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首页> 外文期刊>Functional Plant Biology >Influence of nutrient supply and water vapour pressure on root architecture of Douglas-fir and western hemlock seedlings.
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Influence of nutrient supply and water vapour pressure on root architecture of Douglas-fir and western hemlock seedlings.

机译:营养物质供应和水蒸气压力对花旗松和铁杉幼苗根系结构的影响。

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Root growth responses of Douglas-fir [Pseudotsuga menziesii (Mirb.) Franco] and western hemlock (Tsuga heterophylla Raf. Sarg.) seedlings to three nutrient concentrations and two shoot vapour pressure deficits were measured. Both species gained dry mass at high and medium nutrient treatments throughout the experiment, but not at low nutrition. Low nutrition gave highest ratios of projected leaf surface area to total root length in both species. Douglas-fir geometry differed from that of hemlock, with longer interior link lengths, particularly at the lowest nutrition. Douglas-fir showed greater numbers of exterior-interior links than hemlock. More links were observed at medium and high nutrition than at low nutrition for both species. Exterior-interior links increased over time for the two highest nutrient treatments. Significant topological differences were observed between species, the lowest and two highest nutrient treatments, and high and low vapour pressure deficits. Both species showed herring-bone root architecture at the lowest nutrition. This architectural configuration became more pronounced in hemlock seedlings grown under higher vapour pressure deficits. Faster-growing Douglas-fir had a dichotomous architecture at medium and high nutrition that was not influenced by increased vapour pressure deficits. Douglas-fir topology appears to be adapted to exploit soil nutrient patches while hemlock appears to rely on efficient exploitation of soil volume..
机译:测量了花旗松[Pseudotsuga menziesii(Mirb。)Franco]和西部铁杉(Tsuga heterophylla Raf。Sarg。)幼苗对三种养分浓度和两个芽蒸气压亏缺的根系生长响应。在整个实验中,这两种物种在高营养和中营养处理下均获得了干重,但在低营养条件下却没有。低营养使两种物种的预计叶表面积与总根长之比最高。花旗松的几何形状与铁杉不同,内部链节长度更长,尤其是在营养最低的情况下。道格拉斯冷杉显示出比铁杉更多的内外连接。在中,高营养水平下,两个物种的联系都比低营养水平多。两种最高养分处理的内外联系随时间增加。在物种之间,最低和两个最高养分处理以及高和低蒸气压亏缺之间观察到显着的拓扑差异。这两个物种都显示出最低营养的人字形根结构。在较高的蒸气压亏缺下生长的铁杉幼苗中,这种结构形态变得更加明显。生长快的道格拉斯冷杉在中高营养水平下具有两分结构,不受蒸汽压差增加的影响。 Douglas-fir拓扑似乎适用于开发土壤养分斑块,而铁杉则似乎依赖于对土壤体积的有效利用。

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