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ANATOMICAL CHARACTERIZATION OF TENSION WOOD IN Hevea brasiliensis (Willd. ex A. Juss.) Mull. Arg.

机译:Hevea Brasiliensis张力木材的解剖学特征(Willd.ex A. Juss)Mull。 arg。

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Tension wood is an important anatomical structure for its participation in the orientation of the trunk and the architecture of the branches as a function of structural reinforcement. However, its presence in large amounts significantly affects the technological properties of wood, just as in the rubber tree. Nevertheless, there is still demand for information about the origin, distribution and structural features in this species. Thus, this study aims to characterize the cellular structures in tension and opposite wood in Hevea brasiliensis (rubber tree), as well as its radial and longitudinal distribution. Discs at the base and the middle of the commercial logs were collected from three trees in a commercial plantation located in Tabapo? - SP. Tangential diameter of vessels, fiber length (gelatinous and non-gelatinous fibers), microfibril angle and proportionality of cellular elements (vessels, axial parenchyma, ray, gelatinous fibers and non-gelatinous fibers) were measured, and influence of gelatinous fiber presence in vessel diameter was observed. Gelatinous fibers were observed in the two types of wood and in the two trunk heights. Both types of wood were distinguished by gelatinous fiber length and the proportion of axial parenchyma. The tension wood in mid-trunk was the most different, with long gelatinous fibers and less abundant, larger vessel diameter and vessel proportion. Moreover, smaller vessel diameter was observed in the regions with a high proportion of gelatinous fibers, suggesting that the plant invests more support than in liquid transport.
机译:张力木材是其参与躯干方向的重要解剖结构,以及作为结构增强的函数的树枝的架构。然而,其大量存在显着影响木材的技术特性,就像橡胶树一样。尽管如此,仍然需要有关该物种的起源,分布和结构特征的信息。因此,本研究旨在在HEVEA Brasiliensis(橡胶树)中的张力和相对木材中的细胞结构表征,以及其径向和纵向分布。在位于Tabapo的商业种植园中的三棵树中收集了基地的光盘和商业原木的中间? - sp。测量血管的切向直径,纤维长度(凝胶状和非凝胶状纤维),微纤维角度和细胞元素的比例(血管,轴,畸形,凝胶状纤维和非凝胶状纤维),以及凝胶状纤维存在在血管中的影响观察到直径。在两种木材和两个树干高度中观察到凝胶状纤维。通过凝胶状纤维长度和轴向实质的比例来区分两种类型的木材。中间干线的张力木材是最不同的,具有长凝胶状纤维,较大的血管直径和血管比例。此外,在具有高比例凝胶纤维的区域中观察到较小的容器直径,表明该植物比液体运输更多的支持。

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