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Ecological consequences of topographic gradients in mixed-oak forests of southern Ohio.

机译:俄亥俄州南部混合橡树林中地形梯度的生态后果。

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Topographic gradients and their associated microhabitat conditions have been shown to greatly influence forest ecosystem structure and function. However, the influence of these gradients on a wide number of ecosystem processes has yet to be elucidated in much of the topographically dissected landscape of unglaciated eastern North America. The goal of this investigation was to identify how topographic gradients affect a wide range of structural and functional attributes in mixed-oak forests of southeastern Ohio (USA). Specific objectives of this study were to (1) utilize dendrochronological techniques to determine how white oak (Quercus alba L.) productivity, growth trends, and response to climate varies across edaphic and topographic gradients; (2) identify the influence of topographic gradients on coarse woody debris (CWD; dead and downed boles and branches ≥10 cm in diameter) identity and distributions and compare CWD with tree and sapling distributions; (3) experimentally evaluate (through the use of wooden blocks prepared from commercial lumber) woody debris decay and nutrient dynamics (C/N) across topographic gradients for ten tree species common to mixed-oak forests; and (4) determine the influence of topographic gradients and other environmental parameters on macrofungal (basidiomycetes and ascomycetes) and slime mold (myxomycetes) communities on CWD. Results from the individual studies revealed a strong link between topographic gradients (slope aspect, position, and steepness) and the studied ecosystem parameters. Specifically, (1) white oak growing in mesic sites exhibits different growth patterns and responses to climatic variability than trees growing in intermediate and xeric sites; (2) CWD identity and loads vary considerably throughout the landscape in response to changes in topography and woody vegetation; (3) woody debris decay and nutrient dynamics are influenced by woody debris taxon and topography; and (4) macrofungal and myxomycete community richness and composition are influenced by differences in topography and CWD characteristics. Overall, topographic variability and its impact on microsite conditions have profound consequences on mixed-oak forest function, structure, composition, and diversity. Through their influence on productivity rates, forest structural characteristics, decay dynamics, and habitat suitability and utilization, topographic gradients result in a complex interplay of forest attributes and processes across the landscape.
机译:地形梯度及其相关的微生境条件已显示出极大地影响森林生态系统的结构和功能。但是,在北美东部无冰川的许多地形剖析景观中,尚未阐明这些梯度对许多生态系统过程的影响。这项研究的目的是确定地形梯度如何影响俄亥俄州东南部(美国)混合橡树林中的广泛结构和功能属性。这项研究的具体目标是(1)利用树轮年代学技术来确定白橡树( L.)的生产力,生长趋势以及对气候的响应在整个经纬度和地形梯度上如何变化; (2)识别地形梯度对粗木屑(CWD;直径大于或等于10 cm的死掉和倒下的树干和树枝)的身份和分布的影响,并将CWD与树木和幼树的分布进行比较; (3)(通过使用由商业木材制成的木块)通过实验评估混合栎林常见的10种树种的木屑腐烂和跨地形梯度的养分动态(C / N); (4)确定地形梯度和其他环境参数对CWD上的大型真菌(担子菌和子囊菌)和粘菌(粘菌)群落的影响。个别研究的结果表明,地形梯度(坡度,位置和陡度)与所研究的生态系统参数之间存在密切的联系。具体而言,(1)与在中部和干部站点生长的树木相比,在中部站点生长的白橡树表现出不同的生长方式和对气候变化的响应; (2)随着地形和木本植被的变化,CWD的身份和负载在整个景观中变化很大; (3)木屑分类和地形会影响木屑的腐烂和养分动态; (4)大真菌和粘菌群落的丰富度和组成受地形和CWD特性差异的影响。总体而言,地形变异性及其对微场所条件的影响对混橡森林功能,结构,组成和多样性产生了深远的影响。通过影响生产力,森林结构特征,衰减动力学以及栖息地的适宜性和利用,地形梯度导致整个森林的森林属性和过程之间复杂的相互作用。

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