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首页> 外文期刊>Molecules >MgONPs Can Boost Plant Growth: Evidence from Increased Seedling Growth, Morpho-Physiological Activities, and Mg Uptake in Tobacco (Nicotiana tabacum L.)
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MgONPs Can Boost Plant Growth: Evidence from Increased Seedling Growth, Morpho-Physiological Activities, and Mg Uptake in Tobacco (Nicotiana tabacum L.)

机译:MgONPs可以促进植物生长:烟草(Nicotiana tabacum L.)幼苗生长,形态生理活性和Mg吸收增加的证据。

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摘要

In this study, we documented the impact of magnesium oxide nanoparticles (MgONPs) on the various morpho-physiological changes by root irrigation in tobacco plants in the matrix media, as well as the uptake and accumulation of the NPs over a range of concentrations (50-250 μg/mL). Our results showed that the seed germination rate was not affected following exposure to MgONPs for 5 days. Enhanced plant growth together with increased peroxidase activity (39.63 U mg-1 protein in the 250 μg/mL MgONPs treatment, 36.63 U mg-1 protein in the control), superoxide dismutase activity (30.15 U mg-1 protein compared to 26.95 U mg-1 protein in the control), and chlorophyll content (the chlorophyll a and b contents in 0 and 250 μg/mL of MgONPs were 0.21, 0.12 μg/g to 1.21, 0.67 μg/g, respectively) were observed after 30 days of MgONP treatment. However, the malondialdehyde, protein, and relative water contents did not differ significantly, indicating that the NPs in the test concentrations had no phytotoxicity and even promoted plant growth. Scanning electron microscopy and paraffin section observations indicated that the MgONPs did not affect the plant tissue structures and cells. In addition, an elevated Mg content was detected in the plant tissues exposed to MgONPs, suggesting that the Mg was taken up by the tobacco roots and translocated to the shoots and leaves, which were probably the most important tools to cause an increase in the chlorophyll content and stimulate growth. In particular, compared with the controls, a substantially higher Mg content was observed in the leaves (12.93 mg/g in the MgONPs treatment, 9.30 mg/g in the control) exposed to 250 μg/mL MgONPs, especially in the lower and middle leaves. This result confirmed that the contents of plant Mg-element in the old leaves were increased by MgONPs. In summary, this study investigated increased Mg uptake and growth stimulation, as well as the induction of various positive morpho-physiological changes to tobacco plants when exposed to MgONPs. Results elucidate the promotional impact of the NPs on plant health and their implications for agricultural safety and security.
机译:在这项研究中,我们记录了基质介质中烟草植物根系灌溉对氧化镁纳米颗粒(MgONPs)对各种形态生理变化的影响,以及在一定浓度范围内NP的吸收和积累(50 -250μg/ mL)。我们的结果表明,暴露于MgONPs 5天后,种子发芽率没有受到影响。促进植物生长,并增加过氧化物酶活性(250μg/ mL MgONPs处理中为39.63 U mg-1蛋白,对照中为36.63 U mg-1蛋白),超氧化物歧化酶活性(30.15 U mg-1蛋白与26.95 U mg相比)对照中的蛋白-1)和叶绿素含量(MgONPs在0和250μg/ mL中的叶绿素a和b含量分别为0.21、0.12μg/ g到1.21、0.67μg/ g)。 MgONP治疗。但是,丙二醛,蛋白质和相对水分含量没有显着差异,表明测试浓度的NPs没有植物毒性,甚至促进了植物生长。扫描电子显微镜和石蜡切片观察表明,MgONPs不影响植物组织结构和细胞。此外,在暴露于MgONPs的植物组织中检测到Mg含量升高,这表明Mg被烟草根吸收并转移到芽和叶,这可能是引起叶绿素增加的最重要工具。满足并刺激增长。特别是,与对照相比,暴露于250μg/ mL MgONP的叶片中(尤其是在下部和中部),叶片中的Mg含量明显更高(MgONPs处理为12.93 mg / g,对照为9.30 mg / g)。树叶。该结果证实了MgONPs增加了老叶中植物镁元素的含量。总而言之,本研究调查了暴露于MgONP时增加的Mg吸收和生长刺激以及对烟草植物的各种积极形态生理变化的诱导。结果阐明了NPs对植物健康的促进作用及其对农业安全和保障的影响。

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