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Estimating root biomass in Salix viminalis x Salix schwerinii cultivar oOlofo using the electrical capacitance method

机译:利用电容法估算沙柳(Salix viminalis x Salix schwerinii栽培品种oOlofo)的根生物量

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Non-destructive assessment of root systems is important in order to understand and optimise the potential of resource capture and allocation by the plant. We studied the relationships between electrical capacitance (EC) and the below- and above-ground biomass of willows. Cuttings of Salix viminalis x Salix schwerinii cv. Olof were maintained in pots and root development was followed up using a portable capacitance meter over the course of 2.5 months. Pot observations were compared with excavation of two-year-old established trees. A strong significant linear relationship (R2 = 0.81, p 0.001) was obtained between EC and root biomass (dry weight [DW]) for the pot experiment. EC also showed good correlations with stem and leaf biomass, as well as with stem height. In the excavated willow trees, there was a strong logarithmic relationship between EC and root biomass (R2 = 0.66, p 0.001). These results suggest that EC is a good estimator of below-ground biomass in willow and may become useful in screening varieties for differences in root biomass traits, especially in distinguishing below-ground resource allocation at an early stage.
机译:根系的非破坏性评估对于理解和优化植物捕获和分配资源的潜力很重要。我们研究了电容(EC)与柳树地下和地下生物量之间的关系。 Salix viminalis x Salix schwerinii cv的插条。将Olof放在盆中,并使用便携式电容计在2.5个月内跟踪根的发育。将盆栽观察结果与开挖的两年树龄树木进行比较。在盆栽实验中,EC和根生物量(干重[DW])之间获得了很强的线性关系(R2 = 0.81,p 0.001)。 EC还显示出与茎和叶生物量以及茎高的良好相关性。在开挖的柳树中,EC与根生物量之间存在很强的对数关系(R2 = 0.66,p 0.001)。这些结果表明,EC是柳树地下生物量的一个很好的估计值,并且可能在筛选用于根生物量性状差异的品种中,尤其是在早期区分地下资源分配方面很有用。

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