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首页> 外文期刊>Environmental Pollution >Active carbon-pools in rhizosphere of wheat {Triticum aestivum L.) grown under elevated atmospheric carbon dioxide concentration in a Typic Haplustept in sub-tropical India
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Active carbon-pools in rhizosphere of wheat {Triticum aestivum L.) grown under elevated atmospheric carbon dioxide concentration in a Typic Haplustept in sub-tropical India

机译:在亚热带印度典型的鼠疫肽中,在大气二氧化碳浓度升高的条件下生长的小麦(Triticum aestivum L.)根际中的活性碳库

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摘要

Study on active and labile carbon-pools can serve as a clue for soil organic carbon dynamics on exposure to elevated level of CO_2. Therefore, an experimental study was conducted in a Typic Haplustept in sub-tropical semi-arid India with wheat grown in open top chambers at ambient (370 μmol mol~(-1)) and elevated (600 μmol mol~(-1)) concentrations of atmospheric CO_2. Elevated atmospheric CO_2 caused increase in yield and carbon uptake by all plant parts, and their preferential partitioning to root. Increases in fresh root weight, volume and length have also been observed. Relative contribution of medium-sized root to total root length increased at the expense of very fine roots at elevated CO_2 level. All active carbon-fractions gained due to elevated atmospheric CO_2 concentration, and the order followed their relative labilities. All the C-pools have recorded a significant increase over initial status, and are expected to impart short-to-medium-term effect on soil carbon sequestration.
机译:对活跃和不稳定的碳库的研究可以为暴露于升高的CO_2水平下的土壤有机碳动力学提供线索。因此,在印度亚热带半干旱地区的典型Typho Haepttept中进行了一项实验研究,使小麦在室温(370μmolmol〜(-1))升高(600μmolmol〜(-1))的开放式室中生长。大气CO_2浓度大气中CO_2升高导致所有植物部分的产量和碳吸收增加,并且它们优先分配到根部。还观察到鲜根重量,体积和长度的增加。中度根对根总长度的相对贡献增加,但CO_2水平升高时,非常细的根却以牺牲为代价。所有活性炭馏分均由于大气CO_2浓度升高而获得,其顺序遵循其相对不稳定性。所有碳池的初始状态均显着增加,有望对土壤碳固存产生中短期影响。

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