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Redox proteomics and physiological responses in Cistus albidus shrubs subjected to long-term summer drought followed by recovery

机译:遭受长期夏季干旱并随后恢复的长春蝉的氧化还原蛋白质组学和生理反应

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摘要

>Main conclusion>The interaction between enzymatic and non-enzymatic antioxidants, endogenous levels of ABA and ABA-GE, the rapid recuperation of photosynthetic proteins under re-watering as well the high level of antioxidant proteins in previously drought-stressed plants under re-watering conditions, will contribute to drought resistance in plants subjected to a long-term drought stress under Mediterranean field conditions.This work provides an overview of the mechanisms of Cistus albidus acclimation to long-term summer drought followed by re-watering in Mediterranean field conditions. To better understand the molecular mechanisms of drought resistance in these plants, a proteomic study using 2-DE and MALDI-TOF/TOF MS/MS was performed on leaves from these shrubs. The analysis identified 57 differentially expressed proteins in water-stressed plants when contrasted to well watered. Water-stressed plants showed an increase, both qualitatively and quantitatively, in HSPs, and downregulation of photosynthesis and carbon metabolism enzymes. Under drought conditions, there was considerable upregulation of enzymes related to redox homeostasis, DHA reductase, Glyoxalase, SOD and isoflavone reductase. However, upregulation of catalase was not observed until after re-watering was carried out. Drought treatment caused an enhancement in antioxidant defense responses that can be modulated by ABA, and its catabolites, ABA-GE, as well as JA. Furthermore, quantification of protein carbonylation was shown to be a useful marker of the relationship between water and oxidative stress, and showed that there was only moderate oxidative stress in C. albidus plants subjected to water stress. After re-watering plants recovered although the levels of ABA-GE and antioxidant enzymes still remain higher than in well-watered plants. We expect that our results will provide new data on summer acclimation to drought stress in Mediterranean shrubs.
机译:>主要结论 >酶促抗氧化剂和非酶促抗氧化剂之间的相互作用,内源性ABA和ABA-GE的水平,复水条件下光合蛋白的快速恢复以及抗氧化剂中高水平的抗氧化剂以前在再浇水条件下遭受干旱胁迫的植物,将在地中海田间条件下长期遭受干旱胁迫的植物中提高抗旱性。该工作概述了长春花ist(Cistus albidus)适应长期干旱的机制。夏季干旱,然后在地中海田间条件下重新浇水。为了更好地了解这些植物抗旱的分子机制,在这些灌木的叶片上使用2-DE和MALDI-TOF / TOF MS / MS进行了蛋白质组学研究。与水分充足的植物相比,该分析鉴定了水分胁迫植物中57种差异表达的蛋白质。水分胁迫的植物在定性和定量方面显示出HSPs的增加,并且光合作用和碳代谢酶的下调。在干旱条件下,与氧化还原稳态,DHA还原酶,乙二醛酶,SOD和异黄酮还原酶有关的酶明显上调。但是,直到重新浇水后才观察到过氧化氢酶的上调。干旱处理导致抗氧化剂防御反应的增强,可通过ABA及其分解代谢产物ABA-GE和JA进行调节。此外,蛋白质羰基化的定量被证明是水和氧化胁迫之间关系的有用标志,并且表明在遭受水分胁迫的白假丝酵母植物中仅存在中等氧化胁迫。重新浇水后,植物恢复了活力,尽管ABA-GE和抗氧化酶的含量仍然比浇水良好的植物高。我们希望我们的结果将提供有关地中海灌木夏季适应干旱压力的新数据。

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