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Elevated Ozone Concentration Reduces Photosynthetic Carbon Gain but Does Not Alter Leaf Structural Traits Nutrient Composition or Biomass in Switchgrass

机译:较高的臭氧浓度会降低光合碳的吸收但不会改变柳枝Leaf的叶片结构性状营养成分或生物量

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摘要

Elevated tropospheric ozone concentration (O3) increases oxidative stress in vegetation and threatens the stability of crop production. Current O3 pollution in the United States is estimated to decrease the yields of maize (Zea mays) up to 10%, however, many bioenergy feedstocks including switchgrass (Panicum virgatum) have not been studied for response to O3 stress. Using Free Air Concentration Enrichment (FACE) technology, we investigated the impacts of elevated O3 (~100 nmol mol−1) on leaf photosynthetic traits and capacity, chlorophyll fluorescence, the Ball–Woodrow–Berry (BWB) relationship, respiration, leaf structure, biomass and nutrient composition of switchgrass. Elevated O3 concentration reduced net CO2 assimilation rate (A), stomatal conductance (gs), and maximum CO2 saturated photosynthetic capacity (Vmax), but did not affect other functional and structural traits in switchgrass or the macro- (except potassium) and micronutrient content of leaves. These results suggest that switchgrass exhibits a greater O3 tolerance than maize, and provide important fundamental data for evaluating the yield stability of a bioenergy feedstock crop and for exploring O3 sensitivity among bioenergy feedstocks.
机译:对流层臭氧浓度(O3)升高会增加植被的氧化压力,并威胁到作物生产的稳定性。据估计,美国目前的O3污染使玉米(Zea mays)的产量降低多达10%,但是,尚未研究包括柳枝((Panicum virgatum)在内的许多生物能源原料对O3胁迫的响应。使用自由空气富集(FACE)技术,我们研究了升高的O3(〜100 nmol mol −1 )对叶片光合特性和能力,叶绿素荧光,Ball-Woodrow-Berry(BWB)的影响柳枝switch的关系,呼吸,叶片结构,生物量和养分组成升高的O3浓度降低了净CO2同化率(A),气孔导度(gs)和最大CO2饱和光合能力(Vmax),但未影响柳枝or或宏观(钾除外)和微量营养素含量的其他功能和结构性状的叶子。这些结果表明,柳枝switch比玉米具有更好的O3耐受性,并为评估生物能源原料作物的产量稳定性和探索生物能源原料中O3的敏感性提供了重要的基础数据。

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