[1] Midgley S J. Making a difference:celebrating success in Asia[J]. Australian Forestry, 2013, 76(2):73-75. doi: 10.1080/00049158.2013.790098
[2] 谢耀坚.真实的桉树[M].北京:中国林业出版社, 2015:36-37.
[3] Wallis A S A, Wearne R H, Wright P J. Analytical characteristics of plantation eucalypt woods relating to kraft pulp yields[J]. APPITA Journal, 1996, 49(6):427-432.
[4] Hung T D, Brawner J T, Meder R, et al. Estimates of genetic parameters for growth and wood properties in Eucalyptus pellita F. Muell. to support tree breeding in Vietnam[J]. Annals of Forest Science, 2015, 72(2):205-217. doi: 10.1007/s13595-014-0426-9
[5] Fearnside P M. Wood density for estimating forest biomass in Brazilian Amazonia[J]. Forest Ecology and Management, 1997, 90(1):59-87. doi: 10.1016/S0378-1127(96)03840-6
[6] Nogueira E M, Fearnside P M, Nelson B W, et al. Wood density in forests of Brazil's 'arc of deforestation':Implications for biomass and flux of carbon from land-use change in Amazonia[J]. Forest Ecology and Management, 2007, 248(3):119-135. doi: 10.1016/j.foreco.2007.04.047
[7] Chave J, Coomes D, Jansen S, et al. Towards a worldwide wood economics spectrum[J]. Ecology Letters, 2009, 12(4):351-366. doi: 10.1111/ele.2009.12.issue-4
[8] Ukrainetz N K, O'Neill G A. An analysis of sensitivities contributing measurement error to Resistograph values[J]. Canadian Journal of Forest Research, 2010, 40(4):806-811. doi: 10.1139/X10-019
[9] Raymond C A, Muneri A, MacDonald A C. Non-destructive sampling for basic density in Eucalyptus globulus and E. nitens[J]. APPITA Journal, 1998, 51(3):224-228.
[10] Hein P R G, Bouvet J-M, Mandrou E, et al. Age trends of microfibril angle inheritance and their genetic and environmental correlations with growth, density and chemical properties in Eucalyptus urophylla S. T. Blake wood[J]. Annals of Forest Science, 2012, 69(6):681-691. doi: 10.1007/s13595-012-0186-3
[11] Isik F, Li B. Rapid assessment of wood density of live trees using the Resistograph for selection in tree improvement programs[J]. Canadian Journal of Forest Research, 2003, 33(12):2426-2435. doi: 10.1139/x03-176
[12] Bouffier L, Charlot C, Raffin A, et al. Can wood density be efficiently selected at early stage in maritime pine (Pinus pinaster Ait.)[J]. Annals of Forest Science, 2008, 65(1):106p1-106p8.
[13] Weng Q, He X, Li F, et al. Hybridizing ability and heterosis between Eucalyptus urophylla and E. tereticornis for growth and wood density over two environments[J]. Silvae Genetica, 2014, 63(1-2):15-24.
[14] 彭仕尧, 徐建民, 李光友, 等.尾细桉无性系在雷州半岛的生长与遗传分析[J].中南林业科技大学学报:自然科学版, 2013, 33(4):23-27.
[15] He X, Li F, Li M, et al. Quantitative genetics of cold hardiness and growth in Eucalyptus as estimated from E. urophylla×E. tereticornis hybrids[J]. New Forests, 2012, 43(3):383-394. doi: 10.1007/s11056-011-9287-3
[16] 何旭东, 李发根, 翁启杰, 等.尾叶桉×细叶桉杂种生长和耐寒性的联合选择[J].中南林业科技大学学报:自然科学版, 2010, 30(8):68-71.
[17] He X, Wang Y, Li F, et al. Development of 198 novel EST-derived microsatellites in Eucalyptus (Myrtaceae)[J]. American Journal of Botany, 2012, 99(4):e134-e148. doi: 10.3732/ajb.1100442
[18] Gilmour A R, Gogel B J, Cullis B R, et al. ASReml User Guide Release 3.0[M]. Hemel Hempstead:VSN International Ltd, 2009:214-219.
[19] Stackpole D J, Vaillancourt R E, Marcelo A, et al. Age trends in genetic parameters for growth and wood density in Eucalyptus globulus[J]. Tree Genetics & Genomes, 2010, 6(2):179-193.
[20] İçel B, Güler G. Nondestructive determination of spruce lumber wood density using drilling resistance (Resistograph) method[J]. Turkish Journal of Agriculture and Forestry, 2016, 40:900-907. doi: 10.3906/tar-1606-76
[21] Eldridge K G, Davidson J, Hardwood C, et al. Eucalypt Domestication and Breeding[M]. Oxford:Oxford University Press, 1993:139-153.
[22] Potts B M, Dungey H S. Interspecific hybridization of Eucalyptus:key issues for breeders and geneticists[J]. New Forests, 2004, 27(2):115-138. doi: 10.1023/A:1025021324564
[23] Malan F S, Verryn S D. Effect of genotype-by-environment interaction on the wood properties and qualities of four-year-old Eucalyptus grandis and E. grandis hybrids[J]. South African Forestry Journal, 1996, 176(1):47-53. doi: 10.1080/00382167.1996.9629709
[24] MacDonald A C, Borralho N M G, Potts B M. Genetic variation for growth and wood density in Eucalyptus globulus ssp. globulus in Tasmania (Australia)[J]. Silvae Genetica, 1997, 46(4):236-241.
[25] Greaves B L, Borralho N M G, Raymond C A, et al. Age-age correlations in, and relationships between basic density and growth in Eucalyptus nitens[J]. Silvae Genetica, 1997, 46(5):264-270.
[26] Hung T D, Brawner J T, Lee D J, et al. Genetic variation in growth and wood-quality traits of Corymbia citriodora subsp. variegata across three sites in south-east Queensland, Australia[J]. Southern Forests, 2016, 78(3):225-239. doi: 10.2989/20702620.2016.1183095
[27] Kang K S, Lai H L, Lindgren D. Using single family in reforestation:gene diversity concerns[J]. Silvae Genetica, 2002, 51(1):65-72.
[28] Danuseviěius D, Lindgren D. Clonal testing may be the best approach to long-term breeding of Eucalyptus[M]//Wei R-P, Xu D. Eucalyptus Plantations Research, Management and Development. Singapore: World Scientific, 2003: 192-210.