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The influence of MoO3-NPs on agro-morphological criteria, genomic stability of DNA, biochemical assay, and production of common dry bean (Phaseolus vulgaris L.)

机译:MOO3-NPS对农业形态学标准,DNA基因组稳定性,生物化学测定的基因组稳定性和常见干豆产生的影响(Photoolusulus L.)

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摘要

Molybdenum is considered one of the most important micronutrients applied as a foliar fertilizer for common dry bean. In this study, molybdenum oxide nanoparticles (MoO3-NPs) were applied in different concentrations (0, 10, 20, 30 and 40 ppm) over two sequent seasons, 2018 and 2019, to investigate their effect on the plant morphological criteria, yield, and the genomic stability of DNA. The results showed that the application of 40 ppm MoO3-NPs as a foliar fertilizer showed preferable values of plant morphological criteria, such as the number of leaves and branches per plant, as well as the fresh and dry weight with regard to the common bean plant. In addition, the seed yield increased by 82.4% and 84.1% with 40 ppm, while the shoot residue increased by 32.2% and 32.1% with 20 ppm of MoO3-NPs during two seasons, 2018 and 2019, respectively. Furthermore, the common bean treated with 20 and 40 ppm MoO3-NPs had positive unique bands with ISSR primer 848 at 1400 bp (Rf 0.519) and with primer ISSR2M at 200 bp (Rf 0.729), respectively. In addition, SDS-PAGE reveald some proteins in seedlings which were absent in the flowering stage at 154, 102, 64, 37 and 34 KDa, which may be due to differences in plant proteins required for metabolic processes in each stage. In conclusion, the application of 40 ppm MoO3-NPs was more effective on the productivity of the common bean plants.
机译:钼被认为是最重要的微量营养素之一,作为常见的干酪植物肥料。在本研究中,氧化钼纳米颗粒(MOO3-NPS)以两种序列季节,2018年和2019年的不同浓度(0,12,20,30和40ppm)施用,以研究其对植物形态标准,产量的影响,以及DNA的基因组稳定性。结果表明,施用40ppm MOO3-NPS作为叶面肥料,显示出植物形态标准的优选值,例如每株植物的叶片和分支的数量,以及关于普通豆植物的清新和干重。此外,种子产量增加了82.4%和84.1%,40 ppm,分别在两个赛季,2018年和2019年,芽残留量增加了32.2%和32.1%。此外,用20和40ppm moo3-nP处理的常见豆类分别在1400bp(rf 0.519)下具有ISR引物848的阳性与ISR引物848和200bp(RF 0.729)的引物ISSR2M。此外,SDS-PAGE ReveAld在154,102,64,37和34kDa的开花阶段中不存在的幼苗中的一些蛋白质,这可能是由于每个阶段代谢过程所需的植物蛋白质的差异。总之,40ppm Moo3-NPS的应用对常见豆植物的生产率更有效。

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