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首页> 外文期刊>Acta Physiologiae Plantarum >The effects of magnetic treatment of irrigation water on seedling growth, photosynthetic capacity and nutrient contents of Populus x euramericana 'Neva' under NaCl stress
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The effects of magnetic treatment of irrigation water on seedling growth, photosynthetic capacity and nutrient contents of Populus x euramericana 'Neva' under NaCl stress

机译:灌溉水对幼苗生长,光合产能和Neva'幼苗生长,光合容量和养分含量“Neva”

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The use of saline water in irrigation is cause for concern due to the reduced availability of fresh water resources for agroforestry in some regions; however, salinity can negatively affect plant populations, such as Populus. Here, magnetic techniques were employed to investigate their effects on improving salinity tolerance in Populus. Irrigation experiments were performed with Populus applying magnetized water (MW) and non-magnetized water (NMW), and seedling growth and development in 1-year-old potted seedlings of Populusxeuramericana Neva' were evaluated under saline conditions. A magnetic treatment device with a low-intensity magnetic field was used for the management of irrigation water. Two average salinity levels, 0 and 4.0gL(-1) of NaCl, were used with MW and NMW, yielding four treatments of irrigation water. The experiments were performed according to a single-factor randomized block design. Seedling growth; the biomass of leaves, roots and stems; photosynthetic parameters and nutrient contents were measured. The results showed that, compared with the non-magnetic treatment (NMT), magnetic treatment (MT) led to improvements in seedling height, basal diameter, leaf area and biomass of leaves and roots (but not stem biomass). Net photosynthetic rate, stomatal conductance, intercellular CO2 concentration and water use efficiency were increased in MT, whereas both transpiration rate and stomatal limiting value were decreased in MT compared with those in NMT. In addition, MT promoted root development, as evidenced by improvements in the length, surface area, mean diameter, volume and tips of the roots. The microelement contents analyses indicated that MT led to higher contents of Fe, Zn and Cu in leaves and roots and a lower content of Mn. MT led to increased contents of C and P and an increased C/N ratio in leaves but a decreased N content; in the roots, the C content and the ratios of C/N and C/P were increased. These results indicated that irrigation with MW appeared to promote seedling growth, root development, photosynthesis and mineral nutrient contents. The properties of saline water were improved by MT, indicating that MT-treated saline water can be used for irrigation.
机译:灌溉中的盐水的使用是由于某些地区农林商品的淡水资源可用性降低;然而,盐度可以对植物群体产生负面影响,例如杨树。这里,使用磁性技术来研究其对提高杨树盐度耐受性的影响。施用磁化水(MW)和非磁化水(NMW)的杨树进行灌溉实验,并在盐水条件下评估辣椒氨酰胺核的1岁盆栽幼苗的幼苗生长和发育。具有低强度磁场的磁处理装置用于灌溉水的管理。 NaCl的两个平均盐度水平为0和4.0gL(-1),用于MW和NMW,得到四种灌溉水处理。根据单因素随机块设计进行实验。幼苗生长;叶子,根和茎的生物质;测量光合参数和营养物质。结果表明,与非磁化处理(NMT)相比,磁化处理(MT)导致叶子高度,基底直径,叶面积和叶子和根部的生物质(但不是茎生物质)的改善。净光合速率,气孔电导,细胞间二氧化碳浓度和水使用效率在Mt中增加,而与NMT中的那些相比,MT中的蒸腾速率和气孔限制值均降低。此外,MT促进了根本发展,如根的长度,表面积,平均直径,体积和尖端的改善所证明。微元素内容分析表明,MT导致叶片和根部的Fe,Zn和Cu的更高内容物和较低的Mn含量。 MT导致C和P的含量增加,叶子中的C / N比增加,但含量下降;在根中,C / N和C / P的C含量和比率增加。这些结果表明,MW的灌溉似乎促进了幼苗生长,根部发育,光合作用和矿物质营养物质。 MT改善了盐水的性质,表明MT处理的盐水可用于灌溉。

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