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Abiotic Stress Tolerance in Grasses. From Model Plants to Crop Plants

机译:草中的非生物胁迫耐受性。从示范植物到农作物

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摘要

Abiotic stresses, notably extremes in temperature, photon irradiance, and supplies of water and inorganic solutes, frequently limit growth and productivity of major crop species such as wheat (Triticum aestivum; http://www.cimmyt.org/Research/Wheat/map/research_results/wphysio/wphysio.html). In addition, more than one abiotic stress can occur at one time. For example, high temperature and high photon irradiance often accompany low water supply, which can in turn be exacerbated by subsoil mineral toxicities that constrain root growth. Furthermore, one abiotic stress can decrease a plant's ability to resist a second stress. For example, low water supply can make a plant more susceptible to damage from high irradiance due to the plant's reduced ability to reoxidize NADPH and thus maintain an ability to dissipate energy delivered to the photosynthetic light-harvesting reaction centers.
机译:非生物胁迫,特别是极端的温度,光子辐照度以及水分和无机溶质的供应,经常会限制主要农作物的生长和生产力,例如小麦(Triticum aestivum; http://www.cimmyt.org/Research/Wheat/map /research_results/wphysio/wphysio.html)。另外,一次可能发生一种以上的非生物胁迫。例如,高温和高光子辐照度通常伴随着供水不足,而土壤水分限制了根系的生长会反过来加剧这种情况。此外,一种非生物胁迫可以降低植物抵抗第二种胁迫的能力。例如,由于植物重新氧化NADPH的能力降低,因此低的供水量可使植物更容易受到高辐照度的损害,从而保持耗散传递至光合作用的光捕获反应中心的能量的能力。

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  • 来源
    《Plant Physiology》 |2005年第3期|p.00000791-00000793|共3页
  • 作者单位

    Australian Centre for Plant Functional Genomics, Glen Osmond, South Australia, 5064, Australia (M.T., A.B.)School of Agriculture and Wine, University of Adelaide, Adelaide, South Australia, 5005, Australia (M.T.)and School of Botany, University of Melbourne, Victoria, 3010, Australia (A.B.);

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