Root volume distribution of maturing perennial grasses revealed by correcting for minirhizotron surface effects
收藏DataONE2020-06-24 更新2025-05-03 收录
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Aims: Root architecture drives plant ecology and physiology, but current detection methods limit understanding of root placement within soil profiles. We developed a statistical model of root volume along depth gradients and used it to infer carbon storage potential of land-use changes from conventional agriculture to perennial bioenergy grasses.
Methods: We estimated root volume of maize-soybean rotation and three perennial grass systems (Miscanthus à giganteus, Panicum virgatum, tallgrass prairie mix) by Bayesian modeling from minirhizotron images, correcting for small images and near-surface underdetection. We monitored seasonal and inter-annual changes in root volume distribution, then validated our estimates against root mass from core samples.
Results: The model explained 29% of root volume variation and validated well against core mass. Seventh-year perennials had greater belowground biomass than maize-soybean both in total (11-16Ã) and throughout the profile (2-17Ã at ever...
创建时间:
2025-04-19



