[1] Lee H J, Ravn M M, Coates R M. Synthesis and characterization of abietadiene, levopimaradiene, palustradiene, and neoabietadiene: hydrocarbon precursors of the abietane diterpene resin acids[J]. Tetrahedron, 2001, 57(29): 6155-6177.
[2] Zulak KG, Bohlmann J. Terpenoid biosynthesis and specialized vascular cells of conifer defense[J]. J Integr Plant Biol, 2010, 52(1): 86-97.
[3] Bohlmann J, Keeling C I. Terpenoid biomaterials[J]. Plant J, 2008, 54(4): 656-669.
[4] Tadesse W, Nanos N, Aunon F J, et al. Evaluation of high resin yielders of Pinus pinaster Ait.[J]. For Gen, 2001, 8(4): 271-278.
[5] Fries A, Ericsson T, Gref R. High heritability of wood extractives in Pinus sylvestris progeny tests[J]. Can J For Res, 2000, 30(11): 1707-1713.
[6] Roberds J H, Strom B L, Hain F P, et al. Estimates of genetic parameters for oleoresin and growth traits in juvenile loblolly pine[J]. Can J For Res, 2003, 33(12): 2469-2476.
[7] Strom B L, Goyer R A, Ingram Jr L L, et al. Oleoresin characteristics of progeny of loblolly pines that escaped attack by the southern pine beetle[J]. For Ecol Manage, 2002, 158(1-3): 169-178.
[8] Medeiros R S, Vieira G. Sustainability of extraction and production of copaiba (Copaifera multijuga Hayne) oleoresin in Manaus[J]. Am Brazil For Ecol Manage, 2008, 256(3): 282-288.
[9] Hirao T, Fukatsu E, Watanabe A. Characterization of resistance to pine wood nematode infection in Pinus thunbergii using suppression subtractive hybridization[J]. BMC Plant Biology, 2012, 12(13): 1-14.
[10] Liu Q H, Zhou Z C, Fan H H, et al. Genetic variation and correlation among the resin yield, growth, and morphologic traits of Pinus massoniana[J]. Silvae Genetica, 2013, 26(1-2): 38-44.
[11] 连辉明,何波祥,曾令海,等. 马尾松速生、优质及高产脂半同胞家系综合选择的研究[J]. 广东林业科技, 2002,18(1): 1-6.
[12] 刘月蓉. 高产脂马尾松优树自由授粉家系及其单株选择[J]. 福建林业科技, 2005, 32(3): 122-124.
[13] 刘月蓉. 高产脂马尾松半同胞的产脂力优良单株的选择[J]. 林业科技, 2006, 31(3): 1-4.
[14] 覃 冀,连辉明,曾令海,等. 高产脂马尾松半同胞子代20年生测定林产脂力分析[J]. 广东林业科技, 2005, 21(2): 30-34.
[15] 李思广,付玉嫔,张快富,等. 高产脂思茅松半同胞子代测定[J]. 浙江林学院学报, 2008, 25(2): 158-162.
[16] 翁海龙,陈宏伟,段安安,等. 思茅松高产脂优树选择[J]. 西北林学院学报, 2010, 25(3): 71-74,79.
[17] King J N,Carson M J,Johnson G R. Analysis of disconnected diallel mating designsⅠ: Results from a third generation progeny test of the New Zealand radiata pine improvement programme[J]. Silvae Genetica,1998,47(2/3): 80-87.
[18] Smith D M. Maximum moisture content method for determining specific gravity of small wood samples: Rept. No: 2014[R]. Wisconsin, US: Forest Products Laboratory, Forest Service, US Department of Agriculture, 1954.
[19] 周志春,傅玉狮,吴天林. 马尾松生长和材性的地理遗传变异及最优种源区的划定[J]. 林业科学研究, 1993, 6(5): 556-564.
[20] 沈熙环. 林木育种学[M]. 北京:中国林业出版社, 1990.
[21] 唐启义,冯明光. DPS数据处理系统[M]. 北京:科学出版社, 2007.
[22] 孔繁玲. 植物数量遗传学[M]. 北京: 中国农业出版社,2006: 115-285.
[23] Nebeker T E, Hodges J D, Blanche C A, et al. Variation in the constitutive defensive system of loblolly pine in relation to bark beetle attack[J]. For Sci, 1992, 38(2): 457-466.
[24] Kane J M, Kolb T E. Importance of resin ducts in reducing ponderosa pine mortality from bark beetle attack[J]. Oecologia, 2010, 164 (3): 601-609.
[25] McDowell N G, Adams H D, Bailey J D, et al. The role of stand density on growth efficiency, leaf area index, and resin flow in southwestern ponderosa pine forests[J]. Can J For Res, 2007, 37 (2): 343-355.
[26] Rodrigues K C S, Azevedo P C N, Sobreiro L E, et al. Oleoresin yield of Pinus elliottii plantations in a subtropical climate: Effect of tree diameter, wound shape and concentration of active adjuvants in resin stimulating paste[J]. Ind Crop Prod, 2008, 27(3):322-327.
[27] Rodriguez-Garcia A, Lopez R, Martin J A, et al. Resin yield in Pinus pinaster is related to tree dendrometry, stand density and tapping-induced systemic changes in xylem anatomy[J]. Forest Ecology and Management, 2014, 313(1): 47-54.
[28] Gaylord M L, Hofstetter R W, Kolb T E, et al. Limited response of ponderosa pine bole defenses to wounding and fungi[J]. Tree Physiol, 2011, 31(4): 428-437.
[29] Krokene P, Nagy N E. Anatomical aspects of resin-based defences in pine[C] //Fett-Neto A G, Rodrigues-Correa K C S. Pine resin: biology, chemistry and applications. Kerala, India: the Association of Applied Biologists, 2012: 67-86.