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Photosynthetic regulation of C4 desert plant Haloxylon ammodendron under drought stress

机译:干旱胁迫下C4 荒漠植物梭梭梭的光合调控

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摘要

About 20-year-old desert plants of C4 species, Haloxylon ammodendron, growing at the southern edge of the Badain Jaran Desert in China, were selected to study the photosynthetic characteristics and changes in chlorophyll fluorescence when plants were subject to a normal arid environment (AE), moist atmospheric conditions during post-rain (PR), and the artificial supplement of soil water (SW). Results showed that under high radiation, in the AE, the species down-regulated its net assimilation rate (A) and maximum photochemical efficiency of PS II (Fv/Fm), indicating photoinhibition. However, under the PR and SW environments, A was up-regulated, with a unimodal diurnal course of A and a small diurnal change in Fv/Fm, suggesting no photoinhibition. When the air humidity or SW content was increased, the light compensation points were reduced; light saturation points were enhanced; while light saturated rate of CO2 assimilation (A max) and apparent quantum yield of CO2 assimilation (ΦC) increased. ΦC was higher while the A max was reduced under PR relative to the SW treatment. It was concluded that under high-radiation conditions drought stress causes photoinhibition of H. ammodendron. Increasing air humidity or soil moisture content can reduce photoinhibition and increase the efficiency of solar energy use.
机译:在中国巴丹吉林沙漠南缘生长的大约20年龄的C4物种荒漠植物梭梭(Haloxylon ammodendron)被选为研究植物在受光条件下的光合特性和叶绿素荧光变化的方法。正常干旱环境(AE),雨后潮湿的大气条件(PR)和人工补充的土壤水(SW)。结果表明,在高辐射下,AE中该物种下调了其净同化率(A)和PS II的最大光化学效率(Fv / Fm),表明具有光抑制作用。但是,在PR和SW环境下,A被上调,A的单峰日变化过程以及Fv / Fm的小日变化,表明没有光抑制作用。当增加空气湿度或SW含量时,光补偿点降低;光饱和点增强; CO 2同化的光饱和率(A max)和表观量子产率(ΦC)增加。相对于SW处理,在PR条件下,ΦC较高,而A max减小。可以得出结论,在高辐射条件下干旱胁迫会导致双歧杆菌的光抑制。增加空气湿度或土壤水分含量可以减少光抑制作用并提高太阳能的利用效率。

著录项

  • 来源
    《Plant Growth Regulation》 |2007年第2期|139-147|共9页
  • 作者单位

    Linze Inland River Basin Comprehensive Research Station Cold and Arid Regions Environmental and Engineering Research Institute CAS Lanzhou 730000 China;

    State Key Laboratory of Frozen Soil Engineering Cold and Arid Regions Environmental and Engineering Research Institute CAS Lanzhou 730000 China;

    Linze Inland River Basin Comprehensive Research Station Cold and Arid Regions Environmental and Engineering Research Institute CAS Lanzhou 730000 China;

    Linze Inland River Basin Comprehensive Research Station Cold and Arid Regions Environmental and Engineering Research Institute CAS Lanzhou 730000 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Desert plant; Photoinhibition; Photosynthesis down regulation; Photochemical efficiency; Drought stress;

    机译:荒漠植物;光抑制;光合作用的下调;光化学效率;干旱胁迫;

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