Chen Shu-Tao, Hu Zheng-Hua, Li Han-Mao, Ji Yu-Hong, Yang Yan-Ping
College of Environmental Science and Engineering, Nanjing University of Information Science and Technology, Nanjing 210044, China.
Huan Jing Ke Xue. 2009 May 15;30(5):1249-54.
Field experiment was carried out in the spring of 2008 in order to investigate the effects of increased UV-B radiation on the temperature sensitivity of wheat plant respiration and soil respiration from elongation to flowering periods. Static chamber-gas chromatography method was used to measure ecosystem respiration and soil respiration under 20% UV-B radiation increase and control. Environmental factors such as temperature and moisture were also measured. Results indicated that supplemental UV-B radiation inhibited the ecosystem respiration and soil respiration from wheat elongation to flowering periods, and the inhibition effect was more obvious for soil respiration than for ecosystem respiration. Ecosystem respiration rates, on daily average, were 9%, 9%, 3%, 16% and 30% higher for control than for UV-B treatment forthe five measurement days, while soil respiration rates were 99%, 93%, 106%, 38% and 10% higher for control than for UV-B treatment. The Q10s (temperature sensitivity coefficients) for plant respiration under control and UV-B treatments were 1.79 and 1.59, respectively, while the Q10s for soil respiration were 1.38 and 1.76, respectively. The Q10s for ecosystem respiration were 1.65 and 1.63 under CK and UV-B treatments, respectively. Supplemental UV-B radiation caused a lower Q10 for plant respiration and a higher Q10 for soil respiration, although no significant effect of supplemental UV-B radiation on the Q10 for ecosystem respiration was found.
2008年春季进行了田间试验,以研究UV-B辐射增加对小麦植株从拔节期到开花期呼吸作用以及土壤呼吸温度敏感性的影响。采用静态箱-气相色谱法测定了UV-B辐射增加20%和对照条件下的生态系统呼吸和土壤呼吸。同时还测定了温度和湿度等环境因子。结果表明,补充UV-B辐射抑制了小麦从拔节期到开花期的生态系统呼吸和土壤呼吸,且对土壤呼吸的抑制作用比对生态系统呼吸更明显。在五个测量日中,对照处理的生态系统呼吸速率日均比UV-B处理高9%、9%、3%、16%和30%,而对照处理的土壤呼吸速率日均比UV-B处理高99%、93%、106%、38%和10%。对照处理和UV-B处理下植物呼吸的Q10(温度敏感性系数)分别为1.79和1.59,土壤呼吸的Q10分别为1.38和1.76。对照处理和UV-B处理下生态系统呼吸的Q10分别为1.65和1.63。补充UV-B辐射使植物呼吸的Q10降低,土壤呼吸的Q10升高,尽管未发现补充UV-B辐射对生态系统呼吸的Q10有显著影响。