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首页> 外文期刊>Journal of Plant Nutrition >Mitigation of salt stress on tomato crop by using foliar spraying or fertigation of various products
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Mitigation of salt stress on tomato crop by using foliar spraying or fertigation of various products

机译:通过使用各种产品的叶面喷涂或灌溉灌注番茄作物的盐胁迫减轻

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摘要

Among major constraints to crop production, salt stress affects the morphological structure and yield in crop plants. Nano-fertilizers, have made their hierarchy to supplement the traditional fertilizers in mitigating the effect of abiotic stress due to their slow release and efficiency. Three products were tested namely lithovit (R)-standard(LITHO), monopotassium-phosphate(MKP:0-52-34), and aspirin(ASP) on salt-stressed tomato crop. These products were applied through foliar spraying (foliar) or fertigation (ferti) on tomato plants irrigated with 4 saline solutions (4, 6, 8 and 10dS/m). Control plants were subjected to five salinity levels (0, 4, 6, 8 and 10dS/m) without any treatments. Results showed that increasing in salinity levels adversely affected all parameters in the control plants. The ameliorating effect of MKP-ferti was prominent in plant height, stem diameter, number of fruits, fruit weight and yield/plant at 4 and 6S/m. Whereas, the effect of salinity was mitigated by LITHO-foliar regarding flowers number and total chlorophyll content at all salinity level. Leaf N, P and K contents were accumulated higher when MKP-ferti was used whereas, Ca(2+)and Mg(2+)contents were accumulated higher in the plants treated with LITHO-foliar. The cellular leakage of electrolyte was reduced at 4, 6 and 10dS/m with MKP-ferti and at 8dS/m with LITHO-foliar application. Among the two methods of application, foliar spraying of LITHO and ASP, and fertigation of MKP improved plant performance more than their complementary methods of application. The better performance of MKP necessitates the use of phosphorous and potassium-based nano-fertilizers. It can reduce the production cost of vegetables using conventional fertilizers.
机译:在作物生产的主要限制因素中,盐胁迫影响作物的形态结构和产量。纳米肥料由于其缓释性和高效性,在减轻非生物胁迫影响方面,已经形成了其等级结构,以补充传统肥料。在盐胁迫番茄作物上测试了三种产品,即lithovit(R)-标准(LITHO)、磷酸一钾(MKP:0-52-34)和阿司匹林(ASP)。这些产品通过叶面喷施(叶面)或施肥(ferti)在用4种盐溶液(4、6、8和10dS/m)灌溉的番茄植株上施用。对照植株在不进行任何处理的情况下接受五个盐度水平(0、4、6、8和10dS/m)。结果表明,盐度水平的增加对对照植物的所有参数都有不利影响。在4和6S/m时,MKP ferti对植株高度、茎粗、果实数、果实重量和单株产量的改善效果显著。而在所有盐度水平下,石质叶对花数和总叶绿素含量的影响都有所缓解。施用MKP ferti的植株叶片N、P和K含量积累较高,而施用石质叶的植株Ca(2+)和Mg(2+)含量积累较高。使用MKP ferti时,电解质的细胞泄漏在4、6和10dS/m时减少,使用石质叶面喷施时,电解质的细胞泄漏在8dS/m时减少。在这两种施用方法中,叶面喷施LITHO和ASP,以及施肥MKP比它们的补充施用方法更能提高植物的生长性能。MKP的更好性能要求使用磷和钾基纳米肥料。它可以降低使用常规肥料的蔬菜的生产成本。

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