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Influence of copper oxide and zinc oxide nano-particles on growth of fodder cowpea and soil microbiological properties

机译:氧化铜和氧化锌纳米颗粒对饲料豇豆生长的影响及土壤微生物性质

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摘要

A study was conducted in net house to record the effects of seed treatment with varying levels of nano copper oxide (nCuO; 25, 50, 100 and 200 ppm) and nano zinc oxide (nZnO; 250, 500 and 750 ppm) on the growth of cowpea and bioaccumulation of minerals in plants under pot culture condition. It was found that 25 ppm of nCuO enhanced germination percentage, while seedling length and biomass were maximum at 50 ppm compared to control and RDF CuSO4 (@20 kg/ha) treatment. Concentration of nCuO at 100 ppm recorded maximum shoot length (77.3 cm), however, 50 ppm of nCuO had significantly higher root length (20.4 cm) and nodulation in cowpea. It was found that the availability of Cu in plant system was enhanced with increase in concentration of nCuO up to 100 ppm (17.8 mu g/g). Highest availability of Zn (45.4 mu g/g) in plant dry matter was recorded at 25 ppm of nCuO. The influence of nCuO particles on the soil microbiological properties was also studied, and it was found that there was no significant difference between control and nCuO treatments up to 100 ppm in terms of both dehydrogenase activity and total bacterial count (TBC). However, decrease in dehydrogenase activity and TBC was observed at 200 ppm. Soil microbial biomass carbon (SMBC) was maximum at 50 ppm of nCuO. In nZnO treatments (up to 750 ppm), all microbiological parameters studied were higher when compared to control.
机译:在网上进行了一项研究,以记录种子处理与不同水平的纳米氧化锌(NCUO; 25,50,100和200ppm)和纳米氧化锌(NZNO; 250,500和750ppm)的影响盆栽培养条件下植物中矿产的豇豆和生物累积。发现25ppm的NCUO增强萌发百分比,而幼苗长度和生物质与对照和RDF CUSO4(@ 20kg / ha)处理相比最大50ppm。然而,NCUO浓度为100ppm的最大芽长度(77.3cm),50ppm的NCUO具有显着较高的根长度(20.4cm)和豇豆的染色。发现植物系统中Cu的可用性随着NCUO的浓度增加,高达100ppm(17.8μg/ g)。植物干物质中Zn(45.4μg/ g)的最高可用性以25ppm的NCUO记录。还研究了NCUO颗粒对土壤微生物性质的影响,发现对脱氢酶活性和总细菌计数(TBC)之间的对照和NCUO治疗之间没有显着差异。然而,在200ppm下观察到脱氢酶活性和TBC的降低。土壤微生物碳(SMBC)最大为50ppm的NCUO。在NZNO治疗中(高达750ppm),与对照相比,研究的所有微生物学参数都更高。

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