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Sources of Variation in the Self-Thinning Boundary Line for Three Species with Varying Levels of Shade Tolerance

机译:三种不同耐荫性物种的自变薄边界线的变化源

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摘要

The species self-thinning boundary line has been widely analyzed with a variety of statistical techniques. Most previous studies in the forestry literature have reported that the relationship does not differ across a range of stand and site factors, but mese studies have primarily used statistical techniques that make model fitting subjective or interpretation of covariate significance difficult. There is growing evidence that the use of stochastic frontier analysis is an effective statistical means for objectively fitting the species self-thinning boundary line, offering the opportunity to test the influence of additional covariates. Using extensive even-aged coastal Douglas-fir (Pseudotsuga menziesii var. menziesii [Mirb.] Franco), western hemlock (Tsuga heterophylla), and red alder (Alnus rubra Bong.) data sets in the Pacific Northwest, we examined the assumption that the intercept and slope of the species self-thinning boundary line are insensitive to stand and site factors. Likelihood ratio tests indicated that site index, stand origin (natural versus planted), and purity (proportion of basal area in the primary species) significantly influenced the species self-thinning boundary line intercept for each of the species examined in this study. In Douglas-fir and western hemlock, the slope of the self-thinning boundary was also dependent on stand origin as well as site index in the case of Douglas-fir. Fertilization did not significantly influence the intercept or slope of the species self-thinning line for Douglas-fir and western hemlock. In addition, the inclusion of site aspect and dryness index marginally improved the red alder model of self-thinning, but neither site soil nor climatic variables improved the models for western hemlock and Douglas-fir. Thus, the species self-thinning boundary line can vary significantly among stands, and its variation is driven by several distinct factors; stochastic frontier analysis is an effective tool for identifying these factors. [PUBLICATION ABSTRACT]
机译:物种自稀疏边界线已使用多种统计技术进行了广泛分析。林业文献中的大多数先前研究都报告说,在不同的林分和立地因素之间,这种关系并没有不同,但是近观研究主要使用统计技术,这些技术使得模型拟合主观或难以解释协变量的重要性。越来越多的证据表明,使用随机边界分析是一种客观地拟合物种自变薄边界线的有效统计方法,从而有机会检验其他协变量的影响。使用西北太平洋地区广泛的均匀年龄的沿海道格拉斯冷杉(Pseudotsuga menziesii var.menziesii [Mirb。] Franco),西部铁杉(Tsuga heterophylla)和红色al木(Alnus rubra Bong。)数据集,我们检验了以下假设:物种自稀疏边界线的截距和坡度对林分和立地因素不敏感。似然比测试表明,位点指数,林分起源(天然与种植)和纯度(主要物种的基础面积比例)显着影响了本研究中研究的每个物种的物种自稀疏边界线截距。在道格拉斯冷杉和西部铁杉中,自稀疏边界的坡度也取决于林分起源以及道格拉斯冷杉情况下的立地指数。施肥对道格拉斯冷杉和铁杉西部物种自稀树系的截距或斜率没有明显影响。此外,包括地点长宽比和干燥指数在一定程度上改善了自al稀红赤al模型,但是无论是地点土壤还是气候变量都没有改善西部铁杉和花旗松的模型。因此,物种自稀疏分界线在林分之间可以有很大的不同,其变化是由几个不同的因素驱动的。随机前沿分析是识别这些因素的有效工具。 [出版物摘要]

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  • 来源
    《Forest Science》 |2009年第1期|p.84-93|共10页
  • 作者单位

    Aaron R. Weiskittel, School of Forest Resources, 5755 Nutting Hall, The University of Maine, Orano, ME 04469- Phone: (207) 581-2841, Fax: (207) 581-2875, aaron.weiskittel@umit.maine.edu. Peter J. Gould, US Forest Service, PNW Research Station, Olympia, WA 98512- pgould@fs.fed.us. Hailemariam Temesgen, Department of Forest Resources, Oregon State University, Corvallis, OR 97331- hailemariam.temesgen@oregonstate.edu.Acknowledgments: We thank the Stand Management Cooperative, the Hardwood Silviculture Cooperative, and their supporting members for access to the data. Red alder data were supplied by several other organizations including the British Columbia Ministry of Forests, Campbell Group, Rayonier, University of Washington, US Forest Service, and Weyerhaeuser Company. We give special thanks to Sean Garber, Robert Monserud, Robert Seymour, the associate editor, and two anonymous reviewers for helping to improve a previous version of this article.Manuscript received January 11, 2008, accepted June 25, 2008 Copyright © 2009 by the Society of American Foresters,;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:45:59

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