[1] Hodkinson T R, Chase M W, Lledó M D, et al.Phylogenetics of Miscanthus,Saccharum and related genera (Saccharinae, Andropogoneae, Poaceae) based on DNA sequences from ITS nuclear ribosomal DNA and plastid trnL intron and trnL-F intergenic spacers[J].Journal of Plant Research,2002,115(15):381-392
[2] Chen S L, Renvoize S A.Miscanthus Andersson.Flora of China,Vol. 22[M].Beijing:Science Press, and St.Louis:Missouri Botanical Garden Press,2006:581-583
[3] 刘亮,朱明,朱太平. 芒荻类植物资源的开发和利用[J]. 自然资源学报,2001,16(6):562-563
[4] 王江,张崇邦,常杰,等.五节芒对重金属污染土壤微生物生物量和呼吸的影响[J].应用生态学报,2008,19(8):1835-1840
[5] 张崇邦,王江,柯世省,等.五节芒定居对尾矿砂重金属形态、微生物群落功能及多样性的影响[J].植物生态学报,2009,33(4):629-637
[6] 秦建桥,夏北成,赵鹏.五节芒不同种群对Cd污染胁迫的光合生理响应[J].生态学报,2010,30(2):288-299
[7] Lewandowski I, Clifton B J C, Scurlock J M O, et al. Miscanthus:European experience with a novel energy crop[J].Biomass and Bioenergy,2000,19:209-227
[8] Lewandowski I, Scurlock J M O, Lindvall E, et al.The development and current status of perennial rhizomatous grasses as energy crops in the US and Europe[J].Biomass and Bioenergy,2003,25:335-361
[9] Heaton E A, Long S P, Voigt T B, et al.Miscanthus for Renewable Energy Generation:European Union Experience and Projections for Illinois[J]. Mitigation and Adaptation Strategies for Global Change,2004,9(4):433-451
[10] 梁绪振,陈太祥,白史且,等.芒属(Miscanthus)植物种质资源研究进展[J].草业与畜牧,2010(10):1-5
[11] 郝文芳,杜峰,陈小燕,等.黄土丘陵区天然群落的植物组成、植物多样性及其与环境因子的关系[J].草地学报,2012,20(7):609-615
[12] 杭玉玲,包刚,包玉梅,等.2000-2010年锡林郭勒草原植被覆盖时空变化格局及其气候响[J].草地学报,2014,22(6):1194-1204
[13] 杨晓,刘乐乐,朱新强.西藏河谷地区紫花苜蓿产量与气象因子灰色关联分析[J].草地学报,2016,24(1):198-203
[14] 任学敏,杨改河,王得祥,等.环境因子对巴山冷杉-糙皮桦混交林物种分布及多样性的影响[J].生态学报,2012,32(2):605-613
[15] 李贺,张维康,王国宏.中国云杉林的地理分布与气候因子间的关系[J].植物生态学报,2012,36(5):372-381
[16] 吴建国,周巧富.中国嵩草属植物地理分布模式和适应的气候特征[J].植物生态学报,2012,36(3):199-221
[17] 吴征镒,洪德元.中国植物志图集[M].北京:科学出版社,2008
[18] 陈守良. 禾本科[A].中国植物志[M].北京:科学出版社,1997:4-26
[19] 傅晓平. 禾本科[A].中国高等植物[M].青岛:青岛出版社,2009:1085-1092
[20] 吴征镒,孙航,周浙昆,等.中国种子植物区系地理[M].北京:科学出版社,2010:52-56
[21] Manthey M, Box E O.Realized climatic niches of deciduous trees:comparing western Eurasia and eastern North America[J]. Journal of Biogeography,2007,34:1028-1040
[22] Woodward F I.Climate and plant distribution[M].Cambridge,UK:Cambridge university press,1987:2-63
[23] Fang Jingyun, Li Ying.Climatic factors for limiting northward distribution of eight temperate tree species in Eastern North America[J].Journal of Integrative Plant Biology,2002,44:199-203
[24] 韩晨霞,李旭光,好运庆,等.重庆国家重点保护野生植物的分布与水热关系的初步研究[J].武汉植物学研究,2003,21(2):117-123
[25] Takahashi K.Effects of climatic conditions on shoot elongation of alpine dwarf pine (Pinus pumila) at its upper and lower altitudinal limits in central Japan[J].Arctic,Antarctic,and Alpine Research,2003,35:1-7
[26] 苏建荣,张志均,邓疆,等.云南红豆杉的地理分布与气候关系[J].林业科学研究,2005,18(5):510-515
[27] 郝佳波,司马永康,徐亮.云南拟单性木兰的地理分布与气候因子的关系[J].西部林业科学,2007,36(2):105-109
[28] Peng J F, Gou X H, Chen F H, et al.Altitudinal variability of climate-tree growth relationships along a consistent slope of Anyemaqen Mountains,northeastern Tibetan Plateau[J].Dendrochronologia,2008,26:87-96
[29] Millar C I, Robert D W.Distribution and climatic relationships of the American pika (Ochotona princeps) in the Sierra Nevada and Western Great Basin,U.S.A.;Periglacial Landforms as Refugia in Warming Climates[J].Arctic,Antarctic,and Alpine Research,2010,42:76-88 |