首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Effects of foliar application of nano-fertile fertilizer containing humic acid on growth, yield and nutrient concentration of mint (Mentha sativa) in aquaponic system
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Effects of foliar application of nano-fertile fertilizer containing humic acid on growth, yield and nutrient concentration of mint (Mentha sativa) in aquaponic system

机译:叶面施用腐殖酸纳米肥对水培系统薄荷生长,产量和养分含量的影响

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Due to recent droughts in Iran and other parts of the world and consequently limited water resources, tending to aquaponic system, in which fish and plants grow together, is a logical and practical method. For this reason, in the current experiment, possibility of mint planting in aquaponic system and the effects of applying nano-fertile fertilizer containing 60% humic acid on its growth was investigated. Mint rhizomes were planted in pure-perlite-contained pots and after reaching trnsferable stage, the plants were transferred to course-sand medium of aquaponic system. Nano-fertile fertilizer concentrations for foliar spray were 0 (control), 500, 1000 and 1500 mg/L, with 100 mL for each treatment. Foliar application was continued every week, for 6 weeks, and the plants were harvested after 60 days. Results showed that all concentrations of foliar spray of mint plants with nano-fertile fertilizer increased fresh and dry weight of shoot and root as compared to control. Nano-fertile fertilizer increased chlorophyll content, soluble sugars, Fv/Fm, and PI as compared to control plants. Plant growth enhancement and better physiological conditions of nano-fertile sprayed plants were correlated with higher potassium, phosphorus, calcium, iron, manganese and copper content in shoots of the treated plants. Therefore, considering higher concentration of some nutrients and chlorophyll content in the leaves of plants treated with nano-fertile fertilizer and consequently higher photochemical quantum yield (Fv/Fm) and photosynthesis performance index (PI), it is concluded that nano-fertile-treated plants had a better photosynthesis condition and thus carbon fixation was carried out well, dry matter was increased and plant growth was improved.
机译:由于伊朗和世界其他地区最近发生干旱,因此水资源有限,趋向于鱼和植物共同生长的水培系统是一种逻辑和实用的方法。因此,在当前的实验中,研究了在水培体系中种植薄荷的可能性以及施用含60%腐殖酸的纳米肥对其生长的影响。将薄荷根茎种植在装有纯珍珠岩的盆中,并在达到可转运阶段后,将其转移至水培系统的沙层培养基中。叶面喷施的纳肥肥料浓度为0(对照),500、1000和1500 mg / L,每次处理100 mL。每周持续叶面施用,持续6周,并在60天后收获植物。结果表明,与对照相比,所有浓度的含纳米肥的薄荷植物叶面喷雾剂均能增加枝和根的鲜重和干重。与对照植物相比,纳米肥可提高叶绿素含量,可溶性糖,Fv / Fm和PI。喷施纳米肥沃植物的植物生长增强和更好的生理条件与所处理植物的芽中钾,磷,钙,铁,锰和铜的含量较高有关。因此,考虑到用纳米肥肥处理过的植物叶片中某些养分的浓度较高和叶绿素含量较高,因此光化学量子产率(Fv / Fm)和光合作用性能指数(PI)较高,因此得出结论:用纳米肥处理植物具有更好的光合作用条件,因此固碳作用良好,干物质增加,植物生长得到改善。

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