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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:氯化钠胁迫下磁处理对杨树 Neva幼苗氮吸收和分配的影响

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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 (NO3-N) content in roots than in leaves, accompanied by greater NO3 efflux and activated nitrate reductase. (3) MTSW led to a higher ammonium-nitrogen (NH4+-N) content and greater uptake of net NH4+ 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 NO3-N and NH4+-N. Moreover, these findings confirmed the potential of using low-quality water for agriculture.
机译:进行了盆栽的“ Neva”杨树的盆栽实验,以评估在受控条件下温室中磁化盐水(MTSW)对氮素代谢是否有积极作用。经过30天的处理后,根据田间实验和实验室分析确定了生长特性,氮含量,酶活性和代谢物浓度。结果表明:(1)MTSW提高了生物量积累,根系形态特征和总氮含量。 (2)磁化作用导致根部硝酸盐氮(NO3 - -N)含量比叶片中增加更多,同时伴随着更大的NO3 -外排和活化的硝酸还原酶。 (3)MTSW导致叶片中的铵态氮(NH4 + -N)含量更高,并且叶片中的净NH4 + 吸收量大于根部。 (4)磁化刺激谷氨酰胺合酶,谷氨酸脱氢酶和谷氨酸合酶活性,而叶片中谷胱甘肽和氧化型谷胱甘肽的浓度增加,而根部降低,谷胱甘肽总含量增加。总体而言,这些结果表明,MTSW对田间条件下的氮转运有一些有益的影响,特别是对于平衡NO3 - -N和NH4 + -N的分布。此外,这些发现证实了将低质水用于农业的潜力。

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