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Relative Bark Thickness is Correlated with Tree Species Distributions along a Fire Frequency Gradient

机译:相对树皮厚度与火频率梯度上树种的分布相关

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The probability of stem survival after fire is strongly influenced by energy allocation to bark because bark thickness affects heat transfer during fire. Greater relative investment in inner bark versus outer bark should also enhance survival because of greater moisture content of inner bark. We measured stem diameter, bark thickness, and habitat preference of five species typical of long-leaf pine savannas, and six species characteristic of adjacent wetlands (pocosins), and calculated relative bark thickness, the inner bark proportion, radial growth, and bark accumulation of each species. We hypothesized that savanna species have thicker bark and greater relative investment in inner bark than pocosin species, because fires occur more frequently in savannas than pocosins. As hypothesized, savanna species have relatively thicker bark than pocosin species. Relative bark thickness and the rate of bark accumulation were correlated with the mean location of a species along the pocosin-to-savanna gradient. However, the inner bark proportion did not differ between savanna and pocosin species. Our results indicate that relative bark thickness is likely the primary bark trait affecting fire-induced topkill and influencing the distribution of species along the pocosin-to-savanna gradient.
机译:由于树皮的厚度会影响着火过程中的热传递,因此火后茎存活的可能性受树皮能量分配的强烈影响。由于内皮的水分含量较高,因此相对于内皮而言,相对于外皮而言,相对投资的增加也应提高生存率。我们测量了五种长叶松树稀树草原典型物种的茎径,树皮厚度和生境偏好,以及相邻湿地(胶粘蛋白)的六种特征,并计算了相对树皮厚度,内部树皮比例,径向生长和树皮积累每个物种。我们假设热带稀树草原物种的树皮厚于树皮,相对于内部树皮的投入比角豆素物种大,这是因为稀树草原中的火灾比角豆素更容易发生。如假设的那样,稀树草原物种的树皮比角豆素物种的树皮相对更厚。相对树皮厚度和树皮积累速率与沿泊松蛋白-稀树草原梯度的物种平均位置相关。然而,热带稀树草原和pocosin物种之间的内部树皮比例没有差异。我们的结果表明,相对的树皮厚度可能是主要的树皮性状,它会影响火诱导的杀伤力,并影响从树胶到稀树草原梯度的物种分布。

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