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Increased plant productivity and decreased microbial respiratory C loss by plant growth-promoting rhizobacteria under elevated CO2

机译:在二氧化碳升高的情况下通过促进植物生长的根瘤菌提高了植物的生产力并减少了微生物呼吸碳的损失

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摘要

Increased plant productivity and decreased microbial respiratory C loss can potentially mitigate increasing atmospheric CO2, but we currently lack effective means to achieve these goals. Soil microbes may play critical roles in mediating plant productivity and soil C/N dynamics under future climate scenarios of elevated CO2 (eCO2) through optimizing functioning of the root-soil interface. By using a labeling technique with 13C and 15N, we examined the effects of plant growth-promoting Pseudomonas fluorescens on C and N cycling in the rhizosphere of a common grass species under eCO2. These microbial inoculants were shown to increase plant productivity. Although strong competition for N between the plant and soil microbes was observed, the plant can increase its capacity to store more biomass C per unit of N under P. fluorescens addition. Unlike eCO2 effects, P. fluorescens inoculants did not change mass-specific microbial respiration and accelerate soil decomposition related to N cycling, suggesting these microbial inoculants mitigated positive feedbacks of soil microbial decomposition to eCO2. The potential to mitigate climate change by optimizing soil microbial functioning by plant growth-promoting Pseudomonas fluorescens is a prospect for ecosystem management.
机译:提高植物生产力和减少微生物呼吸碳损失可以缓解大气中二氧化碳的增加,但是我们目前缺乏实现这些目标的有效手段。在未来的高CO2(eCO2)气候情景下,土壤微生物可能通过优化根-土界面的功能来介导植物生产力和土壤C / N动态。通过使用 13 C和 15 N的标记技术,我们研究了促进植物生长的荧光假单胞菌对普通草种根际C和N循环的影响。在eCO2下。这些微生物接种剂可提高植物的生产力。尽管观察到植物和土壤微生物之间对氮的激烈竞争,但是在添加荧光假单胞菌后,植物可以提高其每单位N存储更多生物量碳的能力。与eCO2效应不同,荧光假单胞菌接种物不会改变特定微生物的呼吸作用,不会加速与N循环相关的土壤分解,表明这些微生物接种物减轻了土壤微生物分解对eCO2的正反馈。通过促进植物生长的荧光假单胞菌优化土壤微生物功能来缓解气候变化的潜力是生态系统管理的前景。

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