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Impact of soil pressure and compaction on tracheids in Norway spruce seedlings

机译:土壤压力和压实对挪威云杉幼苗气管中的影响

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We tested the effect of soil compaction on Norway spruce seedlings in terms of the size and theoretical volume flow rate of the tracheids. The results show that soil pressure limits growth in the diameter of the lumens of tracheids in all parts of seedlings studied. The tracheids of the roots with primary xylem had larger lumens than those of the roots and shoots with secondary xylem in both unloaded and loaded seedlings. This corresponds to the higher cumulative theoretical volume flow rate of the tracheids from roots with primary xylem than those from roots and shoots with secondary xylem. Although the volume flow rate of tracheids, according to the Hagen-Poiseuille law, was directly proportional to the quadratic power of the capillary diameter (tracheid lumen), the cumulative curve of the theoretical hydraulic volume flow rate was higher or relatively comparable in loaded seedlings. An explanation for these findings is that there were higher gradients of water potential values in roots and leaves in loaded seedlings because the lengths of the conductive pathways were 27% shorter than in unloaded seedlings. We hypothesise that trees have adapted to different stresses by shortening their conductive pathways to maintain a transpiration rate similar to that of non-stressed trees. These results concerning the impact of soil compaction on tracheid diameter and volume flow rate improve our understanding of the growth and functioning of different conifer organs and the mechanisms underlying the efficiency of water transport through the root xylem to the shoot.
机译:我们根据气管的大小和理论体积流量测试了土壤压实对挪威云杉幼苗的影响。结果表明,土壤压力限制了所研究幼苗各个部位的气管内腔直径的增长。无论是在空载还是在有负荷的幼苗中,具有初生木质部的根的管胞腔都比具有次生木质部的根和芽的管腔大。这对应于来自具有初级木质部的根的气管的累积理论体积流量高于具有次级木质部的根和芽的气管的累积理论体积流量。尽管根据哈根-泊苏伊尔定律,管胞的体积流量与毛细管直径(气管腔)的二次方成正比,但理论水力体积流量的累积曲线在负载的幼苗中更高或相对可比。这些发现的解释是,在有负荷的幼苗中,根和叶中水势值的梯度较高,因为导电路径的长度比无负荷的幼苗短27%。我们假设树木通过缩短其传导途径来维持与非胁迫树木相似的蒸腾速率,从而适应了不同的压力。这些有关土壤压实对气管直径和体积流量的影响的结果,使我们更好地了解了不同针叶树器官的生长和功能,以及水通过根木质部传递到枝条的机理。

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