stress. Moreover, the heat-reduced activities of SOD and other heat-activated antioxidant enzymes in the heat-sensitive variety Sp73 were also different from the heat-tolerant variety Sp75, implying that the ROS scavenging strategy is critical for heat tolerance.
机译:高温严重限制了植物的生长和生产力。研究热响应分子机制对于育种耐热作物很重要。在这项研究中,使用基于二维凝胶电泳(2DE)和等压标记的相对和绝对定量(iTRAQ),研究了热敏菠菜(Spinacia oleracea L.)Sp73叶片中的热响应机制。蛋白质组学方法。在菠菜叶中总共鉴定出257种热响应蛋白。这些蛋白质的丰度模式表明,菠菜Sp73响应高温,其光合作用受到抑制,启动了活性氧(ROS)清除途径,并促进了蛋白质的合成和更新,碳水化合物和氨基酸代谢。通过与耐热菠菜Sp75的先前结果进行比较,我们发现热抑制光合作用以及热增强的ROS清除,压力防御途径,碳水化合物和能量代谢以及蛋白质折叠和周转构成了保守策略菠菜响应热应激。然而,Sp73品种中叶绿素和类胡萝卜素的热合成生物减少以及可溶性糖含量与Sp75品种完全不同,导致Sp73在热胁迫下的光合适应能力和渗透稳态能力较低。此外,热敏感品种Sp73中SOD和其他热活化抗氧化酶的减热活性也与耐热品种Sp75不同,这表明ROS清除策略对于耐热性至关重要。

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