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

机译:将土壤有机碳和根生物量与温带土地利用和植被连接温带草地

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Soils contain much 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:土壤含有大部分地球的陆地有机碳,但对土地利用敏感。牧场对碳动力学很重要,是土地利用最广泛影响的生态系统中。虽然像放牧,火灾和耕作一样的常见做法会影响与土壤碳动力学直接相关的土壤性质,但其幅度和变化方向在生态系统和干扰强度之间变化。我们在土壤性质,土地利用历史,当前管理和工厂使用线性回归和植物群落组合物中分别为0-170厘米和0-100厘米的土壤有机碳(SoC)和根生物量采样的可变性。多变量排序。尽管我们的数据和数据之间的SoC和Root生物量平均值一致,但我们数据中的根生物量和SoC中的广泛范围表明这些变量受其他特定因素的影响。近期严重放牧历史的牧场具有降低的根生物量和更大的批量密度。排序表明,更大的异国情调的物种与较低的根生物量有关,但是当专门测试的侵袭性物种的侵入性物种时,这种关系并不明显。我们讨论了地下特性的无法解释的可变性可以使生态系统过程(如碳封存)复杂化和预测。

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