首页> 外文期刊>Atmospheric environment >Submicron ammonium sulfate particles deposited on leaf surfaces of a leafy vegetable (Komatsuna, Brassica rapa L. var. perviridis) are taken up by leaf
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Submicron ammonium sulfate particles deposited on leaf surfaces of a leafy vegetable (Komatsuna, Brassica rapa L. var. perviridis) are taken up by leaf

机译:沉积在多叶蔬菜(Komatsuna,芸苔属变种perviridis)的叶片表面的亚微米硫酸铵颗粒被叶片吸收

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摘要

Ammonium sulfate (AS) particles of submicron size are a major component of inorganic aerosol, and are regarded as a long-range transboundary air pollutant in Asia. However, only a few studies have focused on the effects of submicron AS particles on plants. In the present study, we investigated the amount of submicron AS particles deposited on the leaf surface of komatsuna plants (Brassica rapa L. var. perviridis), and their effects on nocturnal leaf (g(night)) and cuticular (g(out)) conductance. The plants were grown for 23 days after sowing in a naturally lit phytotron at air temperature of 25.0 +/- 1.0 degrees C/18.0 +/- 1.0 degrees C (6:00-18:00/18:00-6:00) and relative air humidity of 70 +/- 5%, and were artificially exposed to submicron AS particles at the 21st day after sowing. The exposure to submicron AS particles resulted in average daily atmospheric concentration of SO42- in PM2.5 inside the phytotron of 16.5 mu g m(-3). After the end of exposure, the plants were kept under light or dark conditions for 48 h in the phytotron. The amount of SO42- deposited on the leaf surface reduced over time, but did not significantly differ between the plants kept under light and dark conditions at 0, 6, 12, 18, 30, and 48 h after the end of exposure. An exposure to submicron AS particles with average daily atmospheric concentration of SO42- in PM2.5 inside the phytotron of 24.7 mu g m(-3) did not significantly affect the g(cut) of the plants. At 1.5 and 5 h after the end of exposure, the g(night) was significantly higher in the submicron AS particle-exposed plants than in the non-exposed control plants. These results indicate that submicron AS particles deposited on the leaf surface enhance the nocturnal water consumption of komatsuna plants.
机译:亚微米尺寸的硫酸铵(AS)颗粒是无机气溶胶的主要成分,在亚洲被视为远程越境空气污染物。但是,只有很少的研究集中在亚微米AS颗粒对植物的影响上。在本研究中,我们调查了在Komatsuna植物(Brassica rapa L. var。perviridis)叶片表面上沉积的亚微米AS颗粒的量,及其对夜间叶片(g(night))和表皮(g(out))的影响。 )电导。将植物在自然采光的光子中播种后,在空气温度25.0 +/- 1.0摄氏度/18.0 +/- 1.0摄氏度(6:00-18:00/18:00-6:00)下生长23天。相对湿度为70 +/- 5%,并且在播种后第21天人工暴露于亚微米AS颗粒。暴露于亚微米AS颗粒导致光电子加速器内部PM2.5中SO42-的平均每日大气浓度为16.5μg m(-3)。暴露结束后,将植物在光加速器中于光照或黑暗条件下保持48小时。在暴露结束后0、6、12、18、30和48小时,在光照和黑暗条件下保存的植物之间,沉积在叶片表面的SO42-的量随时间减少,但没有显着差异。暴露于光子内部PM2.5中SO42-的平均每日大气浓度为24.7μg m(-3)的亚微米AS颗粒不会显着影响植物的g(cut)。在暴露结束后1.5和5 h,亚微米AS颗粒暴露植物的g(夜)显着高于未暴露对照植物。这些结果表明,沉积在叶片表面的亚微米AS颗粒会增加Komatsuna植物的夜间水分消耗。

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