首页> 外文会议>International Symposium on Advanced Technologies and Management Towards Sustainable Greenhouse Ecosystems >Effects of Grafting and Salinity on Agronomic Characteristics and Ion Uptake by Cucumber Plants Grown in a Closed Hydroponic System
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Effects of Grafting and Salinity on Agronomic Characteristics and Ion Uptake by Cucumber Plants Grown in a Closed Hydroponic System

机译:接枝和盐度对闭合水耕系统生长的生长植物的农艺特征和离子吸收的影响

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Recently grafting is being applied as a means of alleviating the negative effects of high salinity. In the present study we examined the effect of three salinity levels (1.9, 3.5 and 5.5 dS m~(-1)) on cucumber plants {Cucumis sativus L. hybrid '722 Virginia RZ.') grafted onto three commercial rootstocks ('Power F_1', 'Leon F_1' and 'Mammoth F_1') and cultivated in recirculating nutrient solution. The results showed a significant effect of high salinity levels on plant growth parameters (shoot length, FM and DM of shoots and leaf area), which was more profound when '722 Virginia' was grafted onto 'Power F_1'. Total fruit weight and fruit number per plant were reduced by high salinity, except for the 'Mammoth' x '722 Virginia RZ.' combination, where no significant effect was observed. The presence of NaCl in the nutrient solution had a significant effect on the concentration of Na~+, CΓ and K~+ in plant tissues, whereas Ca~(2+) and Mg~(2+) were not significantly influenced. Plants grafted onto 'Mammoth' had lower Na~+ content in root tissues than Leon and Power rootstocks, whereas Na~+ content in the shoots was higher in plants grafted onto 'Mammoth' than in the other rootstock-scion combinations. Similar results were observed also in the case of K~+ content in roots, especially at the highest salinity level. The gradual increase of the NaCl concentration in the nutrient solution increased the Cl~- concentration in both shoots and roots, whereas the rootstock-scion combination had no significant impact on the tissue Cl~- levels. These results indicate that the use of 'Mammoth' as a rootstock may enhance the salt tolerance of grafted cucumber plants but this effect is not due to a restriction in Na~+ or CΓ translocation to the photosynthetically active leaves.
机译:最近接枝被施加为减轻高盐度的负面影响的手段。在本研究中,我们考察3级盐度水平的影响(1.9,3.5和5.5德尚M〜(-1))上嫁接到三个商业砧木黄瓜植株{黄瓜混合“722弗吉尼亚RZ。”)(“动力F_1' ,‘莱昂F_1’和‘猛犸F_1’)和在再循环营养液栽培。结果表明,对植物的生长参数,高盐度水平(芽长,FM和芽的DM和叶面积),这是更深刻的,当“722弗吉尼亚”接枝到“权力F_1”的显著效果。单株总果重和果数由高盐度降低,除了“猛犸” X“722弗吉尼亚RZ。”组合,其中没有观察到显著效果。 NaCl在营养液存在对钠的浓度显著效果〜+,Cγ和K +中的植物组织中,而钙〜(2+)和Mg〜(2+)没有显著影响。接枝到“猛犸”植物具有较低的Na〜+在根组织比Leon和电源砧木内容,而在芽的Na〜+含量在接枝到“猛犸”比其他砧木-接穗组合的植物更高。也观察到在K〜+根内容的情况下,类似的结果,特别是在最高盐度水平。在营养液中NaCl浓度的逐渐增加而增加氯〜 - 在这两个芽和根的浓度,而砧木,接穗组合对组织氯〜没有显著的影响 - 的水平。这些结果表明,使用“猛犸”作为砧木可增强嫁接黄瓜植株的耐盐性,但这种影响并不是由于呐〜+或Cγ易位于光合有效叶的限制。

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