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Photosynthetic responses of a dominant C-4 grass to an experimental heat wave are mediated by soil moisture

机译:主导C-4草对实验热波的光合反应是通过土壤水分介导的

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Extreme heat waves and drought are predicted to increase in frequency and magnitude with climate change. These extreme events often co-occur, making it difficult to separate their direct and indirect effects on important ecophysiological and carbon cycling processes such as photosynthesis. Here, we assessed the independent and interactive effects of experimental heat waves and drought on photosynthesis in Andropogon gerardii, a dominant C-4 grass in a native mesic grassland. We experimentally imposed a two-week heat wave at four intensity levels under two contrasting soil moisture regimes: a well-watered control and an extreme drought. There were three main findings from this study. First, the soil moisture regimes had large effects on canopy temperature, leading to extremely high temperatures under drought and low temperatures under well-watered conditions. Second, soil moisture mediated the photosynthetic response to heat; heat reduced photosynthesis under the well-watered control, but not under the extreme drought treatment. Third, the effects of heat on photosynthesis appeared to be driven by a direct thermal effect, not indirectly through other environmental or ecophysiological variables. These results suggest that while photosynthesis in this dominant C-4 grass is sensitive to heat stress, this sensitivity can be overwhelmed by extreme drought stress.
机译:预测极端热波和干旱,频率和幅度增加,气候变化。这些极端事件经常会发生共同,使得难以将它们的直接和间接影响分离对重要的生态生理学和碳循环过程,例如光合作用。在这里,我们评估了天然沉思草地上的主导C-4草的Andropongon Gerardii的实验热波和干旱的独立和互动效果。我们在两次对比土壤湿度制度下在四个强度水平下进行了两周的热波:含水良好的控制和极端干旱。这项研究有三种主要结果。首先,土壤湿度制度对冠层温度具有很大的影响,导致干旱和净水条件下的低温温度。二,土壤水分介导对热的光合反应;在浇水的控制下,热量降低光合作用,但在极端干旱治疗下不降低光合作用。第三,热量对光合作用的影响似乎是由直接热效应驱动的,而不是间接地通过其他环境或生态学变量。这些结果表明,虽然这种显性的光合作用C-4草对热应力敏感,但这种敏感性可以通过极端干旱胁迫来淹没。

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