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首页> 外文期刊>Biogeosciences >Soil water regulates the control of photosynthesis on diel hysteresis between soil respiration and temperature in a desert shrubland
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Soil water regulates the control of photosynthesis on diel hysteresis between soil respiration and temperature in a desert shrubland

机译:土壤水分调节沙漠灌木丛中土壤呼吸和温度之间光合滞后的光合作用控制。

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Explanations for the occurrence of hysteresis (asynchronicity) between diel soil respiration (iR/isubs/sub) and soil temperature (iT/isubs/sub) have evoked both biological and physical mechanisms. The specifics of these explanations, however, tend to vary with the particular ecosystem or biome being investigated. So far, the relative degree of control of biological and physical processes on hysteresis is not clear for drylands. This study examined the seasonal variation in diel hysteresis and its biological control in a desert-shrub ecosystem in northwest (NW) China. The study was based on continuous measurements of iR/isubs/sub, air temperature (iT/isuba/sub), temperature at the soil surface and below (iT/isubsurf/sub and iT/isubs/sub), volumetric soil water content (SWC), and photosynthesis in a dominant desert shrub (i.e., iArtemisia ordosica/i) over an entire year in 2013. Trends in diel iR/isubs/sub were observed to vary with SWC over the growing season (April to October). Diel variations in iR/isubs/sub were more closely associated with variations in iT/isubsurf/sub than with photosynthesis as SWC increased, leading to iR/isubs/sub being in phase with iT/isubsurf/sub, particularly when SWC?&?0.08?msup3/sup?msup?3/sup (ratio of SWC to soil porosity??=??0.26). However, as SWC decreased below 0.08?msup3/sup?msup?3/sup, diel variations in iR/isubs/sub were more closely related to variations in photosynthesis, leading to pronounced hysteresis between iR/isubs/sub and iT/isubsurf/sub. Incorporating photosynthesis into a iQ/isub10/sub-function eliminated 84.2?% of the observed hysteresis, increasing the overall descriptive capability of the function. Our findings highlight a high degree of control by photosynthesis and SWC in regulating seasonal variation in diel hysteresis between iR/isubs/sub and temperature.
机译:迪尔土壤呼吸( R s )和土壤温度( T s )之间发生滞后(异步)的解释>)引起了生物学和物理机制。但是,这些解释的细节会随所研究的特定生态系统或生物群落而变化。到目前为止,干旱地区对生物和物理过程滞后控制的相对程度尚不清楚。这项研究调查了西北(NW)中国荒漠灌木生态系统中diel滞后的季节性变化及其生物学控制。该研究基于对 R s ,空气温度( T a ),土壤温度的连续测量地表以下( T surf 和 T s ),土壤体积水含量(SWC)和光合作用占主导地位的沙漠灌木丛(即 Artemisia ordosica )在2013年全年。观察到diel R s 的趋势随SWC的变化而变化。生长季节(4月至10月)。随着SWC的增加, R s 的Diel变化与 T surf 的变化更紧密地相关,而不是与光合作用相关。到 R s 与 T surf 同相,特别是当SWC?≥0.08?m 3 ?m ?3 (SWC与土壤孔隙率之比?? = 0.26)。但是,随着SWC降至0.08?m 3 ?m ?3 以下, R s 的diel变化更大与光合作用的变化密切相关,导致 R s 和 T surf 之间明显的磁滞。将光合作用纳入 Q 10 函数中,可消除84.2%的观察到的滞后现象,从而提高了该函数的整体描述能力。我们的发现强调了光合作用和SWC在调节 R s 和温度之间diel滞后的季节性变化方面的高度控制。

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