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A comparison between water uptake and root length density in winter wheat: effects of root density and rhizosphere properties

机译:冬小麦水吸收与根长密度的比较:根密度和根际特性的影响

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Background and aims We aim to quantify the variation in root distribution in a set of 35 experimental wheat lines. We also compared the effect of variation in hydraulic properties of the rhizosphere on water uptake by roots. Methods We measured the root length density and soil drying in 35 wheat lines in a field experiment. A 3D numerical model was used to predict soil drying profiles with the different root length distributions and compared with measured soil drying. The model was used to test different scenarios of the hydraulic properties of the rhizosphere. Results We showed that wheat lines with no detectable differences in root length density can induce soil drying profiles with statistically significant differences. Our data confirmed that a root length density of at least 1 cm/cm(3) is needed to drain all the available water in soil. In surface layers where the root length density was far greater than 1 cm/cm(3) water uptake was independent of rooting density due to competition for water. However, in deeper layers where root length density was less than 1 cm/cm(3), water uptake by roots was proportional to root density. Conclusion In a set of wheat lines with no detectable differences in the root length density we found significant differences in water uptake. This may be because small differences in root density at depth can result in larger differences in water uptake or that the hydraulic properties of the rhizosphere can greatly affect water uptake.
机译:背景和目标我们的目标是在一组35个实验小麦线中量化根部分布的变化。我们还比较了根际液压特性变化对根源的水的影响。方法在田间实验中测量了35个小麦线中的根长密度和土壤干燥。 3D数值模型用于预测不同根长度分布的土壤干燥型材,与测量的土壤干燥相比。该模型用于测试根际液压性能的不同情景。结果表明,小麦线具有根长密度的可检测差异可以诱导土壤干燥谱,具有统计学显着的差异。我们的数据证实,需要至少1cm / cm(3)的根长度来排出土壤中的所有可用水。在根长度密度远远大于1cm / cm(3)的表面层中,水吸收与水竞争导致的生根密度无关。然而,在根长度密度小于1cm / cm(3)的深层层中,通过根部的水吸收与根密度成比例。结论在一组小麦线中,根部长度没有可检测的差异,我们发现水吸收的显着差异。这可能是因为深度的根密度小的差异可能导致水吸收的差异或根际的液压性能大大影响水吸收。

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