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The role of woody detritus in biogeochemical cycles: past, present, and future

机译:木质炸药在生物地球化学循环中的作用:过去,现在和未来

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摘要

Woody detritus (WD), created by mortality of trees and their associated parts, is an important component of forested ecosystems with roles in energy flow, hydrologic and geomorphologic processes as well as in carbon and nutrient cycling. Although likely to be increasingly important as forest systems respond to climatic and other human induced changes, WD-related science is just beginning relative to other aspects of forested ecosystems. WD differs from other litter forms and soil in key ways (i.e., size range, rigidity, and heterogeneity) that limit the application of many paradigms currently used in studying and modeling decomposition. Thus, while temperature and concentrations of lignin and nitrogen are important controls, others factors related to moisture and its interaction with canopy openness, WD size, position relative to the soil surface, and decomposers need to be better understood. Moreover, the unique attributes of WD decomposers need to be acknowledged as they have evolved over hundreds of millions of years to efficiently process this high lignin, low nutrient substrate. Given the heterogeneity within and among WD entities, WD behavior can be extremely non-linear, often resulting in cascades of activity rather than all or nothing behavior. Substantial improvements in understanding and modeling the respiration, fragmentation, leaching, and burial involved during WD decomposition are required to accurately assess the impact of global increases in tree mortality. Additionally understanding how the perception of WD-related processes changes with scale and organizational level is required to fully understand WD's role in past, present, and future biogeochemical cycling.
机译:木质碎屑(WD)由树木及其相关部分的死亡产生,是森林生态系统的重要组成部分,在能量流动、水文和地貌过程以及碳和养分循环中发挥作用。尽管随着森林系统对气候和其他人为变化做出响应,WD相关科学可能会变得越来越重要,但相对于森林生态系统的其他方面,WD相关科学才刚刚开始。WD与其他凋落物形式和土壤在关键方面(即大小范围、硬度和异质性)不同,这限制了目前用于研究和建模分解的许多范例的应用。因此,虽然温度和木质素和氮的浓度是重要的控制因素,但需要更好地了解与水分及其与冠层开放度、WD大小、相对于土壤表面的位置和分解者的相互作用有关的其他因素。此外,WD分解器的独特属性需要得到承认,因为它们经过数亿年的进化,能够有效地处理这种高木质素、低营养的基质。考虑到WD实体内部和之间的异质性,WD行为可能是极为非线性的,通常会导致一连串的活动,而不是全有或全无的行为。为了准确评估全球树木死亡率增加的影响,需要对WD分解过程中涉及的呼吸、碎裂、浸出和掩埋的理解和建模进行实质性改进。此外,为了充分了解WD在过去、现在和未来生物地球化学循环中的作用,需要了解WD相关过程的感知如何随规模和组织水平而变化。

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