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首页> 外文期刊>Molecular & cellular proteomics: MCP >Integrated Physiological, Proteomic, and Metabolomic Analysis of Ultra Violet (UV) Stress Responses and Adaptation Mechanisms in Pinus radiata
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Integrated Physiological, Proteomic, and Metabolomic Analysis of Ultra Violet (UV) Stress Responses and Adaptation Mechanisms in Pinus radiata

机译:紫紫外线(UV)应力反应的综合生理学,蛋白质组学和代谢组分分析,碱

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摘要

Globally expected changes in environmental conditions, especially the increase of UV irradiation, necessitate extending our knowledge of the mechanisms mediating tree species adaptation to this stress. This is crucial for designing new strategies to maintain future forest productivity. Studies focused on environmentally realistic dosages of UV irradiation in forest species are scarce. Pinus spp. are commercially relevant trees and not much is known about their adaptation to UV. In this work, UV treatment and recovery of Pinus radiata plants with dosages mimicking future scenarios, based on current models of UV radiation, were performed in a time-dependent manner. The combined metabolome and proteome analysis were complemented with measurements of + physiological parameters and gene expression. Sparse PLS analysis revealed complex molecular interaction networks of molecular and physiological data. Early responses prevented phototoxicity by reducing photosystem activity and the electron transfer chain together with the accumulation of photoprotectors and photorespiration. Apart from the reduction in photosynthesis as consequence of the direct UV damage on the photosystems, the primary metabolism was rearranged to deal with the oxidative stress while minimizing ROS production. New protein kinases and proteases related to signaling, coordination, and regulation of UV stress responses were revealed. All these processes demonstrate a complex molecular interaction network extending the current knowledge on UV-stress adaptation in pine.
机译:全球预期环境条件的变化,特别是紫外线照射的增加,需要延长介导介导树种适应这种压力的机制的知识。这对于设计未来森林生产力的新策略至关重要。专注于森林物种紫外线辐照的环保剂量的研​​究是稀缺的。 Pinus SPP。是商业相关的树木,并且没有太多了解它们对紫外线的适应。在这项工作中,以时间依赖的方式执行基于UV辐射的当前模型的剂量模仿未来情景的紫外线治疗和恢复。组合的代谢物和蛋白质组分析与+生理参数和基因表达的测量辅酶补充。稀疏的PLS分析显示了分子和生理数据的复杂分子相互作用网络。早期响应通过将光系统活性和电子转移链与光保护剂的积累和光素一起减少光系统活性和电子转移链来防止光毒性。除了光合作用的减少外,由于光电系统上的直接紫外线损伤,重新排列了初级代谢以使氧化应激同时最小化ROS生产。揭示了与信号传导,协调和调节相关的新蛋白激酶和蛋白酶。所有这些过程都展示了复杂的分子交互网络,其在松树中延伸了关于紫外线应力适应的当前知识。

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    Univ Oviedo Fac Biol Plant Physiol Lab Organisms &

    Syst Biol Oviedo Asturias Spain;

    Univ Oviedo Fac Biol Plant Physiol Lab Organisms &

    Syst Biol Oviedo Asturias Spain;

    Univ Oviedo Fac Biol Plant Physiol Lab Organisms &

    Syst Biol Oviedo Asturias Spain;

    Univ Oviedo Fac Biol Plant Physiol Lab Organisms &

    Syst Biol Oviedo Asturias Spain;

    Univ Vienna Fac Life Sci Dept Ecogen &

    Syst Biol Vienna Austria;

    Univ Oviedo Fac Biol Plant Physiol Lab Organisms &

    Syst Biol Oviedo Asturias Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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