首页> 外文期刊>Journal of Hazardous Materials >Olive mill wastewater triggered changes in physiology and nutritional quality of tomato (Lycopersicon esculentum Mill.) depending on growth substrate
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Olive mill wastewater triggered changes in physiology and nutritional quality of tomato (Lycopersicon esculentum Mill.) depending on growth substrate

机译:橄榄厂废水根据生长底物触发番茄(Lycopersicon esculentum Mill。)的生理和营养质量变化

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We have studied the changes in the physiology and nutritional quality of Lycopersicon esculentum exposed to olive mill wastewater (OMW) with regard to cultivation in sand and soil. Tomato plant performance decreased with increasing concentration of OMW to both substrates. Root was more sensitive to OMW than the upper parts of the plants, grown either in sand or in soil for 10 days and 3 months, respectively, probably due to the direct OMW toxicity on roots as compared to other parts. Significant restriction on uptake and translocation of nutrients (K, Na, Fe, Ca and Mg) under OMW application was found. The decrease in the photochemical efficiency of PSII photochemistry in the light adapted state and the big decrease in photochemical quenching, indicate that OMW resulted in diminished reoxidation of Q_A~- and started to inactivate the reaction centers of PSII. The OMW supply on soil and sand, resulted in leaf water stress and lesser water use efficiency. Plants treated with high OMW concentration, produced fewer but bigger tomatoes as compared to plants treated with lower OMW concentration. Generally, fruit yield and nutritional value was inhibited under OMW application.
机译:我们已经研究了暴露在橄榄磨坊废水(OMW)中的番茄番茄在沙土和土壤中的生理和营养质量变化。番茄植株性能随两种底物中OMW浓度的增加而降低。根部对OMW的敏感性高于植物上部(分别在沙子或土壤中生长10天和3个月),这可能是由于与其他部分相比,根部对OMW的直接毒性。发现在OMW施用下,养分(钾,钠,铁,钙和镁)的吸收和转运受到显着限制。光适应状态下PSII光化学光化学效率的降低和光化学猝灭的大幅降低,表明OMW导致Q_A〜-的再氧化减少并开始使PSII的反应中心失活。 OMW在土壤和沙子上的供应会导致叶片水分胁迫,降低水分利用效率。与低OMW浓度处理的植物相比,高OMW浓度处理的植物产生的番茄更少,但更大。通常,OMW施用会抑制果实的产量和营养价值。

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