新泽西松林持续森林开口的地上和地下特征

J. Ehrenfeld, Weixing Zhu, W. Parsons
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引用次数: 30

摘要

艾伦菲德,琼·g,朱卫星,威廉·f·j·帕森斯。(罗格斯大学IMCS,新泽西新不伦瑞克08903)。新泽西松林持久森林开口的地上和地下特征。公牛。托里机器人。俱乐部。122:298 - 305。1995.新泽西州南部的松林(Pinus rigida Mill.)的开口可能会持续几十年。在面积从22到223平方米不等的5个这样的开口及其周围的森林基质中,我们表征了植被、森林地面、根系生物量、土壤化学和土壤真菌。小灌丛的密度在开口与林基质之间的差异远大于冠层乔木的数量或基面积之间的差异,这种差异反映在凋落物厚度和有机层厚度以及小根总生物量上。根系总生物量和土壤真菌总长度的基质间隙比与乔木和灌木密度的基质间隙比相似。可提取的NH4-N、BrayP、pH和土壤水分在孔道和基质之间没有差异,但可提取的N03-N在孔道中高于完整森林。我们认为灌木可能是保持开口与基质之间差异的重要因素,通过捕获凋落物,保持较高的根系生物量和抑制分解。如果有机层在局部强烈的扰动中被破坏,灌木进入矿物土壤的缓慢入侵和生长速度可能有助于使开放长期持续下去。
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Above- and below-ground characteristics of persistent forest openings in the New Jersey Pinelands' 2
EHRENFELD, JOAN G., WEIXING ZHU AND WILLIAM F. J. PARSONS. (IMCS, Rutgers University, New Brunswick, NJ 08903). Above- and below-ground characteristics of persistent forest openings in the New Jersey Pinelands. Bull. Torrey Bot. Club. 122:298-305. 1995.-Openings in the pitch pine (Pinus rigida Mill.) forests of southern New Jersey may persist for decades. In five such openings, ranging in size from 22 to 223 m2, and their surrounding forest matrix, we characterized the vegetation, the forest floor, root biomass, soil chemistry and soil fungi. There was a much greater disparity between the openings and the forest matrix in the density of small ericad shrubs than in the number or basal area of the canopy trees, and this disparity was mirrored in the thickness of the litter and organic horizons, and in the total small root biomass. The matrix:gap ratios of total root biomass and of total soil fungal length were similar to the ratios for tree and large shrub densities. Extractable NH4-N, BrayP, pH, and soil moisture did not differ between the openings and matrix, but extractable N03-N was higher in the openings than the intact forest. We suggest that the shrubs may be an important factor in maintaining the differences between the openings and the matrix, by trapping litter, maintaining high root biomasses, and inhibiting decomposition. If the organic horizon is destroyed in a locally intense disturbance, the slow rate of invasion and growth of the shrubs into mineral soil may help perpetuate the opening for long periods of time.
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