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Effect of salinity on composition, viability and germination of seeds of Chenopodium quinoa Willd

机译:盐度对藜麦种子组成,活力和种子萌发的影响

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Salinity influences plant growth, seed yield and seed quality even of halophytic crops such as Chenopodium quinoa. Plant growth, total seed yield, number of seeds, fresh weight and dry weight of seeds, were all significantly reduced in the presence of salinity. Only at high salinity did the content of proteins (as well as total N) increase significantly in the seeds whereas the content of total carbohydrates (as well as total C) decrease. Aside from that the capacity for germination was diminished by a reduced seed size and a disproportionate reduction of the volume of the perisperm. However, the reduced capacity seemed to be compensated by an accelerated germination owing to high Na and Cl concentrations leading to a low water potential in the walls of the plant ovary. At high salinity the passage of NaCl to the seed interior was hindered by the seed cover. There was an obvious gradient between potentially toxic (Na and Cl) and essentially needed elements (K, Mg, Ca, P and S) across the seed coat of salt treated plants and also a significant change of the distribution of elements in the embryo. The results indicate a highly protected seed interior leading to a high salinity resistance of quinoa seeds.
机译:盐度甚至会影响藜麦藜等盐生作物的生长,种子产量和种子质量。在盐度的存在下,植物的生长,种子的总产量,种子的数量,鲜重和干重均显着降低。只有在高盐度下,种子中蛋白质(以及总氮)的含量才显着增加,而总碳水化合物(以及总碳)的含量却降低。除此之外,发芽的能力由于种子尺寸的减小和被子植物体积的不成比例的降低而降低。然而,由于高的Na和Cl浓度导致植物子房壁的水势低,加速的发芽可以弥补这种能力的下降。在高盐度下,NaCl进入种子内部的过程受到种子覆盖的阻碍。在盐处理过的植物的种皮中,潜在毒性(Na和Cl)与基本需要的元素(K,Mg,Ca,P和S)之间存在明显的梯度,并且元素在胚胎中的分布也发生了显着变化。结果表明高度保护的种子内部导致了藜种子的高耐盐性。

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