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Increased night temperature reduces the stimulatory effect of elevated carbon dioxide concentration on methane emission from rice paddy soil

机译:夜间温度升高会降低二氧化碳浓度对稻田土壤甲烷排放的刺激作用

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To determine how elevated night temperature interacts with carbon dioxide concentration ([CO2]) to affect methane (CH4) emission from rice paddy soil, we conducted a pot experiment using four controlled-environment chambers and imposed a combination of two [CO2] levels (ambient: 380 ppm; elevated: 680 ppm) and two night temperatures (22 and 32 degrees C). The day temperature was maintained at 32 degrees C. Rice (cv. IR72) plants were grown outside until the early-reproductive growth stage and then transferred to the chambers. After onset of the treatment, day and night CH4 fluxes were measured every week. The CH4 fluxes changed significantly with the growth stage, with the largest fluxes occurring around the heading stage in all treatments. The total CH4 emission during the treatment period was significantly increased by both elevated [CO2] (P=0.03) and elevated night temperature (P < 0.01). Elevated [CO2] increased CH4 emission by 3.5% and 32.2% under high and low night temperature conditions, respectively. Elevated [CO2] increased the net dry weight of rice plants by 12.7% and 38.4% under high and low night temperature conditions, respectively. These results imply that increasing night temperature reduces the stimulatory effect of elevated [CO2] on both CH4 emission and rice growth. The CH4 emission during the day was larger than at night even under the high-night-temperature treatment (i.e. a constant temperature all day). This difference became larger after the heading stage. We observed significant correlations between the night respiration and daily CH4 flux (P < 0.01). These results suggest that net plant photosynthesis contributes greatly to CH4 emission and that increasing night temperature reduces the stimulatory effect of elevated [CO2] on CH4 emission from rice paddy soil.
机译:为了确定升高的夜间温度如何与二氧化碳浓度([CO2])相互作用以影响稻田土壤中的甲烷(CH4)排放,我们使用四个控制环境室进行了盆栽试验,并施加了两个[CO2]水平的组合(环境温度:380 ppm;升高的温度:680 ppm)和两个晚上的温度(22和32摄氏度)。一天的温度保持在32摄氏度。水稻(cv。IR72)植物在室外生长直至早期生殖生长阶段,然后转移至室内。治疗开始后,每周测量昼夜CH4通量。 CH4通量随生长期发生显着变化,在所有处理中,抽穗期周围的通量最大。 [CO2]升高(P = 0.03)和夜间温度升高(P <0.01)显着增加了治疗期间的总CH4排放量。在高温和低温条件下,升高的[CO2]可使CH4排放分别增加3.5%和32.2%。升高的[CO2]在夜间和低温条件下分别使稻株的净干重增加了12.7%和38.4%。这些结果表明,升高夜间温度会降低升高的[CO2]对CH4排放和水稻生长的刺激作用。即使在高夜间温度处理下(即整天保持恒温),白天的CH4排放也比晚上大。抽穗阶段之后,这种差异变得更大。我们观察到夜间呼吸与每日CH4通量之间存在显着相关性(P <0.01)。这些结果表明,植物净光合作用对CH4的排放有很大贡献,而升高的夜间温度会降低[CO2]升高对稻田土壤CH4排放的刺激作用。

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