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Environmental controls on photosynthetic production and ecosystem respiration in semi-arid grasslands of Mongolia

机译:蒙古半干旱草原光合生产和生态系统呼吸的环境控制

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The Mongolian steppe zone comprises a major part of East Asian grasslands. The objective of this study was to separately evaluate the quantitative dependencies of gross primary production (GPP) and ecosystem respiration (R eco) on the environmental variables of temperature, moisture, radiation, and plant biomass in a semi-arid grassland ecosystem. We determined GPP and R eco using transparent and opaque closed chambers in a grassland dominated by Poaceae species in central Mongolia during five periods: July 2004, May 2005, July 2005, September 2005, and June 2006. Values of GPP were linearly related to live aboveground biomass (AGB) enclosed by the chamber. The amount of GPP per unit ground area differed among the study periods, whereas GPP normalized by the amount of AGB did not differ significantly among the periods, suggesting that plant production per unit green biomass did not depend on the phenological stage. GPP/AGB fit well a rectangular hyperbolic light-response curve for all the study periods. When the air and soil were dry, considerable reduction in GPP was observed. The GPP/AGB ratio was also expressed as individual functions of air temperature, vapor pressure deficit, and volumetric soil water content. R eco was exponentially related to the soil temperature and the relationship was modified by soil moisture. The amount of R eco and its temperature sensitivity (Q ) declined with decreasing soil moisture. Sharp increases of R eco after rainfall events were observed. The values of R eco, even including the rain-induced pulses, were expressed well as a bivariate function of soil temperature and soil moisture near the soil surface.
机译:蒙古草原区是东亚草原的主要部分。这项研究的目的是分别评估半干旱草原生态系统中初级生产总值(GPP)和生态系统呼吸(R eco)对温度,湿度,辐射和植物生物量的环境变量的定量依赖性。在五个时期(2004年7月,2005年5月,2005年7月,2005年9月和2006年6月),在蒙古中部禾本科物种占主导的草原上,我们使用透明和不透明的密闭室确定了GPP和R eco。室封闭的地上生物量(AGB)。在每个研究时期之间,每单位地面面积的GPP量有所不同,而通过AGB量归一化的GPP在各时期之间没有显着差异,这表明每单位绿色生物量的植物产量不依赖于物候期。 GPP / AGB在所有研究期间都很好地拟合了矩形双曲线光响应曲线。当空气和土壤干燥时,观察到GPP显着降低。 GPP / AGB比率还表示为气温,蒸气压不足和土壤含水量的各自函数。 R eco与土壤温度呈指数关系,并且该关系已被土壤湿度修正。 R eco的数量及其温度敏感性(Q)随着土壤湿度的降低而降低。观测到降雨事件后,R eco急剧增加。 R eco的值(甚至包括降雨引起的脉冲)也很好地表示为土壤温度和土壤表层土壤湿度的二元函数。

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