首页> 外文期刊>Southern Journal of Applied Forestry >Changes in forest structure associated with oak decline in severely impacted areas of Northern Arkansas.
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Changes in forest structure associated with oak decline in severely impacted areas of Northern Arkansas.

机译:在阿肯色州北部受灾严重的地区,与橡树衰退相关的森林结构变化。

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Four mature northern red oak (Quercus rubra)-white oak (Q. alba) stands in the Boston Mountains of northern Arkansas, USA were studied to describe the vegetation dynamics of forests heavily impacted by oak decline. Northern red oak was the species most susceptible to decline. Across the four stands, 51-75% of red oak density (trees/ha) was dead or dying, as was 40-70% of the red oak basal area. Red oak damage occurred across a range of tree sizes. Healthy red oak had low populations of red oak borer (Enaphalodes rufulus), and dead/dying red oak supported large numbers of borers. Impacts on white oak were less severe and generally limited to smaller trees. Decline had changed what once were red oak-dominated stands to more mixed forests of white oak, hickory (Carya spp.), red oak, blackgum (Nyssa sylvatica), and red maple (Acer rubrum). Understorey trees and seedlings were predominantly blackgum, red maple, hickory, black cherry (Prunus serotina), flowering dogwood (Cornus florida), and sassafras (Sassafras albidum). However, well-developed red and white oak advance regeneration was present in all stands. It is unclear if the death of overstorey trees will favour the regeneration of nonoaks, or whether oak regeneration will successfully recruit within canopy gaps created by this disturbance..
机译:在美国阿肯色州北部的波士顿山区,研究了四个成熟的北部赤栎(Quercus rubra)-白栎(Q. alba)林分,以描述受橡木衰落严重影响的森林的植被动态。北部赤栎是最容易退化的物种。在这四个林分中,赤栎密度(树/公顷)的51-75%已死或垂死,赤栎基础面积的40-70%也已死亡或垂死。整个树木大小都发生了红橡树损坏。健康的红橡树的红橡树蛀虫(Enaphalodes rufulus)种群较少,死/垂死的红橡树支持着大量的蛀虫。对白橡树的影响不太严重,通常仅限于较小的树木。下降使曾经以红橡树为主的林分改变为白橡树,山核桃(山核桃),红橡树,黑胶(Nyssa sylvatica)和红枫树(Acer rubrum)的混合森林。下层的树木和幼苗主要是黑胶,红枫,山核桃,黑樱桃(Prunus serotina),山茱wood(Cornus florida)和(Sassafras albidum)。但是,所有展位均出现了发达的红橡木和白橡木。尚不清楚死皮过高的树木是否有利于非橡树的再生,或者橡树的再生是否会在这种干扰造成的树冠间隙内成功地吸收。

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