参考文献/References:
[1]SMART L B, CAMERON K D.Genetic improvement of willow (Salix spp.) as a dedicated bio-energy crop[M]∥Vermerris W. Genetic Improvement of Bio-energy Crops. New York:Springer, 2008: 347-370.
[2]涂忠虞.柳树育种与栽培[M].南京:江苏科学技术出版社,1982.
[3]施士争.柳树的园林应用类型与改良[J].西北林学院学报,2008,23(4):200-204.
[4]SERAPIGLIA M J, GOUKER F E, SMART L B. Early selection of novel triploid hybrids of shrub willow with improved biomass yield relative to diploids [J]. BMC Plant Biology,2014,14(1):74.
[5] 诸葛强,张博,黄敏仁,等.植物近等基因系培育及在林木遗传改良上的应用探讨[J].林业科学研究, 2003,16(6):754-759.
[6]赵玉芬,李金霞,储博彦,等. 6 个品种大花萱草花粉活力的测定[J].西部林业科学,2017,46(2):15-19,31.
[7]王源秀,江聪,徐立安.柳树花粉生活力分析[J].林业科技开发,2007,21(1): 28-30.
[8]KOPP R F, MAYNARD C A, NIELLA D P R, et al. Collection and storage of pollen from Salix (Salicaceae) [J]. American Journal of Botany, 2002, 89(2): 248-252.
[9]GUDIN S, ARENE L, PELLEGRINO C. Influence of temperature and hygrometry on rose pollen germination[J]. Advances in Horticultural Science, 1991, 5(3): 96-98.
[10]左丹丹,明军,刘春,等.植物花粉生活力检测技术进展[J].安徽农业科学,2007,35(16): 4742-4745.
[11]DAFNI A, FIRMAGE D. Pollen viability and longevity: practical, ecological and evolutionary implications [J]. Plant Systematics and Evolution,2000,222: 113-132.
[12]FEI S, NELSON E. Estimation of pollen viability, shedding pattern, and longevity of creeping bent grass on artificial media[J]. Crop Science,2003,43(6):2177-2181.
[13]年玉欣,罗凤霞,张颖,等.测定百合花粉生命力的液体培养基研究[J].园艺学报,2005,32(5):922-925.
[14]王玲,祝朋芳,毛洪玉.不同培养基及不同贮藏条件对金娃娃萱草花粉生命力的影响[J].西北林学院学报,2009,24(3):95-97.
[15]DICKINSON D B. Influence of borate and pentaerythritol concentrations on germination and tube growth of Lilium longiflorum pollen[J]. Journal-American Society for Horticultural Science,1978,103(3):413-416.
[16]朱雪晨,王改萍,彭方仁,等.不同美国山核桃品种花粉萌发与活力研究[J].南京林业大学学报(自然科学版),2015,39 (4):1-6.
[17]杨尚尚,苑兆和,李云,等.石榴‘泰山红’的花粉萌发生物学特性[J].林业科学,2013,49(10):48-53.
[18]安晓芹,廖康,殷惠娟,等.4 个杏品种花粉离体萌发及花粉管生长动态[J].新疆农业大学学报,2013,36(1):33-37.
[19]田翠婷,吕洪飞,王锋,等.培养基组分对青杄离体花粉萌发和花粉管生长的影响[J].北京林业大学学报,2007,29(1):47-52.
[20]加藤幸雄,志左诚.植物生殖生理学[M].北京:科学出版社,1987:176-180.
[21]郭思佳,王倩,梁隐泉,等.几种百合花粉生活力测定及贮藏条件研究[J].江苏农业科学,2015,43(9):205-208.
[22]姚成义,赵洁.钙和硼对蓝猪耳花粉萌发及花粉管生长的影响[J].武汉植物学研究,2004,22(1):1-7.
[23]SORKHEH K, SHIRAN B, ROUHI V, et al. Influence of temperature on the in vitro pollen germination and pollen tube growth of various native Iranian almonds (Prunus L. spp.) species[J]. Trees, 2011, 25(5): 809-822.
[24]ACAR I, KAKANI V G. The effects of temperature on in vitro pollen germination and pollen tube growth of Pistacia spp[J]. Scientia Horticulturae, 2010, 125(4): 569-572.
[25]吴硕,智福军,贾彦丽,等.温度和光照时间以及贮藏条件对枣花粉萌发的影响[J].河北农业科学,2017,21 (2):32-35.
[26]徐进,陈天华,王章荣,等.不同贮藏方法及光照对马尾松花粉活力的影响[J].南京林业大学学报(自然科学版),1998,22 (3):71-74.
[27]张永平,乔永旭,陈超.东方百合西伯利亚花粉生活力测定及其主要影响因子[J].江苏农业科学,2009(1): 145-146.
[28]杨尚尚,苑兆和,李云,等.石榴‘泰山红’的花粉萌发生物学特性[J].林业科学,2013,49(10):48-53.
[29]张洪伟,段一凡,李稚,等.不同贮藏方法对桂花花粉活力影响的研究[J].南京林业大学学报(自然科学版),2014,38 (S1) : 6-12.
[30]李志能,刘国锋,罗春丽,等.悬铃木花粉生活力及贮藏力的研究[J].武汉植物学研究,2006, 24(1): 54-57.
[31]杨鑫,张秀省,穆红梅,等. 4 种槐树花粉生活力测定方法的比较[J].广东农业科学,2011(12):53-54,77.
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