[1] Zong G (宗 国), Bai X-J (白雪娇), Zhang S-Y (张淑媛), et al. Spatial pattern and interspecific spatial association of tree seedlings in a secondary forest in montane region of eastern Liaoning Province, China. Chinese Journal of Applied Ecology (应用生态学报), 2018, 29(1): 18-24 (in Chinese) [2] Xu Z-Q (许中旗), Wang Y-H (王义弘). Research advances in Quercus mongolica. Hebei Journal of Forestry and Orchard Research (河北林果研究), 2002, 17(4): 365-370 (in Chinese) [3] Ueno S, Taguchi Y, Tsumura Y. Microsatellite markers derived from Quercus mongolica var. crispula (Fagaceae) inner bark expressed sequence tags. Genes & Genetic Systems, 2008, 83: 179-187 [4] Zhao J (赵 娟), Song Y (宋 媛), Mao Z-J (毛子军). Response in photosynthesis and chlorophyll fluorescence of Quercus mongolica seedlings to the interaction of temperature and precipitation. Journal of Beijing Forestry University (北京林业大学学报), 2013, 35(1): 64-71 (in Chinese) [5] Shin CH, Won HY, Mun HT. Litter production and nutrient input via litterfall in Quercus mongolica forest at Mt. Worak National Park. Journal of Ecology & Environment, 2011, 34: 107-113 [6] He F, Yang B, Wang H, et al. Changes in composition and diversity of fungal communities along Quercus mongolica forests developments in Northeast China. Applied Soil Ecology, 2016, 100: 162-171 [7] Yu S-L (于顺利), Ma K-P (马克平), Chen L-Z (陈灵芝). Analysis on leaf forms in Quercus mongolica community. Chinese Journal of Applied Ecology (应用生态学报), 2003, 14(1): 151-153 (in Chinese) [8] Joo SJ, Park SU, Park MS, et al. Estimation of soil respiration using automated chamber systems in an oak (Quercus mongolica) forest at the Nam-San site in Seoul, Korea. Science of the Total Environment, 2012, 416: 400-409 [9] Hong L-X (洪玲霞), Lei X-D (雷相东), Li Y-C (李永慈). Integrated stand growth model of mongolian oak and its application. Forest Research (林业科学研究), 2012, 25(2): 201-206 (in Chinese) [10] Ma W (马 武), Lei X-D (雷相东), Xu G (徐 光), et al. Growth models for natural Quercus mongolica forests: Ⅰ. Diameter growth model. Journal of Northwest A&F University (Natural Science) (西北农林科技大学学报:自然科学版), 2015, 43(2): 99-105 (in Chinese) [11] Cheng X-B (程徐冰), Wu J (吴 军), Han S-J (韩士杰), et al. Effects of decreased rainfall on Quercus mongolica leaf eco-physiological characteristics. Chinese Journal of Ecology (生态学杂志), 2011, 30(9): 1908-1914 (in Chinese) [12] Su L-L (苏丽丽), Xu S (徐 胜), Fu W (付 伟), et al. Effects of elevated O3 on leaf litter decomposition and nutrient release of Quercus mongolica in city. Chinese Journal of Applied Ecology (应用生态学报), 2016, 27(2): 373-379 (in Chinese) [13] Yi XF, Zhang ZB. Influence of insect-infested cotyledons on early seedling growth of Mongolian oak, Quercus mongolica. Photosynthetica, 2008, 46: 139-142 [14] Wang Y-H (王义弘), Teng W-H (滕文华), Li J-T (李俊涛), et al. Regeneration forestation and sapling growth of Quercus mongolica. Journal of Northeast Forestry University (东北林业大学学报), 2000, 28(5): 28-30 (in Chinese) [15] You W-Z (尤文忠), Zhao G (赵 刚), Zhang H-D (张慧东), et al. Effects of thinning on growth of Mongolian oak (Quercus mongolica) secondary forests. Acta Ecologica Sinica (生态学报), 2015, 35(1): 56-64 (in Chinese) [16] Fan H-B (樊后保), Wang Y-H (王义弘), Zang R-G (臧润国). Spatial distribution pattern of Mongolian oak population. Journal of Fujian College of Forestry (福建林学院学报), 1994, 14(2): 100-103 (in Chinese) [17] Raimundo MR, Scolforo HF, De Mello JM, et al. Geostatistics applied to growth estimates in continuous forest inventories. Forest Science, 2017, 63: 29-38 [18] Zhang B (张 贝), Li W-D (李卫东), Yang Y (杨勇), et al. The Bayesian maximum entropy geostatistical approach and its application in soil and environmental sciences. Acta Pedologica Sinica (土壤学报), 2011, 48(4): 831-839 (in Chinese) [19] Li Y-L (李艳丽), Yang H (杨 华), Kang X-G (亢新刚), et al. Spatial heterogeneity of natural regeneration in a spruce-fir mixed broadleaf-conifer forest in Changbai Mountains. Chinese Journal of Applied Ecology (应用生态学报), 2014, 25(2): 311-317 (in Chinese) [20] Webster R. Quantitative Spatial Analysis of Soil in the Field. New York: Springer, 1985 [21] Zenner EK, Hibbs DE. A new method for modeling the heterogeneity of forest structure. Forest Ecology and Management, 2000, 129: 75-87 [22] Feng Y-M (冯益明), Tang S-Z (唐守正), Li Z-Y (李增元). Application of spatial statistic analysis in forestry. Scientia Silvae Sinicae (林业科学), 2004, 40(3): 149-155 (in Chinese) [23] Cambardella CA, Moorman TB, Parkin TB, et al. Field-scale variability of soil properties in central Iowa soils. Soil Science Society of America Journal, 1994, 58: 1501-1511 [24] Huo M-M (霍萌萌), Guo D-G (郭东罡), Zhang J (张 婕), et al. Tree community characteristics and spatial patterns of the forms Pinus tabuliformis-Quercus wutaishanica in Lingkong Mountain. Acta Ecologica Sinica (生态学报), 2014, 34(20): 5925-5935 (in Chinese) [25] Zhang J-H (张晶虹), Liu B-W (刘丙万). Patterns of seed predation and removal of Mongolian oak (Quercus mongolica) by rodents. Acta Ecologica Sinica (生态学报), 2014, 34(5): 1205-1211 (in Chinese) [26] Akhavan R, Zenner EK, Sagheb-Talebi K. Spatial patterns in different forest development stages of an intact old-growth Oriental beech forest in the Caspian region of Iran. European Journal of Forest Research, 2012, 131: 1355-1366 [27] Fibich P, Lepš J, Novotný V, et al. Spatial patterns of tree species distribution in New Guinea primary and secondary lowland rain forest. Journal of Vegetation Science, 2016, 27: 328-339 [28] Ding Y-Q (丁永全). Effect of slope aspect and slope position on temperature and humidity of the arid sunny-slope Mongolian oak forests in the Daxing’an Mountains. Journal of Northeast Forestry University (东北林业大学学报), 2015(4): 46-51 (in Chinese) [29] Li Y (李 颖). Geostatistical Analysis on the Spatial Pattern of the Constructive Species in Pine-Oak Forest, in Lingkong Mountains, Shanxi. Master Thesis. Taiyuan: Shanxi University, 2015 (in Chinese) [30] Zhang J-T (张金屯). Quantitative Ecology. Beijing: Science Press, 2004 (in Chinese) [31] Jing X (景 鑫), Duan W-B (段文标), Chen L-X (陈立新), et al. Spatial distribution pattern of main populations and gap makers in Picea koraiensis and Abies nephrolepis forest of Xiaoxing’an Mountains, Northeast China. Chinese Journal of Applied Ecology (应用生态学报), 2015, 26(10): 2928-2936 (in Chinese) [32] Shen Z-Q (沈志强), Hua M (华 敏), Dan Q (丹曲), et al. Spatial pattern analysis and associations of Quercus aquifolioides population at different growth stages in Southeast Tibet, China. Chinese Journal of Applied Ecology (应用生态学报), 2016, 27(2): 387-394 (in Chinese) |