[1] Nohretedt H. Response of coniferous forest ecosystems on mineral soil to nutrient addition: A review of Swedish experiences[J]. Scandinavian Journal of Forest Research, 2001, 16(6): 555-573. doi: 10.1080/02827580152699385
[2] Yu C B, Chen F, Luo Z J, et al. Evaluation of soil nutrient status in poplar forest soil by nutrient systematic approach[J]. Journal of Forestry Research, 2004, 15(2): 298-300.
[3] 曹子林, 肖智勇, 高 辉, 等. 毛乌素沙地土壤理化性质对中国沙棘人工林生长的影响[J]. 西北林学院学报, 2015, 30(2):22-26. doi: 10.3969/j.issn.1001-7461.2015.02.04
[4] 林文树, 穆 丹, 王丽平, 等. 针阔混交林不同演替阶段表层土壤理化性质与优势林木生长的相关性[J]. 林业科学, 2016, 52(5):17-25.
[5] 杜 健, 梁坤南, 周树平, 等. 不同地区柚木人工林生长及土壤理化性质的研究[J]. 林业科学研究, 2016, 29(6):854-860.
[6] Watanabe Y, Owusu-Sekyere E, Masunaga T, et al. Teak (Tectona grandis) growth as influenced by soil physicochemical properties and other site conditions in Ashanti region, Ghana[J]. Journal of Food, Agriculture and Environment, 2010, 18(2): 1040-1045.
[7] Singh I S, Awasthi O P, Meena S R. Influence of tree plantation on soil physico-chemical properties in arid region[J]. Indian Journal of Agroforestry, 2010, 12(2): 42-47.
[8] Watanabe Y, Masunaga T, Fashola O O, et al. Eucalyptus camaldulensis and Pinus caribaea growth in relation to soil physico-chemical properties in plantation forests in Northern Nigeria[J]. Soil Science and Plant Nutrition, 2009, 55: 132-141. doi: 10.1111/j.1747-0765.2008.00340.x
[9] 崔之益, 徐大平, 杨曾奖, 等. 土壤含水量对旱季降香黄檀树干呼吸和非结构性碳水化合物的影响[J]. 生态学杂志, 2018, 37(5):374-382.
[10] Kint V, Vansteenkise D, Aertsen W, et al. Forest structure and soil fertility determine internal stem morphology of Pedunculate oak: a modeling approach using boosted regression trees[J]. European Journal of Forest Research, 2012, 131: 609-622. doi: 10.1007/s10342-011-0535-z
[11] Bektas I, Alma H M, Goker Y, et al. Influence of site on sapwood and heartwood ratios of Turkish calabrian pine[J]. Forest Products Journal, 2003, 53(4): 48-50.
[12] 贾宏炎. 中国林业科学研究院热带林业实验中心树木园植物名录[M]. 南宁: 广西科学技术出版社, 2014: 96.
[13] 蔡道雄, 贾宏炎, 卢立华, 等. 我国南亚热带珍贵乡土阔叶树种大径材人工林的培育[J]. 林业科学研究, 2007, 20(2):165-169. doi: 10.3321/j.issn:1001-1498.2007.02.003
[14] 彭玉华, 谭长强, 郑 威, 等. 环境因子对广西红锥幼林生长的影响[J]. 生态科学, 2020, 39(2):90-94.
[15] 唐继新, 白灵海, 郭文福, 等. 红锥人工林生长规律的初步研究[J]. 中南林业科技大学学报, 2012, 32(4):51-54. doi: 10.3969/j.issn.1673-923X.2012.04.011
[16] 卢立华, 汪炳根, 何日明. 立地与栽培模式对轰锥生长的影响[J]. 林业科学研究, 1999, 12(5):519-523. doi: 10.3321/j.issn:1001-1498.1999.05.013
[17] 蒋 燚, 王 勇, 刘晓蔚, 等. 红锥生长过程中心材变化特征研究[J]. 西南林业大学学报, 2015, 35(4):53-57.
[18] 韩 畅, 宋 敏, 杜 虎, 等. 广西不同林龄杉木、马尾松人工林根系生物量及碳储量特征[J]. 生态学报, 2017, 37(7):2610-2617.
[19] Zhou H, Feng Rand Huang H, et al. Method of tree-ring image analysis for dendrochronology[J]. Optical Engineering, 2012, 51(7): 077202-1. doi: 10.1117/1.OE.51.7.077202
[20] 张志伟, 亢新刚, 杨 华, 等. 长白山3个主要针叶树种材积方程的研究[J]. 西北林学院学报, 2010, 25(4):144-150.
[21] 国家林业局. 森林土壤分析方法[S]. 北京: 中国标准出版社, 2000.
[22] 赖文胜. 长序榆苗木的高生长及与气象因子的关联分析[J]. 福建林学院学报, 2000, 21(2):157-160.
[23] 杨保国, 贾宏炎, 郝 建, 等. 不同林龄柚木人工林心边材生长变异特征[J]. 林业科学, 2020, 56(1):65-73. doi: 10.11707/j.1001-7488.20200107
[24] 张 蕊, 王秀花, 陈柳英, 等. 不同红豆树人工林生长和心材特性的差异[J]. 浙江农林大学学报, 2012, 29(1):412-419.
[25] Seddighi A, Khoshkebijary F, Foumani BS. Effect of physicochemical characteristics of soil on growth and wood production in Cottonwood Plantation(Populusdeltoides (Stury area: Masal forests of Iran)[J]. Annals if Biological Research, 2012, 3(6): 3067-3072.
[26] 唐 诚, 王春胜, 庞圣江, 等. 广西大青山人工林土壤养分特征及其与立地生产力的关系[J]. 林业科学研究, 2018, 31(2):164-169.
[27] Wright S J, Yavitt J B, Wurzburger N, et al. Potassium, phosphorus, or nitrogen limit root allocation, tree growth, or litter production in a lowland tropical forest[J]. Ecological Society of America, 2011, 92(8): 1616-1625.
[28] Nobuchi T, Harada H. Physiological features of the white zone of Sugi (Cryptomeria japonica D. Don): cytological structure and moisture content[J]. Mokuzai Gakkaishi, 1983, 29(12): 824-832.
[29] Kuo M L, Arganbright D G. Cellular distribution of extractives in redwood and incense cedar-Part 1. Radial variation in cell-wall extractive content[J]. Holzforschung, 1980, 34(1): 17-22. doi: 10.1515/hfsg.1980.34.1.17
[30] WindC, Arend M, Fromm J. Potassium-dependent cambial growth in poplar[J]. Plant Biology, 2004, 6(1): 30-37. doi: 10.1055/s-2004-815738
[31] Jeffrey A A, Siccama T G, Vogt K A. The effect of soil nutrient status on retranslocation of Ca, Mg and K at the heartwood/sapwood boundary in Atlantic white cedar[J]. Plant and Soil, 1999, 208: 117-123. doi: 10.1023/A:1004512317397