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首页> 外文期刊>Plant and Soil >Defoliation affects rhizosphere respiration and rhizosphere priming effect on decomposition of soil organic matter under a sunflower species: Helianthus annuus.
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Defoliation affects rhizosphere respiration and rhizosphere priming effect on decomposition of soil organic matter under a sunflower species: Helianthus annuus.

机译:落叶会影响根际呼吸,而根际引发作用会影响向日葵物种向日葵下土壤有机质的分解。

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摘要

In the present study, 'natural 13C tracer method' was used to partition the belowground respiration into rhizosphere respiration and soil microbial respiration to test the hypothesis that defoliation affects rhizosphere respiration and rhizosphere priming effect on decomposition of soil organic matter (SOM). A C3 plant species, Helianthus annuus (sunflower), was grown in 'C4' soil in microcosms so that the CO2 evolved from plant-soil system can be partitioned. Four levels of defoliation intensities were established by manual clipping. CO2 evolved from plant-soil system was trapped during 0-4 h after defoliation (HAD), 5-22 HAD and 23-46 HAD using a closed circulating system, respectively. We found that both rhizosphere respiration and soil microbial respiration of the clipped plants were either unchanged or significantly enhanced compared to unclipped plants at 45% defoliation level during all sampling intervals. Soil microbial respiration increased significantly at all defoliation levels during 0-4 HAD, however, both rhizosphere respiration and soil microbial respiration decreased significantly during 5-22 HAD or 23-46 HAD when 20% or 74 clearly demonstrated that the defoliation treatments modified the rhizosphere priming effect on SOM decomposition. The total cumulative rhizosphere priming effects on SOM decomposition during 0-46 HAD were 146%, 241%, 204% and 205% when 0%, 20%, 45% and <74%.
机译:在本研究中,使用“天然13C示踪剂法”将地下呼吸作用分为根际呼吸作用和土壤微生物呼吸作用,以检验落叶影响根际呼吸作用和根际启动作用对土壤有机质分解(SOM)的假设。在“ C4”土壤中以缩影生长了一种C3植物品种向日葵(向日葵),因此可以分配从植物-土壤系统释放的CO2。通过手动修剪建立了四个级别的落叶强度。从植物-土壤系统中释放出的二氧化碳分别在封闭的循环系统中于脱叶(HAD),5-22 HAD和23-46 HAD后的0-4小时内被捕集。我们发现,在所有采样间隔中,修剪后的植物的根际呼吸和土壤微生物呼吸与未修剪的植物相比均保持不变或显着增强,叶面修剪率为45%。在0-4 HAD期间,在所有脱叶水平下,土壤微生物呼吸均显着增加,但是在5-22 HAD或23-46 HAD期间,根际呼吸和土壤微生物呼吸均显着下降,其中20%或74清楚地表明,脱叶处理改变了根际对SOM分解的引发作用。在0-46 HAD期间,当0%,20%,45%和<74%时,根际对SOM分解的累积累积累积效应分别为146%,241%,204%和205%。

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