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Proteomic Analysis Reveals the Leaf Color Regulation Mechanism in Chimera Hosta “Gold Standard” Leaves

机译:蛋白质组学分析揭示了嵌合体“金标准”叶片的叶色调节机制

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摘要

Leaf color change of variegated leaves from chimera species is regulated by fine-tuned molecular mechanisms. Hosta “Gold Standard” is a typical chimera Hosta species with golden-green variegated leaves, which is an ideal material to investigate the molecular mechanisms of leaf variegation. In this study, the margin and center regions of young and mature leaves from Hosta “Gold Standard”, as well as the leaves from plants after excess nitrogen fertilization were studied using physiological and comparative proteomic approaches. We identified 31 differentially expressed proteins in various regions and development stages of variegated leaves. Some of them may be related to the leaf color regulation in Hosta “Gold Standard”. For example, cytosolic glutamine synthetase (GS1), heat shock protein 70 (Hsp70), and chloroplastic elongation factor G (cpEF-G) were involved in pigment-related nitrogen synthesis as well as protein synthesis and processing. By integrating the proteomics data with physiological results, we revealed the metabolic patterns of nitrogen metabolism, photosynthesis, energy supply, as well as chloroplast protein synthesis, import and processing in various leaf regions at different development stages. Additionally, chloroplast-localized proteoforms involved in nitrogen metabolism, photosynthesis and protein processing implied that post-translational modifications were crucial for leaf color regulation. These results provide new clues toward understanding the mechanisms of leaf color regulation in variegated leaves.
机译:嵌合体杂色叶片的叶色变化受微调的分子机制调控。玉“黄金标准”是典型的嵌合玉Host种,具有金绿色的杂色叶子,是研究叶杂色的分子机制的理想材料。在这项研究中,使用生理和比较蛋白质组学方法研究了玉Host“金标准”的幼嫩叶片和成熟叶片的边缘和中心区域,以及过量施氮后来自植物的叶片。我们在杂色叶的各个区域和发育阶段鉴定了31种差异表达的蛋白质。其中一些可能与玉Host“黄金标准”中的叶子颜色调节有关。例如,胞质谷氨酰胺合成酶(GS1),热休克蛋白70(Hsp70)和叶绿体延伸因子G(cpEF-G)参与色素相关的氮合成以及蛋白质的合成和加工。通过将蛋白质组学数据与生理结果相结合,我们揭示了在不同发育阶段的各个叶片区域中氮代谢,光合作用,能量供应以及叶绿体蛋白的合成,导入和加工的代谢模式。此外,参与氮代谢,光合作用和蛋白质加工的叶绿体定位蛋白形式暗示翻译后修饰对于调节叶色至关重要。这些结果为了解杂色叶片中叶色调节的机理提供了新线索。

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