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首页> 外文期刊>Environmental and experimental botany >PSII photochemistry and carboxylation efficiency in Liriodendron tulipifera under ozone exposure.
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PSII photochemistry and carboxylation efficiency in Liriodendron tulipifera under ozone exposure.

机译:臭氧暴露下鹅掌Li的PSII光化学和羧化效率。

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摘要

Liriodendron tulipifera is an important forest plant which is commonly used in urban environments as a shade tree. Young plants have been exposed (under controlled conditions) to 120 ppb of O3 for 45 consecutive days (5 h d-1). The aim of this investigation was to clarify if O3 limits the physiological performance of L. tulipifera. In treated plants, dynamics related to membrane injury, gas exchange and chlorophyll a fluorescence leads to: (i) increase in lipid peroxidation (maximum value of +78% 15 days after the fumigation, compared to controls); (ii) reduction of photosynthetic activity (up to 66% 28 days after the exposure), twinned with a partial stomatal closure and a store of CO2 in substomatal chambers; (iii) reduction in carboxylation efficiency (-11% at the end of exposure); (iv) damage to PSII, as demonstrated by the increase in the PSII excitation pressure (-57% 28 days after the treatment). On this basis, O3 should be considered very harmful to L. tulipifera, although the reduction of total chlorophylls content and the activation of xanthophyll cycle take place in order to attempt to regulate light absorbed energy limiting oxidative damage.
机译:鹅掌Li 是重要的森林植物,通常在城市环境中用作遮荫树。幼苗(在受控条件下)连续60天(5 h d -1 )暴露于120 ppb O 3 。这项研究的目的是弄清O 3 是否限制了 L的生理性能。郁金香。在处理过的植物中,与膜损伤,气体交换和叶绿素 a 荧光有关的动力学导致:(i)脂质过氧化作用增加(熏蒸后15天的最大值比对照组高+ 78%) ; (ii)光合活性降低(暴露后28天最高可达66%),并伴有部分气孔关闭和气孔下腔内CO 2 的储存; (iii)降低羧化效率(暴露结束时降低-11%); (iv)对PSII的损害,如PSII激发压力升高(治疗后28天为-57%)所证明。在此基础上,应认为O 3 对 L非常有害。郁金香,尽管总叶绿素含量的减少和叶黄素循环的激活是为了试图调节光吸收能量以限制氧化损伤而发生的。

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