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Redefining fine roots improves understanding of below-ground contributions to terrestrial biosphere processes

机译:重新定义细根可增进对地下对地球生物圈过程贡献的了解

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摘要

Fine roots acquire essential soil resources and mediate biogeochemical cycling in terrestrial ecosystems. Estimates of carbon and nutrient allocation to build and maintain these structures remain uncertain because of the challenges of consistently measuring and interpreting fine-root systems. Traditionally, fine roots have been defined as all roots 2mm in diameter, yet it is now recognized that this approach fails to capture the diversity of form and function observed among fine-root orders. Here, we demonstrate how order-based and functional classification frameworks improve our understanding of dynamic root processes in ecosystems dominated by perennial plants. In these frameworks, fine roots are either separated into individual root orders or functionally defined into a shorter-lived absorptive pool and a longer-lived transport fine-root pool. Using these frameworks, we estimate that fine-root production and turnover represent 22% of terrestrial net primary production globally - a c. 30% reduction from previous estimates assuming a single fine-root pool. Future work developing tools to rapidly differentiate functional fine-root classes, explicit incorporation of mycorrhizal fungi into fine-root studies, and wider adoption of a two-pool approach to model fine roots provide opportunities to better understand below-ground processes in the terrestrial biosphere.
机译:优良的根系获得了必不可少的土壤资源,并在陆地生态系统中介导了生物地球化学循环。由于持续测量和解释细根系统的挑战,建立和维持这些结构所需的碳和养分分配的估算仍不确定。传统上,细根被定义为直径2mm的所有根,但是现在人们认识到,这种方法无法捕获细根顺序中观察到的形式和功能的多样性。在这里,我们演示了基于订单的功能分类框架如何提高我们对多年生植物主导的生态系统中动态根过程的理解。在这些框架中,细根被分为单独的根顺序,或者在功能上被定义为寿命较短的吸收性池和寿命较长的运输细根池。使用这些框架,我们估计细根生产和营业额占全球陆地净初级生产的22%。假设只有一个细根池,则比以前的估计减少30%。未来的工作开发工具可以快速区分功能性细根类,将菌根真菌明确纳入细根研究中,并广泛采用两池方法模拟细根,这将为更好地了解陆地生物圈地下过程提供机会。

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