[1] 孙吉雄. 草坪学[M]. 北京:中国农业出版社,2008,78-113
[2] 朱慧森,王保平,董晓燕,等. 干旱及复水对山西野生草地早熟禾幼苗生长与生理特性的影响[J]. 草业学报,2015,24(7):79-88
[3] 董沁,鲁存海,白小明,等. 野生早熟禾(Poa L.)对模拟干旱的生理响应[J]. 中国沙漠,2013,33(6):1743-1749
[4] Xu C,Huang B. Proteins and Metabolites Regulated by Trinexapac-ethyl in Relation to Drought Tolerance in Kentucky Bluegrass[J]. Journal of Plant Growth Regulation,2012,31(1):25-37
[5] Xu P, Wang Z. Physiological mechanism of hypertolerance of cadmium in Kentucky bluegrass and tall fescue:Chemical forms and tissue distribution[J]. Environmental and Experimental Botany,2013,96:35-42
[6] 俞玲,马晖玲. 甘肃几种早熟禾内源激素水平及干旱适应性[J]. 中国沙漠,2015,35(1):182-188
[7] Xu L, Yu J, Han L, et al. Photosynthetic enzyme activities and gene expression associated with drought tolerance and post-drought recovery in Kentucky blue grass[J]. Environmental and Experimental Botany,2013,89:28-35
[8] Xu C, Huang B. Comparative Analysis of Proteomic Responses to Single and Simultaneous Drought and Heat Stress for Two Kentucky Bluegrass Cultivars[J]. Crop Science,2012,52(3):1246-1260
[9] Puyang X, An M, Han L, et al. Protective effect of spermidine on salt stress induced oxidative damage in two Kentucky bluegrass (Poa pratensis L.) cultivars[J]. Ecotoxicology and Environmental Safety,2015,117:96-106
[10] 安勐颍,孙珊珊,濮阳雪华,等. 外源亚精胺调控草地早熟禾幼苗耐盐性的研究[J]. 草业学报,2014,23(6):207-216
[11] Guo Q, Meng L, Mao P, et al. Role of exogenous salicylic acid in alleviating cadmium-induced toxicity in Kentucky bluegrass[J]. Biochemical Systematics and Ecology,2013,50:269-276
[12] Bae E J,Lee K S,Huh M R,et al. Silicon significantly alleviates the growth inhibitory effects of NaCl in salt-sensitive ‘Perfection’ and ‘Midnight’ Kentucky bluegrass (Poa pratensis L.)[J]. Horticulture, Environment, and Biotechnology,2012,53(6):477-483
[13] 陈雅君,祖元刚,刘慧民,等. 早熟禾种质资源及其遗传改良研究进展[J]. 园艺学报,2008,35(11):1701-1708
[14] 白小明,王靖婷,贺佳圆,等. 8个野生早熟禾种子萌发期耐盐性研究[J]. 草地学报,2013,21(3):546-555
[15] 吕优伟. 甘肃省13个野生早熟禾种质材料耐热性研究[D]. 兰州:甘肃农业大学,2013,48-50
[16] 方强恩,孙英,白小明,等. 甘肃早熟禾属野生植物资源分布研究[J]. 中国草地学报,2010,32(6):39-45
[17] 兰州农业部牧草与草坪草种子质量监督检验测试中心. GB/T 2930.4-2001. 牧草种子检验规程-发芽试验[S]. 北京:中国标准出版社,2001
[18] Michel B E, Kaufmann M R. The osmotic potential of polyethylene glycol 6000[J]. Plant Physiol,1973,51(5):914-916
[19] 陈新,宋高原,张宗文,等. PEG-6000胁迫下裸燕麦萌发期抗旱性鉴定与评价[J]. 植物遗传资源学报,2014,15(6):1188-1195
[20] 齐华,许晶,孟显华,等. 水分胁迫下燕麦萌芽期抗旱指标的研究[J]. 种子,2009,28(7):7-10
[21] 王艺陶,周宇飞,李丰先,等. 基于主成分和SOM聚类分析的高粱品种萌发期抗旱性鉴定与分类[J]. 作物学报,2014,40(1):110-121
[22] 李丰先,周宇飞,王艺陶,等. 高粱品种萌发期耐碱性筛选与综合鉴定[J]. 中国农业科学,2013,46(9):1762-1771
[23] 王士强,胡银岗,佘奎军,等. 小麦抗旱相关农艺性状和生理生化性状的灰色关联度分析[J]. 中国农业科学. 2007,40(11):2452-2459
[24] 肖红,徐长林,鱼小军,等. 不同产地扁蓿豆种子萌发期抗旱性综合评价[J]. 干旱地区农业研究,2014,32(5):73-77
[25] Abdel-Ghani A H, Neumann K,Wabila C, et al. Diversity of germination and seedling traits in a spring barley (Hordeum vulgare L.) collection under drought simulated conditions[J]. Genetic Resources and Crop Evolution,2015,62(2):275-292
[26] H Huang, S Song. Change in desiccation tolerance of maize embryos during development and germination at different water potential PEG-6000 in relation to oxidative process.[J]. Plant Physiology and Biochemistry,2013,68:61-70
[27] Vassilevska-Ivanova R, Shtereva L, Kraptchev B, et al. Response of sunflower (Helianthus annuus L) genotypes to PEG-mediated water stress[J]. Open Life Sciences,2014,9(12):1206-1214
[28] 安永平,强爱玲,张媛媛,等. 渗透胁迫下水稻种子萌发特性及抗旱性鉴定指标研究[J]. 植物遗传资源学报,2006,7(4):421-426
[29] 鞠乐,齐军仓,贺雪,等. 大麦种子萌发期对渗透胁迫的响应及抗旱性鉴定指标的筛选[J]. 干旱地区农业研究,2013,31(1):172-176
[30] 李翠,梁燕,张纪涛,等. 渗透胁迫对番茄种子萌发特性的影响[J]. 干旱地区农业研究,2011,29(2):173-179
[31] 陈培元,山仑. 旱地农业生理生态基础[M]. 北京:科学出版社,1998:1-17
[32] 张健,池宝亮,黄学芳,等. 以活力抗旱指数作为玉米萌芽期抗旱性评价指标的初探[J]. 华北农学报,2007,22(1):22-25
[33] 陈新,张宗文,吴斌. 裸燕麦萌发期耐盐性综合评价与耐盐种质筛选[J]. 中国农业科学,2014,47(10):2038-2046
[34] 孙璐,周宇飞,汪澈,等. 高粱品种萌发期耐盐性筛选与鉴定[J]. 中国农业科学,2012,45(9):1714-1722 |