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Mechanical Characteristics of the Fine Roots of Two Broadleaved Tree Species from the Temperate Caspian Hyrcanian Ecoregion

机译:温带Caspian Hyrcanian Ecoregion的两种阔叶树种精细根部的机械特性

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In view of the important role played by roots against shallow landslides, root tensile force was evaluated for two widespread temperate tree species within the Caspian Hyrcanian Ecoregion, i.e., Fagus orientalis L. and Carpinus betulus L. Fine roots (0.02 to 7.99 mm) were collected from five trees of each species at three different elevations (400, 950, and 1350 m a.s.l.), across three diameter at breast height (DBH) classes (small = 7.5–32.5 cm, medium = 32.6–57.5 cm, and large =57.6–82.5 cm), and at two slope positions relative to the tree stem (up- and down-slope). In the laboratory, maximum tensile force (N) required to break the root was determined for 2016 roots (56 roots per each of two species x three sites x three DBH classes x two slope positions). ANCOVA was used to test the effects of slope position, DBH, and study site on root tensile force. To obtain the power-law regression coefficients, a nonlinear least square method was used. We found that: 1) root tensile force strongly depends on root size, 2) F. orientalis roots are stronger than C. betulus ones in the large DBH class, although they are weaker in the medium and small DBH classes, 3) root mechanical resistance is higher upslope than downslope, 4) roots of the trees with larger DBH were the most resistant roots in tension in compare with roots of the medium or small DBH classes, and 5) the root tensile force for both species is notably different from one site to another site. Overall, our findings provide a fundamental contribution to the quantification of the protective effects of forests in the temperate region.
机译:鉴于根对浅层滑坡的重要作用,在Caspian Hycranian EcoRegion中进行两种广泛的温带树种,即Fagus Orientalis L.和Carpinus betulus L.细根(0.02至7.99mm),评估根拉伸力。在三个不同的凸起(400,950和1350米ASL)中从每种物种的五棵树收集,胸部高度(DBH)等级(小= 7.5-32.5厘米,中等= 32.6-57.5厘米,= 57.6-82.5 cm),以及相对于树干(上下斜率)的两个斜率位置。在实验室中,在2016根的根部测定了破碎根部所需的最大拉力(n)(每个两个物种中的每一个56根x三个位点x三dbh等级x两个斜坡位置)。 Ancova用于测试斜坡位置,DBH和研究现场对根拉伸力的影响。为了获得电力定律回归系数,使用非线性最小二乘法。我们发现:1)根拉伸力强烈取决于根尺寸,2)F. Orientalis Roots比大型DBH级别中的硬质肌肉强,虽然它们在中等和小DBH课程中较弱,3)根机械抗性比下坡较高,4)具有较大DBH的树木的根部是张力的最抗性,与中小型或小DBH类的根部相比,5)两个物种的根拉伸力与一个不同的不同网站到另一个网站。总体而言,我们的调查结果为量化森林在温带地区的保护作用提供了根本贡献。

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