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The influence of dissolved oxygen around rice roots on salt tolerance during pre-tillering and tillering phases

机译:在预分蘖和分蘖相期间溶解氧对稻块溶解氧的影响

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Rice is a strategic crop that has a high tolerance to hypoxia compared to other species. Our purpose was to investigate the salinity-acclimation mechanisms in rice plants triggered by hypoxia in the nutrient solution. So, the development of radial O-2-loss barriers and physiological and biochemical responses against salinity were evaluated in rice plants (cv. SCSBRS 113) grown under saline stress and subjected to different levels of dissolved oxygen around of root in the pre-tillering and tillering phases. Our results reported an interaction between hypoxia and salinity treatments. Salinity acted as a much harsher pressure than severe hypoxia, particularly in the pre-tillering stage. However, severe hypoxia was able to aggravate the physiological stress imposed by salinity in the tillering stage, and combination with salinity contributed to a reduction of Ca2+ and K+ content. Besides, the radial O-2-loss barrier did not reduce the influx or efflux of water and ions. It also was unrelated to a root shortening and decreased relative water content in leaves. The hypoxia attenuation did not contribute much to the better growth and development of rice plants, and the radial O-2-loss barriers did not confer salinity tolerance by hindering Na+ and Cl- uptake.
机译:与其他物种相比,水稻是一种对缺氧具有很高的耐受性的战略作物。我们的目的是探讨营养溶液中缺氧引发的水稻植物中的盐度适应机制。因此,在盐水胁迫下生长的水稻(CV.SCSBRS 113)评估径向O-2损失屏障和生理生化反应的辐射O-2损失障碍和生理和生化反应。和分蘖阶段。我们的结果报告缺氧和盐度之间的相互作用。盐度比严重的缺氧的压力充当了令人满意的压力,特别是在预分蘖期。然而,严重的缺氧能够加剧在分蘖期中盐度施加的生理应激,并且与盐度的组合导致Ca2 +和K +含量的降低。此外,径向O-2损失屏障没有减少水和离子的流入或流出。它也与叶片中的根部缩短和降低含水含量无关。缺氧衰减对水稻植物的更好的增长和发展没有贡献,并且径向O-2损失屏障通过阻碍NA +和CL-摄取而没有赋予盐度耐受性。

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