INHIBITION OF PHOTOSYNTHESIS AND LEAF CONDUCTANCE INTERACTIONS INDUCED BY SO2, NO2 AND SO2+NO2

被引:4
作者
BENNETT, JH [1 ]
LEE, EH [1 ]
HEGGESTAD, HE [1 ]
机构
[1] USDA ARS, BELTSVILLE AGR RES CTR, PLANT STRESS LAB, BELTSVILLE, MD 20705 USA
来源
ATMOSPHERIC ENVIRONMENT PART A-GENERAL TOPICS | 1990年 / 24卷 / 03期
关键词
air pollutants; CO[!sub]2[!/sub] uptake; synergism;
D O I
10.1016/0960-1686(90)90010-K
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Effects of 2-h exposures to 0-1 μmol mol-1 SO2, NO2 and (1:1) SO2 + NO2 on CO2 uptake by standardized snap bean leaves were studied. Interactions resulting from pollutant-induced changes in leaf conductance were evaluated. Minimum exposure concentrations required to depress CO2 exchange rates (CER) under the test conditions were:0.17 μmol mol-1 SO2, 0.38 μmol mol-1 NO2, and 0.08 μmol mol-1 of each pollutant in the 1:1 mixture. Treatments with 1 μmol mol-1 NO2 reduced CER 10% without affecting leaf conductance. One μmol mol-1 SO2 depressed CER by 50%. Leaf conductances increased in SO2-treated leaves showing 30% inhibition of CER. Greater inhibition led to subsequent stomatal closure. Inhibition caused by the individual pollutants (applied singly) was linear over the range of concentrations investigated. The dual-pollutant mixture produced a synergistic response that was most pronounced at the lower pollutant concentrations. The potentiated effect was correlated with marked stomatal closure. Experimental plants for this study were grown under low moisture stress conditions to enhance stomatal opening in the plant stock material and reduce (damp) the potential for further SO2-induced stimulation of stomatal opening. The experiments were designed to obtain limiting data for the test conditions. © 1990.
引用
收藏
页码:557 / 562
页数:6
相关论文
共 50 条
  • [31] Long-Term Trends of Anthropogenic SO2, NOx, CO, and NMVOCs Emissions in China
    Sun, W.
    Shao, M.
    Granier, C.
    Liu, Y.
    Ye, C. S.
    Zheng, J. Y.
    EARTHS FUTURE, 2018, 6 (08) : 1112 - 1133
  • [32] An inter-comparative evaluation of PKU-FUEL global SO2 emission inventory
    Luo, Jinmu
    Han, Yunman
    Zhao, Yuan
    Liu, Xinrui
    Huang, Yufei
    Wang, Linfei
    Chen, Kaijie
    Tao, Shu
    Liu, Junfeng
    Ma, Jianmin
    SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 722
  • [33] Emission Inventory of Pollutants (CO, SO2, PM2.5, and NOx) In Jakarta Indonesia
    Lestari, Puji
    Damayanti, Seny
    Arrohman, Maulana Khafid
    15TH INTERNATIONAL CONFERENCE ON ATMOSPHERIC SCIENCES AND APPLICATIONS TO AIR QUALITY, 2020, 489
  • [34] A risk assessment of potential agricultural losses due to ambient SO2 in the central regions of Chile
    Garcia-Huidobro, T
    Marshall, FM
    Bell, JNB
    ATMOSPHERIC ENVIRONMENT, 2001, 35 (29) : 4903 - 4915
  • [35] SO2 sorption by activated carbon supported ionic liquids under simulated atmospheric conditions
    Severa, Godwin
    Bethune, Keith
    Rocheleau, Richard
    Higgins, Scott
    CHEMICAL ENGINEERING JOURNAL, 2015, 265 : 249 - 258
  • [36] Synergistic effect of halide ions on the corrosion inhibition of aluminium in H2SO4 using 2-acetylphenothiazine
    Ebenso, EE
    MATERIALS CHEMISTRY AND PHYSICS, 2003, 79 (01) : 58 - 70
  • [37] Mitochondria targeted and immobilized ratiometric NIR fluorescent probe for investigating SO2 phytotoxicity in plant mitochondria
    Chen, Xiaodong
    Chen, Qian
    He, Dan
    Yang, Sanxiu
    Yang, Yunfei
    Qian, Jing
    Long, Lingliang
    Wang, Kun
    SENSORS AND ACTUATORS B-CHEMICAL, 2022, 370
  • [38] The impact of NOx and SO2 emissions from a magnesite processing industry on morphophysiological and anatomical features of plant bioindicators
    Brito Kateivas, Katielle Silva
    Ramos Cairo, Paulo Araquem
    Neves, Pedro Henrique Santos
    Silva Ribeiro, Roger Sebastian
    Machado, Leohana Martins
    Espolador Leitao, Carlos Andre
    ACTA PHYSIOLOGIAE PLANTARUM, 2022, 44 (08)
  • [39] Global review of national ambient air quality standards for PM10 and SO2 (24 h)
    Vahlsing, Candace
    Smith, Kirk R.
    AIR QUALITY ATMOSPHERE AND HEALTH, 2012, 5 (04) : 393 - 399
  • [40] Identification of ambient SO2 sources in industrial areas in the lower Athabasca oil sands region of Alberta, Canada
    Bari, Aynul
    Kindzierski, Warren B.
    Roy, Prabal
    ATMOSPHERIC ENVIRONMENT, 2020, 231