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Photosynthetic traits of Siebold's beech and oak saplings grown under free air ozone exposure in northern Japan

机译:Siebold的山毛榉和橡树幼树在空气中暴露于臭氧下后的光合特性

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摘要

We set up a free-air ozone (O3) exposure system for determining the photosynthetic responses of Siebold’s beech (Fagus crenata) and oak (Quercus mongolica var. crispula) to O3 under field conditions. Ten-year-old saplings of beech and oak were exposed to an elevated O3 concentration (60 nmol mol-1) during daytime from 6 August to 11 November 2011. Ozone significantly reduced the net photosynthetic rate in leaves of both species in October, by 46% for beech and 15% for oak. In beech there were significant decreases in maximum rate of carboxylation, maximum rate of electron transport in photosynthesis, nitrogen content and photosynthetic nitrogen use efficiency, but not in oak. Stomatal limitation of photosynthesis was unaffected by O3. We therefore concluded photosynthesis in beech is more sensitive to O3 than that in oak, and the O3-induced reduction of photosynthetic activity in beech was due not to stomatal closure, but to biochemical limitation.
机译:我们建立了一个自由空气臭氧(O3)暴露系统,用于确定野外条件下Siebold的山毛榉(Fagus crenata)和橡树(Quercus mongolica var。crispula)对O3的光合作用响应。在2011年8月6日至11月11日的白天,山毛榉和橡树的10年幼树苗暴露于升高的O3浓度(60 nmol mol-1)。臭氧在10月份显着降低了两个物种的叶片净光合速率。山毛榉为46%,橡木为15%。在山毛榉中,最大羧化速率,最大光合作用电子传递速率,氮含量和光合氮利用效率显着降低,而在橡树中则没有。 O3不会影响光合作用的气孔限制。因此,我们得出结论,山毛榉中的光合作用对O3的敏感性高于橡树,而O3诱导的山毛榉中光合作用的降低不是由于气孔关闭,而是由于生化限制。

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