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Advancing the use of minirhizotrons in wetlandsTI Advancing the use of minirhizotrons in wetlands

机译:提倡在湿地中使用微型根瘤菌TI提倡在湿地中使用微型根瘤菌

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Background Wetlands store a substantial amount of carbon (C) in deep soil organic matter deposits, and play an important role in global fluxes of carbon dioxide and methane. Fine roots (i.e., ephemeral roots that are active in water and nutrient uptake) are recognized as important components of biogeochemical cycles in nutrient-limited wetland ecosystems. However, quantification of fine-root dynamics in wetlands has generally been limited to destructive approaches, possibly because of methodological difficulties associated with the unique environmental, soil, and plant community characteristics of these systems. Non-destructive minirhizotron technology has rarely been used in wetland ecosystems. Scope Our goal was to develop a consensus on, and a methodological framework for, the appropriate installation and use of minirhizotron technology in wetland ecosystems. Here, we discuss a number of potential solutions for the challenges associated with the deployment of minirhizotron technology in wetlands, including minirhizotron installation and anchorage, capture and analysis of minirhizotron images, and upscaling of minirhizotron data for analysis of biogeochemical pools and parameterization of land surface models. Conclusions The appropriate use of minirhizotron technology to examine relatively understudied fine-root dynamics in wetlands will advance our knowledge of ecosystem C and nutrient cycling in these globally important ecosystems.
机译:背景技术湿地在深层土壤有机质沉积物中存储大量碳(C),并且在全球二氧化碳和甲烷通量中起重要作用。细根(即在水分和养分吸收中具有活性的短暂根)被认为是养分有限的湿地生态系统中生物地球化学循环的重要组成部分。但是,湿地细根动力学的量化通常仅限于破坏性方法,这可能是由于与这些系统独特的环境,土壤和植物群落特征相关的方法学难题。非破坏性微型根管放疗技术很少用于湿地生态系统。范围我们的目标是在湿地生态系统中适当安装和使用小型根际电子技术达成共识并建立方法框架。在这里,我们讨论了与在湿地中部署微根管技术相关的挑战的许多潜在解决方案,包括微根管的安装和锚固,微根管的图像的捕获和分析,以及微根管的数据放大以用于生物地球化学池分析和地表参数化楷模。结论适当地使用微型根际放宽技术来研究相对未充分研究的湿地细根动态将提高我们对这些全球重要生态系统中的生态系统C和养分循环的了解。

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