首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Effects of silicon application on diurnal variations of physiological properties of rice leaves of plants at the heading stage under elevated UV-B radiation
【24h】

Effects of silicon application on diurnal variations of physiological properties of rice leaves of plants at the heading stage under elevated UV-B radiation

机译:UV-B辐射升高时抽穗期硅施用对水稻叶片生理特性日变化的影响

获取原文
获取原文并翻译 | 示例
           

摘要

We investigated the effects of silicon (Si) application on diurnal variations of photosynthetic and transpiration physiological parameters in potted rice (Oryza sativa L. cv Nanjing 45) at the heading stage. The plants were subjected to two UV-B radiation levels, i.e., reference UV-B (A, ambient, 12.0 kJ m(-2) day(-1)) and elevated UV-B radiation (E, a 20 % higher dose of UV-B than the reference, 14.4 kJ m(-2) day(-1)), and four Si application levels, i.e., Si-0 (no silicon supplementation, 0 kg SiO2 ha(-1)), Si-1 (sodium silicate, 100 kg SiO2 ha(-1)), Si-2 (sodium silicate, 200 kg SiO2 ha(-1)), and Si-3 (slag silicon fertilizer, 200 kg SiO2 ha(-1)). Compared with the reference, elevated UV-B radiation decreased the diurnal mean values of the net photosynthetic rate (Pn), intercellular carbon dioxide (CO2) concentration (Ci), transpiration rate (Tr), stomatal conductivity (Gs), and water use efficiency (WUE) by 11.3, 5.5, 10.4, 20.3, and 6.3 %, respectively, in plants not supplemented with silicon (Si-0), and decreased the above parameters by 3.8-5.5, 0.7-4.8, 4.0-8.7, 7.4-20.2, and 0.7-5.9 %, respectively, in plants treated with silicon (Si-1, Si-2, and Si-3), indicating that silicon application mitigates the negative effects of elevated UV-B radiation. Under elevated UV-B radiation, silicon application (Si-1, Si-2, and Si-3) increased the diurnal mean values of Pn, Ci, Gs, and WUE by 16.9-28.0, 3.5-14.3, 16.8-38.7, and 29.0-51.2 %, respectively, but decreased Tr by 1.9-10.8 %, compared with plants not treated with silicon (E+Si-0), indicating that silicon application mitigates the negative effects of elevated UV-B radiation by significantly increasing the P (n), C (i), G (s), and WUE and decreasing the T (r) of rice. Evident differences existed in mitigating the depressive effects of elevated UV-B radiation on diurnal variations of physiological parameters among different silicon application treatments, exhibiting as Si-3 > Si-2 > Si-1 > Si-0. In addition to recycling steel industrial wastes, the application of slag silicon fertilizer mitigates the negative effects of elevated UV-B radiation on photosynthesis and transpiration in rice.
机译:在抽穗期,我们研究了施用硅对盆栽水稻(Oryza sativa L. cv南京45)光合和蒸腾生理参数日变化的影响。使植物经受两种UV-B辐射水平,即参考UV-B(A,环境温度,12.0 kJ m(-2)天(-1))和升高的UV-B辐射(E,剂量增加20%) UV-B比参考值高14.4 kJ m(-2)day(-1))和四个Si施用水平,即Si-0(不添加硅,0 kg SiO2 ha(-1)),Si- 1(硅酸钠,100 kg SiO2 ha(-1)),Si-2(硅酸钠,200 kg SiO2 ha(-1))和Si-3(矿渣硅肥,200 kg SiO2 ha(-1)) 。与参考相比,升高的UV-B辐射降低了净光合速率(Pn),细胞间二氧化碳(CO2)浓度(Ci),蒸腾速率(Tr),气孔导度(Gs)和耗水量的日平均值在未添加硅(Si-0)的工厂中,效率(WUE)分别降低了11.3%,5.5%,10.4%,20.3%和6.3%,并将上述参数降低了3.8-5.5%,0.7-4.8%,4.0-8.7%,7.4%在用硅处理的植物(Si-1,Si-2和Si-3)中,分别为-20.2%和0.7-5.9%,这表明硅的施用减轻了UV-B辐射升高的负面影响。在较高的UV-B辐射下,施用硅(Si-1,Si-2和Si-3)可使Pn,Ci,Gs和WUE的日均值增加16.9-28.0、3.5-14.3、16.8-38.7,与未用硅处理过的植物(E + Si-0)相比,分别降低了5%和29.0-51.2%的Tr,但将Tr降低了1.9-10.8%,这表明硅的应用通过显着增加UV-B辐射,减轻了UV-B辐射升高的负面影响。 P(n),C(i),G(s)和WUE,并降低稻米的T(r)。在缓解不同的硅施用处理之间,UV-B辐射升高对生理参数的日变化的抑制作用方面存在明显差异,表现为Si-3> Si-2> Si-1> Si-0。除回收钢铁工业废物外,矿渣硅肥的应用还减轻了UV-B辐射升高对水稻光合作用和蒸腾作用的不利影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号