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首页> 外文期刊>Scientific reports. >The effects of magnetic treatment on nitrogen absorption and distribution in seedlings of Populus?×?euramericana ‘Neva’ under NaCl stress
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The effects of magnetic treatment on nitrogen absorption and distribution in seedlings of Populus?×?euramericana ‘Neva’ under NaCl stress

机译:磁性处理对杨树幼苗幼苗氮素吸收和分布的影响 - ×κBeur?eur eur eur

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摘要

A potted experiment with Populus?×?euramericana 'Neva' was carried out to assess whether there are positive effects of magnetic treatment of saline water (MTSW) on nitrogen metabolism under controlled conditions in a greenhouse. Growth properties, nitrogen contents, enzyme activities and metabolite concentrations were determined based on field experiments and laboratory analysis after a 30-day treatment. The results were as follows: (1) Biomass accumulation, root morphological properties and total nitrogen content were improved by MTSW. (2) Magnetization led to a greater increase in nitrate-nitrogen (NOsub3/subsup-/sup-N) content in roots than in leaves, accompanied by greater NOsub3/subsup-/sup efflux and activated nitrate reductase. (3) MTSW led to a higher ammonium-nitrogen (NHsub4/subsup+/sup-N) content and greater uptake of net NHsub4/subsup+/sup in the leaves than that in the roots. (4) Magnetization stimulated glutamine synthase, glutamate dehydrogenase and glutamate synthase activities, whereas the concentrations of glutathione and oxidized glutathione were increased in leaves but decreased in roots, and the total glutathione content was increased. Overall, these results indicated some beneficial impacts of MTSW on nitrogen translocation under field conditions, especially for equilibrating the distribution of NOsub3/subsup-/sup-N and NHsub4/subsup+/sup-N. Moreover, these findings confirmed the potential of using low-quality water for agriculture.
机译:用杨树的盆栽试验α×α×α〜欧拉米亚人'涅瓦河'进行评估盐水(MTSW)在温室中受控条件下的氮代谢是否存在正效应。基于田间实验和实验室分析在30天处理后确定生长性质,氮含量,酶活性和代谢物浓度。结果如下:(1)MTSW改善生物质积累,根形态特性和总氮含量。 (2)磁化导致硝酸氮(NO 3 - - -n)含量大于叶子,伴随着更大的NO 3 < /亚> - 流出和活化硝酸盐还原酶。 (3)MTSW导致高氮氮(NH 4 + -N)含量和更高的净NH 4 叶片中的+ 比根状况在叶子中。 (4)磁化刺激谷氨酰胺合成酶,谷氨酸脱氢酶和谷氨酸合成酶活性,而谷胱甘肽浓度和氧化谷胱甘肽的浓度较大,但根部减少,并且谷胱甘肽总含量增加。总的来说,这些结果表明MTSW对现场条件下的氮气易位的一些有益影响,特别是对于平衡NO 3 - -n和nh 4 + -n。此外,这些调查结果证实了利用低质量农业水的潜力。

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