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Sodium uptake of Iris wilsonii and its photosynthetic responses to high-salinity stress in microcosm submerged beds

机译:微型浸没床中鸢尾鸢尾的钠吸收及其对高盐胁迫的光合作用响应

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In order to investigate the performance of Iris wilsonii in high-salinity wastewater, seven microcosm submerged beds were built with rectangular plastic tanks and packed with marble chips and sand. Each submerged bed was transplanted with six stems of I. wilsonii. The submerged beds were operated in a 7-d batch mode in a greenhouse with artificial wastewater for three 42-d periods. Influent to the seven submerged beds had different contents of NaCl, 0, 1, 2, 4, 6, 8, and 10% (by weight). The results suggested that lower salinity contents (1-2%) in influent or during short stress time (0-14d) did not inhibit net photosynthetic rate, stomatal conductance, and transpiration rate of I. wilsonii, and the chlorophyll of I. wilsonii was not damaged. When initial NaCl contents were at 4% and above, however, all photosynthetic parameters were significantly decreased. It was concluded that I. wilsonii could take up Na+ in wastewater, but higher salinity (4-10%) in wastewater would inhibit the growth of I. wilsonii.
机译:为了研究鸢尾花在高盐度废水中的性能,用矩形塑料罐建造了七个缩微淹没床,并用大理石碎屑和沙子装满。每个淹没的床都移植了六株威尔逊I. wilsonii。浸没床在装有人造废水的温室中以7天分批方式运行,持续3天42天。进入七个淹没床的进水的NaCl含量不同,分别为0、1、2、4、6、8和10%(按重量计)。结果表明,进水或短时胁迫(0-14d)中较低的盐度含量(1-2%)不会抑制威尔逊氏菌的净光合速率,气孔导度和蒸腾速率以及威尔逊氏菌的叶绿素没有损坏。然而,当初始NaCl含量为4%或更高时,所有光合作用参数均显着降低。可以得出结论:威尔逊氏菌可能吸收废水中的Na +,但是废水中较高的盐度(4-10%)会抑制威尔逊氏菌的生长。

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