References
- Ali JM, Mansooreh K, Hamid S. 2017. Interspecific Hybridization between Populus caspica L.×P. deltoids L 62/154 Using in vitro Embryo Development and Germination. J For Environ Sci 33: 197-201.
- Aravanopoulos FA. 2010. Contribution of leaf morphometrics in the study of genetic entries in Salix L. Electron J Plant Breed 1: 1320-1328.
- Aylott MJ, Casella E, Tubby I, Street NR, Smith P, Taylor G. 2008. Yield and spatial supply of bioenergy poplar and willow short-rotation coppice in the UK. New Phytol 178: 358-370. https://doi.org/10.1111/j.1469-8137.2008.02396.x
- Bagniewska-Zadworna A, Wojciechowicz MK, Zenkteler M, Jezowski S, Zenkteler E. 2010. Cytological analysis of hybrid embryos of intergeneric crosses between Salix viminalis and Populus species. Aust J Bot 58: 42-48. https://doi.org/10.1071/BT09188
- Cha DS, Oh JH, Woo JC. 2004. Energy potential and feasibility of utilization for domestic forest biomass as an alternative resource. J For Sci 20: 110-130. (in Korean)
- Chang KS, Son DC, Lee DH, Choi K, Oh SH. 2017. Checklist of Vascular Plants in Korea. Korea National Arboretum, Pocheon, pp 68-75. (in Korean)
- Cho WW, Chandra R, Lee WY, Kang HD. 2020. IBA Treatment of Poplar Cuttings and Soil Composition Amendment for Improved Adaptability and Survival. J For Environ Sci 36: 259-266.
- Ishikawa S. 1980. Ecological studies of the floodplain willow forests in the Hokkaido district. Res Rep Kochi Univ 29: 73-78.
- Karp A, Hanley SJ, Trybush SO, Macalpine W, Pei M, Shield I. 2011. Genetic improvement of willow for bioenergy and biofuels. J Integr Plant Biol 53: 151-165. https://doi.org/10.1111/j.1744-7909.2010.01015.x
- Kim HG, Song HJ, Jeong MJ, Sim SJ, Park DJ, Yang JK, Yoo SB, Yeo JK, Karigar CS, Choi MS. 2011. Enzymatic Saccharification of Salix viminalis cv. Q683 Biomass for Bioethanol Production. J For Environ Sci 27: 143-149.
- Kim KS, Lee YH, Jang YS, Choi IH. 2015. The Cross Ability and the Phenotypic Characteristics of F1 Hybrid in the Interspecific Crosses between Brassica napus and B. campestris, B. rapa. Korean J Plant Res 28: 119-125. https://doi.org/10.7732/kjpr.2015.28.1.119
- Kopp RF, Abrahamson LP, White EH, Burns KF, Nowak CA. 1997. Cutting cycle and spacing effects on biomass production by a willow clone in New York. Biomass Bioenerg 12: 313-319. https://doi.org/10.1016/S0961-9534(96)00077-3
- Kuligowska K, Lutken H, Christensen B, Muller R. 2016. Interspecific hybridization among cultivars of hardy Hibiscus species section Muenchhusia. Breed Sci 66: 300-308. https://doi.org/10.1270/jsbbs.66.300
- Kuzovkina YA, Dodge M, Belyaeva IV. 2016. Clarifying Affiliations of Salix gracilistyla Miq. Cultivars and Hybrids. HortScience 51: 334-341. https://doi.org/10.21273/HORTSCI.51.4.334
- Lee SY, Yae BW, Kim KS. 2005. Segregation patterns of several morphological characters and RAPD markers in interspecific hybrids between Dianthus giganteus and D. carthusianorum. Sci Hortic 105: 53-64. https://doi.org/10.1016/j.scienta.2005.01.023
- Lee TB. 2003. Coloured Flora of Korea. Hyangmunsa, Seoul, pp 158-180. (in Korean)
- Ohashi H. 2000. A systematic enumeration of Japanese Salix (Salicaceae). J Jpn Bot 75: 1-41.
- Ohwi J, Nakaike T. 1978. Flora of Japan. Shibundo, Tokyo. (in Japanese)
- Orians CM, Griffiths ME, Roche BM, Fritz RS. 2000. Phenolic glycosides and condensed tannins in Salix sericea, S. eriocephala and their F1 hybrids: not all hybrids are created equal. Biochem Syst Ecol 28: 619-632. https://doi.org/10.1016/S0305-1978(99)00101-5
- Park WG. 1995. Disjunct Distribution and Taxonomical Studies of Salix maximowiczii Kom. on the Genus Salix (Salicaceae). Res Bull Inst For Sci 11: 61-71.
- Qu L, Xue L, Xing G, Zhang Y, Chen J, Zhang W, Lei J. 2018. Karyotype analysis of eight wild Tulipa species native to China and the interspecific hybridization with tulip cultivars. Euphytica 214: 65. https://doi.org/10.1007/s10681-018-2151-1
- Roach DA, Wulff RD. 1987. Maternal Effects in Plants. Annu Rev Ecol Syst 18: 209-235. https://doi.org/10.1146/annurev.es.18.110187.001233
- Sennerby-Forsse L, Zsuffa L. 1995. Bud structure and resprouting in coppiced stools of Salix viminalis L., S. eriocephala Michx., and S. amygdaloides Anders. Trees 9: 224-234. https://doi.org/10.1007/BF00195277
- Serapiglia MJ, Gouker FE, Smart LB. 2014. Early selection of novel triploid hybrids of shrub willow with improved biomass yield relative to diploids. BMC Plant Biol 14: 74. https://doi.org/10.1186/1471-2229-14-74
- Simon PW, Peloquin SJ. 1977. The influence of paternal species on the origin of callus in anther culture of Solanum hybrids. Theor Appl Genet 50: 53-56. https://doi.org/10.1007/bf00273799
- Stolarski M, Szczukowski S, Tworkowski J, Klasa A. 2008. Productivity of seven clones of willow coppice in annual and quadrennial cutting cycles. Biomass Bioenerg 32: 1227-1234. https://doi.org/10.1016/j.biombioe.2008.02.023
- Tokyo Botanical Society. 1926. The Botanical Magazine, Tokyo. Bot Mag (Tokyo) 40: 11. (in Latin)
- Tokyo Botanical Society. 1946. The Botanical Magazine, Tokyo. Bot Mag (Tokyo) 59: 83. (in Latin)
- Triest L. 2001. Hybridization in staminate and pistillate Salix alba and S. fragilis (Salicaceae): morphology versus RAPDs. Plant Syst Evol 226: 143-154. https://doi.org/10.1007/s006060170062
- Walters SM, Alexander JCM, Brady A, Brickell CD, Cullen J, Green PS, Heywood VH, Matthews VA, Robson NKB, Yeo PF, Knees SG. 1989. The European Garden Flora: A Manual for the Identification of Plants Cultivated in Europe, both Out-of-Doors and under Glass. Vol. III. Dicotyledons (Part 1). Cambridge University Press, Cambridge, pp 35.
- Wu Z, Raven PH. 1999. Flora of China. Science Press, Beijing, pp 274.
- Zalesny RS Jr, Headlee WL. 2015. Developing Woody Crops for the Enhancement of Ecosystem Services under Changing Climates in the North Central United States. J For Environ Sci 31: 78-90.