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首页> 外文期刊>European Journal of Agronomy >Relationships between soil structure, root distribution and water uptake of chickpea (Cicer arietinum L.). Plant growth and water distribution.
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Relationships between soil structure, root distribution and water uptake of chickpea (Cicer arietinum L.). Plant growth and water distribution.

机译:鹰嘴豆(Cicer arietinum L.)土壤结构,根系分布与水分吸收之间的关系。植物生长和水分配。

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Root clustering as a consequence of soil compaction has been hypothesised as a cause of reduction in both water uptake and growth of plants. On the basis of such a hypothesis, models of water uptake that take root spatial arrangement into account have been proposed. This research was conducted on chickpea with the aim of studying the spatial distribution of roots and water in growth media of different degrees of compaction. Chickpea var. Sultano was grown in pots containing silty-clay soil with aggregates of <0.5 cm in diameter for treatment TF (fine soil), and fine soil plus a large clod (representing 30-33% of the total soil dry weight) for treatment TF+Z. Each pot was brought to field capacity and covered with mulch to avoid evaporation losses.Plants were grown on stored water. The treatment with homogeneous soil (TF) showed a higher above- and below-ground growth and water uptake compared with those of TF+Z. A hyperbolic relation was found between root density and soil resistance penetration. Roots were distributed quite homogeneously in the fine soil of both treatments, but they colonized only the outer parts of the clods. At the end of the experiment treatment TF+Z showed unextracted water in the clods. The spatial distribution of roots and the plant ability to take up water were strongly affected by soil structural conditions.
机译:有人认为土壤紧实会导致根系聚集,这是导致水分吸收和植物生长减少的原因。基于这种假设,提出了考虑到根部空间排列的水分吸收模型。本研究以鹰嘴豆为研究对象,旨在研究不同压实程度的生长介质中根系和水分的空间分布。鹰嘴豆变种Sultano种植在以下盆栽中:粉砂质土壤的骨料直径小于0.5厘米,用于处理TF(细土);细土和大块土(占土壤干重的30-33%)用于处理TF + Z.每个盆都达到田间生产能力,并盖上覆盖物以避免蒸发损失。与TF + Z相比,均质土壤(TF)处理的地上和地下生长和吸水率更高。发现根部密度与土壤抗性渗透之间存在双曲线关系。在两种处理的土壤中,根均均匀分布,但仅在土块的外部定殖。在实验结束时,TF + Z显示血块中未提取水。根的空间分布和植物吸收水分的能力受土壤结构条件的强烈影响。

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