Unverified paper record
Digging in the dirt – Inadequacy of belowground plant biomass quantification
Soil Biology and Biochemistry · 1 May 2016 · 10.1016/j.soilbio.2016.01.014
Abstract
Accurate quantification of belowground plant biomass (BGP) is crucial to account for the carbon (C) and nitrogen (N) stored by plants. As soil sieving to recover roots leaves a large proportion of root borne compounds defined as rhizodeposits (fine roots, root fragments, exudates) unaccounted for, isotope-labelling approaches have frequently been used. The aim of the present study was to compare two approaches that estimate BGP-N from isotope labelling experiments and assess their potential error. Pisum sativum was grown in a pot experiment and repeatedly pulse labelled with a 13C glucose and 15N urea solution using a cotton wick method. Additionally, data from a previous study using the same labelling approach were used for comparative BGP-N calculations. In both experiments, the amount of BGP-N calculated with a mass balance approach was significantly lower compared with the classical calculation, indicating substantial overestimation of N rhizodeposition in previous studies. Multiple pulse labelling of plants with 15N can result in homogeneous label distribution, which allows both calculation approaches to be used. However, when label distribution is heterogeneous, the classical approach overestimates N rhizodeposition and BGP-N.
Plant phenotyping relevance
植物の地下部バイオマス定量法を比較し、推定誤差を評価・検証しているため、測定法の妥当性評価が中心です。
abstractThe aim of the present study was to compare two approaches that estimate BGP-N from isotope labelling experiments and assess their potential error.
abstractIn both experiments, the amount of BGP-N calculated with a mass balance approach was significantly lower compared with the classical calculation
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