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Deep phenotyping of coarse root architecture in R. pseudoacacia reveals that tree root system plasticity is confined within its architectural model

机译:R. pseudoacacia的粗根结构的深表型显示,树的根系统可塑性局限于其结构模型内

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摘要

This study aims at assessing the influence of slope angle and multi-directional flexing and their interaction on the root architecture of Robinia pseudoacacia seedlings, with a particular focus on architectural model and trait plasticity. 36 trees were grown from seed in containers inclined at 0° (control) or 45° (slope) in a glasshouse. The shoots of half the plants were gently flexed for 5 minutes a day. After 6 months, root systems were excavated and digitized in 3D, and biomass measured. Over 100 root architectural traits were determined. Both slope and flexing increased significantly plant size. Non-flexed trees on 45° slopes developed shallow roots which were largely aligned perpendicular to the slope. Compared to the controls, flexed trees on 0° slopes possessed a shorter and thicker taproot held in place by regularly distributed long and thin lateral roots. Flexed trees on the 45° slope also developed a thick vertically aligned taproot, with more volume allocated to upslope surface lateral roots, due to the greater soil volume uphill. We show that there is an inherent root system architectural model, but that a certain number of traits are highly plastic. This plasticity will permit root architectural design to be modified depending on external mechanical signals perceived by young trees.
机译:本研究旨在评估斜角和多向屈曲及其相互作用对刺槐幼苗根系结构的影响,尤其侧重于结构模型和性状可塑性。在温室中,以0°(对照)或45°(坡度)倾斜的容器从种子中生长出36棵树。每天将一半植物的嫩芽轻轻弯曲5分钟。 6个月后,挖掘根系并以3D方式数字化,然后测量生物量。确定了100多个根建筑特征。倾斜和弯曲都显着增加了植物的大小。 45度坡度上的无弯曲树木发育出浅根,这些根在很大程度上垂直于斜坡排列。与对照相比,0°坡度上的弯曲树具有较短且较粗的主根,并通过规则分布的长而细的侧根固定在适当的位置。在45°坡度上弯曲的树木还形成了一个较厚的垂直排列的主根,由于上坡的土壤量较大,因此更多的体积分配给了上坡表面的侧根。我们表明存在一个固有的根系统体系结构模型,但是某些特征具有很高的可塑性。这种可塑性将允许根据幼树感知的外部机械信号来修改根部建筑设计。

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