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首页> 外文期刊>Journal of Plant Physiology >Drought stress has contrasting effects on antioxidant enzymes activity and phenylpropanoid biosynthesis in Fraxinus ornus leaves: an excess light stress affair?.
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Drought stress has contrasting effects on antioxidant enzymes activity and phenylpropanoid biosynthesis in Fraxinus ornus leaves: an excess light stress affair?.

机译:干旱胁迫对水曲柳叶片中的抗氧化酶活性和苯丙烷类生物合成具有相反的影响:过度的轻度胁迫。

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The experiment was conducted using Fraxinus ornus plants grown outside under full sunlight irradiance, and supplied with 100% (well-watered, WW), 40% (mild drought, MD), or 20% (severe drought, SD) of the daily evapotranspiration demand, with the main objective of exploring the effect of excess light stress on the activity of antioxidant enzymes and phenylpropanoid biosynthesis. Net CO2 assimilation rate at saturating light and daily assimilated CO2 were significantly smaller in SD than in WW and MD plants. Xanthophyll-cycle pigments supported nonphotochemical quenching to a significantly greater extent in SD than in MD and WW leaves. As a consequence, the actual efficiency of PSII ([Greek capital Phi](PSII)) was smaller, while the excess excitation-energy in the photosynthetic apparatus was greater in SD than in WW or MD plants. The concentrations of violaxanthin-cycle pigments relative to total chlorophyll (Chl(tot)) exceeded 200 mmol mol-1 Chl(tot) in SD leaves at the end of the experiment. This leads to hypothesize for zeaxanthin a role not only as nonphotochemical quencher, but also as chloroplast antioxidant. Reductions in ascorbate peroxidase and catalase activities, as drought-stress progressed, were paralleled by greater accumulations of esculetin and quercetin 3-O-glycosides, both phenylpropanoids having effective capacity to scavenge H2O2. The drought-induced accumulation of esculetin and quercetin 3-O-glycosides in the vacuoles of mesophyll cells is consistent with their putative functions as reducing agents for H2O2 in excess light-stressed leaves. Nonetheless, the concentration of H2O2 and the lipid peroxidation were significantly greater in SD than in MD and WW leaves. It is speculated that vacuolar phenylpropanoids may constitute a secondary antioxidant system, even on a temporal basis, activated upon the depletion of primary antioxidant defences, and aimed at keeping whole-cell H2O2 within a sub-lethal concentration range
机译:该实验是使用在完全日光照射下在室外生长的水曲柳植物进行的,并提供每日蒸散量的100%(水量充足,WW),40%(轻度干旱,MD)或20%(严重干旱,SD)需求,主要目的是探索过量的光胁迫对抗氧化酶和苯丙烷生物合成活性的影响。 SD中饱和光下的净CO2同化率和每日同化CO2显着小于WW和MD植物。叶黄素循环色素在SD中的非光化学猝灭程度比在MD和WW叶片中大得多。结果,PSII的实际效率(希腊大写Φ(PSII))较小,而SD中的光合作用设备中的过量激发能量大于WW或MD工厂中的。实验结束时,SD叶中的紫黄质循环色素相对于总叶绿素(Chl(tot))的浓度超过200 mmol mol-1 Chl(tot)。这导致推测玉米黄质不仅起非光化学猝灭剂的作用,而且还起叶绿体抗氧化剂的作用。随着干旱胁迫的进行,抗坏血酸过氧化物酶和过氧化氢酶活性的降低与七叶红素和槲皮素3-O-糖苷的大量积聚并存,这两种苯基丙烷均具有清除H2O2的有效能力。干旱引起的七叶草素和槲皮素3-O-糖苷在叶肉细胞液泡中的积累与其在过量光胁迫下作为H2O2还原剂的假定功能相一致。尽管如此,SD中的H2O2浓度和脂质过氧化作用显着高于MD和WW叶片。据推测,液泡状苯丙烷类可能构成次级抗氧化剂系统,即使在时间上也是如此,一旦耗尽初级抗氧化剂的防御能力便被激活,并旨在将全细胞H2O2保持在亚致死浓度范围内。

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