蔡青, 范源洪, 2006. 甘蔗种质资源描述规范和数据标准[M]. 北京: 中国农业出版社
陈如凯, 林彦铨, 张木清等, 2003. 现代甘蔗育种的理论与实践[M]. 北京: 中国农业出版社
陈守良, 1997. 禾本科[A]. 见: 吴征镒主编, 中国植物志 第10卷[M]. 北京: 科学出版社
范源洪, 2007. 甘蔗的起源、演化和分类[A]. 见: 方嘉禾, 常汝镇主编, 中国作物及其野生近缘植物 经济作物卷[M]. 北京: 中国农业出版社, 415—421
耿以礼, 1959. 中国主要植物图说——禾本科[M]. 北京: 科学出版社
刘亮, 1987. 禾本科[A]. 见: 吴征镒主编, 西藏植物志 第5卷[M]. 北京: 科学出版社
裴昌胜, 杨盼, 2010. 世界首例芒属能源植物人工远源杂交品种诞生的背后——让乡间野草成为能源植物明星[EB/OL]. 湖南农业大学校报电子版, 473 (02). URL: http://hnndxb.cuepa.cn/show_more.php? tkey=&bkey=&doc_id=35511
孙必兴, 李德铢, 薛纪如, 2003. 禾本科[A]. 见: 吴征镒主编, 云南植物志 第9卷[M]. 北京: 科学出版社
谭显平, 2008. 能源甘蔗品种——川蔗23[J]. 世界农业, 10: 65
韦文科, 2001. 特早熟高糖甘蔗新品种粤糖93-159简介[J]. 广西蔗糖, 4: 52—53
张允演, 刘福业, 杨俊贤等, 2003. 甘蔗新品种粤糖94-128选育试验结果初报[J]. 甘蔗糖业, 4: 1—3
Alexander AG, 1985. The Energy Cane Alternative[M]. Amsterdam: Elsevier
Amalraj VA, Balasundaram N, 2005. On the taxonomy of the members of ‘Saccharum Complex’[J]. Genetic Resources and Crop Evolution, 1: 35—41
An RD (安汝东), Chu LB (楚连璧), Sun YF (孙有芳) et al., 2007. Breeding of the new variety Yunzhe 99155[J]. Sugarcane and Canesugar (甘蔗糖业), 3: 7—10
Atienza SG, Satovic Z, Peterson KK et al., 2003. Identification of QTLs associated with yield and its components in Miscanthus sinensis Anderss[J]. Euphytica, 132: 353—361
Atkinson CJ, 2009. Establishing perennial grass energy crops in the UK: A review of current propagation options for Miscanthus[J]. Biomass and Bioenergy, 33 (5): 752—759
Bajwa PK, Pinel D, Martin V JJ et al., 2010. Strain improvement of the pentosefermenting yeast Pichia stipitis by genome shuffling[J]. Microbiol Methods, 81: 179—186
Bassam NE, 1998. Energy Plant Species, Their Use and Impact on Environment and Development[M]. London: James and James (Science Publishers) Ltd
Cai Q (蔡青), Fan YH (范源洪), Aitken K et al., 2005. Assessment of the phylogenetic relationships within the “Saccharum Complex” using AFLP markers[J]. Acta Agronomica Sinica (作物学报), 31 (5): 551—559
Chang YS, 2002. Agronomic traits of three sugarcane varieties with oneeighth wild cane genetic base[J]. Taiwan Sugar, 49 (2): 4—6
Chen H (陈辉), Fan YH (范源洪), Xiangyu JG (向余颈攻) et al., 2003. Phylogenetic relationships of Saccharum and related species inferred from sequence analysis of the nrDNA ITS region[J]. Acta Agronomica Sinica (作物学报), 29 (3): 379—385
Chen SF (陈少风), Dong SS (董穗穗), Wu W (吴伟) et al., 2007. Phylogenetics of Triarrhena and related genera based on ITS sequence data[J]. Journal of Wuhan Botanical Research (武汉植物学研究), 25 (3): 239—244
Chen SF (陈少风), He J (何俊), Zhou PH (周朴华) et al., 2008. The Karyotypes of Micanthus sinensis and M.floridulus[J]. Acta Agriculturae Universitatis Jiangxiensis (江西农业大学学报), 30 (1): 123—126
Chen SL (陈守良), Sun BX (孙必兴), Phillips SM et al., 2006. Tribe Andropogoneae[A]. In: Wu ZY, Raven PH (eds.), Flora of China[M]. Beijing: Science Press; St. Louis: Missouri Botanical Garden Press, 22: 570—598
Chen XK (陈学宽), Liu JY (刘家勇), Wu CW (吴才文) et al., 2009. Breeding of the new sugarcane variety Yunzhe 94-375[J].Sugar Crops of China (中国糖料), 2: 1—3
Chen YM (陈英明), Xiao B (肖波), Chang J (常杰), 2005. Development and application on resources of energy plant[J]. Amino Acids & Biotic Resources (氨基酸和生物资源), 27 (4): 1—5
Cherney JH, Johnson KD, 1990. Evaluation of potential hebaceous biomass crops on marginal cropland[R]. ORNL/Sub8527412/5P1
Clayton WD, Renvoize SA, 1986. Genera Graminum, Grasses of the World[M]. London: Her Majesty’s Stationary Office
CliftonBrown J, Lewandiwski I, Andersson B et al., 2001, Performance of 15 Miscanthus genotypes at five sites in Europe[J]. Agronomy Journal, 93: 1013—1019
CliftonBrown J, Stampfl PF, Jones MB, 2004. Miscanthus biomass production for energy in Europe and its potential contribution to decreasing fossil fuel carbon emissions[J]. Global Change Biology, 10: 509—518
Daniels J, Roach BT, 1987. Taxonomy and evolution[A]. In: Heinz DJ (eds.), Sugarcane Improvement through Breeding[M]. New York: Elsevier, 17—84
Deng HH (邓海华), Zhang Q (张琼), 2006. Analysis on the parents of commercial varieties released in Mainland China in recent years[J]. Guangdong Agricultural Sciences (广东农业科学), 12: 7—10
Gao HD (高捍东), Cai WJ (蔡伟建), Zhu DX (朱典想) et al., 2009. Cultivation and utilization of Triarrhena sacchariflora[J]. Chinese Wild Plant Resources (中国野生植物资源), 28 (3): 65—67
Greef JM, Deuter M, 1993. Syntaxonomy of Miscanthus×giganteus Greef et Deu.[J]. Angewandte Botanik, 67: 87—90
He LZ (何立珍), Zhou PH (周朴华), Liu XM (刘选明), 1997. Studies on the autotetraploid of Triarrhena lutarioriparia[J]. Acta Genetica Sinica (遗传学报), 24 (6): 544—549
He LZ (何立珍), Zhou (周朴华), Liu XM (刘选明) et al., 1995. Study on the culture of different explants of Miscanthus sacchariflorus (Maxim.) Benth et Hook in vitro[J]. Acta Botanica BorealiOccidentalia Sinica (西北植物学报), 15 (4): 307—313
Heaton EA, Dohleman FG, Long SP, 2008. Meeting US biofuel goals with less land: the potential of Miscanthus[J]. Global Change Biology, 14: 2000—2014
Hodkinson TR, Chase MW, Lledo MD et al., 2002a. Phylogenetics of Miscanthus, Saccharum and related genera (Saccharinae, Andropogoneae, Poaceae) based on DNA sequences from ITS nuclear ribosomal DNA and plastid trnL intron and trnLF intergenic spacers[J]. Journal of Plant Research, 115 (5): 381—392
Hodkinson TR, Chase MW, Renvoize SA, 2002b. Charcterization of a genetic resource collection for Miscanthus (Saccharinae, Andropogoneae, Poaceae) using AFLP and ISSR PCR[J]. Annals of Botany, 89: 627—636
Hodkinson TR, Chase MW, Takahashi C et al., 2002c. The use of DNA sequencing (ITS and trnLF), AFLP, and fluorescent in situ hybridization to study allopolyploid Miscanthus (Poaceae) [J]. American Journal of Botany, 89 (2): 279—283
Hu B (胡彬), 2012. Study on selfincompatibility of Miscanthus (Ph. D. Dissertation) [D]. Changsha: Hunan Agricultural University
Hu JQ (胡久清), Ma HH (马辉华), Chen PF (陈鹏飞), 1989. Observation of the morphological structure of stalk and fibre of Di (a kind of Reed) [J]. Journal of Hunan Agricultural University (Natural Sciences) (湖南农业大学学报: 自然科学版), 15 (1): 23—29
Jackson P, Henry RJ, 2011. Erianthus[J]. Wild Crop Relatives: Genomic and Breeding Resources, 97—107
KarpensteinMachan M, 2001. Sustainable cultivation concepts for domestic energy production from biomass (Special issue on bioenergy) [J]. Critical Reviews in Plant Sciences, 20 (1): 1—14
Khanna M, Dhungana B, Cliftonbrown J, 2008. Costs of producing miscanthus and switchgrass for bioenergy in Illinois[J]. Biomass and Bioenergy, 32 (6): 482—493
Lafferty J, Lelley T, 1994. Cytogenetic studies of different Miscanthus species with potential for agricultural use[J]. Plant Breeding, 113: 246— 249
Lemus R, Lal R, 2005. Bioenergy crops and carbon sequestration[J]. Critical Reviews In Plant Science, 24 (1): 1—21
Lewandowski I, CliftonBrown JC, Scurlock JMO et al., 2000. Miscanthus: European experience with a novel energy crop[J]. Biomass and Bioenergy, 19 (4): 209—227
Lewandowski I, Scurlock JMO, Lindvall E et al., 2003. The development and current status of perennial rhizomatous grasses as energy crops in the US and Europe[J]. Biomass and Bioenergy, 25 (4): 335—361
Li QF (李勤奋), Du WB (杜卫兵), Li ZA (李志安) et al., 2006. Heavy metals accumulation in mining area’s Miscanthus sinensis populations and its relationship with soil characters[J]. Chinese Journal of Ecology (生态学杂志), 25 (3): 255—258
Lin YQ (林彦铨), He QJ (何启钧), Den Q (邓强) et al., 1997. The repeatability analysis of high biomass character performances in sugarcane[J]. Sugarcane (甘蔗), 4 (4): 6—10
LindeLaursen I, 1993. Cytogenetic analysis of Miscanthus ‘Giganteus’, an interspecific hybrid[J]. Hereditas, 119: 297—300
Liu SM (刘少谋), Fu C (符成), Chen YS (陈勇生), 2007. Utilization of erianthus arundinaceus progeny through backcross over the last decade at Hainan sugarcane breeding station[J]. Sugarcane and Canesugar (甘蔗糖业), 4: 1—6
Liu XL (刘新龙), Su HS (苏火生), Ma L (马丽) et al., 2010. Phylogenetic relationships of sugarcane related genera and species based on ITS sequences of nuclear ribosomal DNA[J]. Acta Agronomica Sinica (作物学报), 36 (11): 1853—1863
Liu YC (刘艳春), 2010. The Taxonomic Revision of Saccharinae (Poaceae) in China (Ph. D. Dissertation) [D]. Kunming: Kunming Institute of Botany, Chinese Academy of Science
Lu X (陆鑫), Mao J (毛钧), Liu HB (刘洪博) et al., 2012. Innovation germplasm of Erianthus rockii Ⅰ. establishment of F1 intergeneric distant hybridization of Saccharum officinarum L. and Erianthus rockii and the Identification of F1 by SSR molecular markers[J]. Journal of Plant Genetic Resources (植物遗传资源学报), 13 (2): 321—324
Lu YF (卢玉飞), Jiang JX (蒋建雄), Yi ZL (易自力), 2012. Study on the transferability of maize SSR and sugarcane ESTSSR markers to Miscanthus (Poaceae) [J]. Acta Prataculturae Sinica (草业学报), 21 (5): 86—95
Ma HZ (马洪峥), Li SS (李珊珊), Ge S (葛颂) et al., 2011. Isolation of SSR markers for two related secondgeneration energy crop species, Miscanthus nepalensis and M.nudipes (Poaceae) [J]. Biodiversity Science (生物多样性), 19 (5): 535—542
Mao J (毛钧), Lu X (陆鑫), Liu XL (刘新龙) et al., 2012a. Report on the innovated crossbreeding of wild sugarcane germplasm resources in Yunnan in recent ten years[J]. Sugarcane and Canesugar (甘蔗糖业), 2: 1—5
Mao J (毛钧), Lu X (陆鑫), Su HS (苏火生) et al., 2012b, Comprehensive evaluation with DTOPSIS for innovation blood progenies of sugarcane Co419[J]. Southwest China Journal of Agricultural Sciences (西南农业学报), 25 (3): 775—780
Mukherjee SK, 1957. Origin and distribution of Saccharum[J]. Botanical Gazette, 119 (1): 55—61
Pan YC (潘一晨), 2012. Study on the selection of Gramineae energy grasses and the saccharification of Miscanthus (Master Thesis) [D]. Shenyang: Shengyang Normal University
Petersen KK, Hagberg P, Kristiansen K, 2003. Colchicine andoryzalin mediated chromosome doubling in different genotypes of Miscanthus sinensis[J]. Plant Cell, Tissue and Organ Culture, 73: 137—146
Prinegm SJ, 1997. Opportunities for bioenergy development in lower south USA[J]. Proceedings of the Third Biomass Conference of the America, 1: 227—235
Qiu XN (邱晓娜), 2006. Study on the Development of Energy Cane—Fuel Alcohol Industry in China (Master Thesis) [D]. Fuzhou: Fujian Agriculture and Forestry University
Qiu YG (邱玉桂), Cai LS (蔡联生), Wang SY (王书义), 2005. Study on the cuticle of Miscanthus stem by means of SEMEDXA (part Ⅰ) [J]. Transactions of China Pulp and Paper (中国造纸学报), 120 (2): 1—10
Song JY (宋锦玉), 2011. Progress of U.S. Cellulosic ethanol commercial project[J]. Contemporary Chemical Industry (当代化工), 40 (5): 517—520
Sun BX (孙必兴), Wang S (王松), 1997. A new genus in the subtribe Saccharinae (Gramineae) [J]. Acta Botanica Yunnanica (云南植物研究), 19 (3): 239—240
Tan XP (谭显平), 2004. Energy sugarcane, the best material for fuel alcohol production[J]. Sugarcane (甘蔗), 11 (2): 30—31
Thomas LT, 2003. World sugarcane variety censusYear 2000[J]. Sugar Cane International, March/April: 1218
Venendaal R, Jorgensen U, Forsters CA, 1997. European energycrops: a synthesis[J]. Biomass and Bioenergy, 13 (3): 147—185
Walsh M, 1997. Miscanthus Handbook, EU Project FAIR3CT961707[M]. Hyperion: Cork
Wang LP (王丽萍), Ma L (马丽), Xia HM (夏红明) et al., 2006. Application of Saccharum spontaneum in sugarcane crossbreeding[J]. Sugar Crops of China (中国糖料), 1: 1—4
Wang LP (王丽萍), Cai Q (蔡青), Fan YH (范源洪) et al., 2007. Study on the distant hybrid utilization between Saccharum and Erianthus arundinanceus[J]. Southwest China Journal of Agricultural Sciences (西南农业学报), 4: 721—726
Wang Y (王禹), Yi ZL (易自力), Yi ZX (易镇邪) et al., 2012. Research on breeding and cultivation technology of Miscanthus energy plant[J]. Renewable Energy Resources (可再生能源), 30 (5): 84—88
Xi QG (席庆国), Hong H (洪浩), 2008. Description of an introduced plant Miscanthus×giganteus[J]. Pratacultural Science (草业科学), 25 (2): 26—28
Xiao L (肖亮), Xue D (薛德), Jiang JX (蒋建雄) et al., 2013. Genetic diversity in Miscanthus sinensis of China revealed by simple sequence repeats DNA markers[J]. Journal of Plant Genetic Resources (植物遗传资源学报), 14 (1): 36—41
Xie XM (解新明), Zhou F (周峰), Zhao YH (赵燕慧) et al., 2008. A summary of ecological and energyproducing effects of perennial energy grasses[J]. Acta Ecologica Sinica (生态学报), 28 (5): 2329—2342
Xue D (薛德), Xiao L (肖亮), Ai X (艾辛) et al., 2012. Genetic diversity of Miscanthus floridulus revealed by morphological characters and SSR marker[J]. Acta Prataculturae Sinica (草业学报), 21 (5): 96—106
Yi ZL (易自力), 2012. Exploitation and utilization of Miscanthus as energy plant[J]. Journal of Hunan Agricultural University (Natural Sciences) (湖南农业大学学报: 自然科学版), 38 (5): 455—463
Yi ZL (易自力), Zhou PH (周朴华), Chu CC (储成才) et al., 2001. Establishment of genetic transformation system for Miscanthus sacchariflorus and obtained of its transgenic plant[J]. Chinese High Technology Letters (高技术通讯), (4): 20—24
Yoshida M, Liu Y, Uchida S et al., 2008. Effects of cellulose crystallinity, hemicellulose, and lignin on the enzymatic hydrolysis of Miscanthus sinensis to monosaccharides[J]. Biosci Biotechnol Biochem, 72 (3): 805—810
You JH (游建华), Mo LX (莫磊兴), Zeng H (曾慧) et al., 2005. Development of a new sugar and energy cane variety Guitang No.22 by means of 60Coγ ray induced mutation[J]. Southwest China Journal of Agricultural Sciences (西南农业学报), 5: 552—556
Yu H (于慧), 2000. Studies on Systematics of Subtribe Saccharinae (Poaceae) (Master Thesis) [D]. Guangzhou: South China Institute of Botany, Chinese Academy of Sciences
Yuan ZH (袁振宏), Kong XY (孔晓英), Yan YJ (颜涌捷) et al., 2006. An orthogonal experiment on echnical needs for Chinese silvergrass hydrolysis process with dilute sulphuric acid[J]. Acta Energiae Solaris Sinica (太阳能学报), 27 (6): 631—634
Zhang CB (张崇邦), Wang J (王江), Ke SX (柯世省) et al., 2009. Effects of natural inhabitation by Miscanthus floridulus on heavy metal speciations and function and diversity of microbial community in mine tailing sand[J]. Chinese Journal of Plant Ecology (植物生态学报), 33 (4): 629—637
Zhang H (张华), Chen RK (陈如凯), 2002. Research and development of energy cane in China[J]. Sugarcane (甘蔗), 9 (4): 33—35
Zhang YD (张友德), Xie CZ (谢成章), 1989. A study of seed germination of Miscanthus sacchariflorus[J]. Journal of Huazhong Agricultural (华中农业大学学报), 8 (1): 79—81
Zhang YY (张允演), Liu FY (刘福业), Yang JX (杨俊贤) et al., 2007. Breeding of very precocious and high sugar content sugarcane variety YT00236[J]. Sugar Crops of China (中国糖料), 1: 5—7
Zhao NX (赵南先), Xiao YF (萧运峰), 1990. Plant resources and its exploitation, utilization of the genus Miscanthus in Anhui province[J]. Journal of Wuhan Botanical Research (武汉植物研究), 8 (4): 374—382
Zhou H (周会), 2003. Selection and Genetic Analysis for the Crossing Parents of Energy Cane (Master Thesis)[D]. Fuzhou: Fujian Agriculture and Forestry University
Zhou J (周婧), Li QY (李巧云), Xiao L (肖亮) et al., 2012. Potential distribution of Miscanthus sinensis and M. floridulus in China[J]. Chinese Journal of Plant Ecology (植物生态学报), 6: 504—510
Zhou YY (周玥玥), Chen ZY (陈智勇), Huang LF (黄丽芳) et al., 2012. Establishment of an in vitro system for regeneration and polyploid induction of Miscanthus floridulus[J]. Journal of Hunan Agricultural University (Natural Sciences) (湖南农业大学学报: 自然科学版), 38 (5): 487—490
Zhu MD (朱明东), Jiang JX (蒋建雄), Xiao L (肖亮) et al., 2012. Natural hybridzation between Miscanthus sinensis and M. floridulus revealed by Phlogenic analysis using morphological traits and Adh1 sequences[J]. Acta Prataculturae Sinica (草业学报), 21 (3): 132—137
Zong JQ (宗俊勤), Chen JB (陈静波), Nie DY (聂东阳) et al., 2011. Preliminary evaluation on salinity tolerance of Miscanthus sinensis Anderss and M. sacchariflorus (Maxim.) Benth of China[J]. Acta Arestia Sinica (草地学报), 19: 803—808 |