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Connecting Soil Organic Carbon and Root Biomass with Land-Use and Vegetation in Temperate Grassland

机译:温带草原土壤有机碳和根系生物量与土地利用和植被的联系

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摘要

Soils containmuch of Earth’s terrestrial organic carbon but are sensitive to land-use. Rangelands are important to carbon dynamics and are among ecosystems most widely impacted by land-use. While common practices like grazing, fire, and tillage affect soil properties directly related to soil carbon dynamics, their magnitude and direction of change vary among ecosystems and with intensity of disturbance. We describe variability in soil organic carbon (SOC) and root biomass—sampled from 0–170 cm and 0– 100 cm, respectively—in terms of soil properties, land-use history, current management, and plant community composition using linear regression and multivariate ordination. Despite consistency in average values of SOC and root biomass between our data and data from rangelands worldwide, broad ranges in root biomass and SOC in our data suggest these variables are affected by other site-specific factors. Pastures with a recent history of severe grazing had reduced root biomass and greater bulk density. Ordination suggests greater exotic species richness is associated with lower root biomass but the relationship was not apparent when an invasive species of management concern was specifically tested.We discuss how unexplained variability in belowground properties can complicate measurement and prediction of ecosystem processes such as carbon sequestration.
机译:土壤含有地球上大部分的陆地有机碳,但对土地利用很敏感。牧场对于碳动态非常重要,并且是受土地利用影响最广泛的生态系统之一。尽管放牧,火灾和耕作等常见习俗会影响与土壤碳动态直接相关的土壤特性,但其变化的幅度和变化方向会因生态系统和干扰强度而异。我们使用线性回归和线性回归方法描述了土壤有机碳(SOC)和根生物量的变异性(分别从0-170 cm和0-100 cm取样),涉及土壤性质,土地利用历史,电流管理和植物群落组成。多元排序。尽管我们的数据与来自全球牧场的数据之间SOC和根生物量的平均值保持一致,但我们数据中根生物量和SOC的广泛范围表明,这些变量还受其他特定于地点的因素的影响。最近有严重放牧史的牧场减少了根系生物量并提高了堆积密度。排序表明,较高的外来物种丰富度与较低的根系生物量有关,但是当专门测试管理关注的入侵物种时,这种关系并不明显。

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