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Analysis on photosynthetic characteristics and carbon sequestration potential of Lespedeza bicolor of SP1 generation

机译:SP1代斯熊饲命特征及碳封存潜力分析

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Lespedeza bicolor has developed root system and the ability of carbon sequestration, which can effectively improve the soil nutrient. We measured the correlation of net photosynthetic rate and physiological and environmental factors using space mutated Lespedeza bicolor of SP1 generation, the change of soil carbon and nitrogen content and microbial biomass was also discussed. The conclusion showed that the diurnal variation of photosynthesis was registered as double-peak curve and had "noon break" phenomenon. It showed strong ability of photosynthesis and its mean diurnal photosynthetic rates was 8.77 umol CO_2·m~(-2)s~(-1). Highly correlation was existed between net photosynthetic rate and atmospheric CO_2 concentration, the content of soil organic carbon and total nitrogen and soil microbial biomass displayed negatively relationship to the depth of the soil. Base on the study, we can conclude that the photosynthetic organic matter was effectively accumulated by Lespedeza bicolor of SP1 generation which made use of atmospheric CO_2 and the root system located in the superficial soil has better potential of carbon sequestration.
机译:Lespedeza双色有开发的根系系统和碳封存能力,可有效改善土壤营养素。我们测量了使用SP1生成的空间突变的Lespedeza双子的净光合速率和生理环境因素的相关性,还讨论了土壤碳和氮含量和微生物生物量的变化。结论表明,光合作用的昼夜变异被登记为双峰曲线并具有“中午断裂”现象。它显示出强烈的光合作用能力,其平均昼夜光合速率为8.77 UMOL CO_2·m〜(-2)S〜(-1)。在净光合速率和大气CO_2浓度之间存在高度相关性,土壤有机碳的含量和全氮和土壤微生物生物量的含量与土壤深度产生负面关系。基于该研究,我们可以得出结论,光合有机物通过SP1代氏菌的Lespedeza二色器累积,这是使用大气CO_2,位于浅层土壤中的根系具有更好的碳封存潜力。

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