[1] ZHANG C,MA Z,DU G. Light-Dependent Associations of Germination Proportion with Seed Mass in Alpine Grasslands of the Qinghai-Tibet Plateau[J]. Ecological Engineering,2017,105:306-313 [2] BASKIN C C,BASKIN J M. Seeds:Ecology,Biogeography,and Evolution of Dormancy and Germination[M]. San Diego:Academic Press,2014:17-26 [3] 许静,杜国祯,李文龙,等.温度和海拔对高寒草甸植物种子萌发进化特性的影响[J].兰州大学学报(自然科学版),2013,49(3):377-383 [4] 鱼小军,师尚礼,龙瑞军,等.生态条件对种子萌发影响研究进展[J].草业科学,2006,23(10):44-49 [5] 安玉艳,梁宗锁.植物应对干旱胁迫的阶段性策略[J].应用生态学报,2012,23(10):288-296 [6] 王亚楠,赵思明,曹兵. PEG-600模拟干旱胁迫下10种草本植物萌发期抗旱性比较[J].草地学报,2020,28(4):983-989 [7] 秦文静,梁宗锁.四种豆科牧草萌发期对干旱胁迫的响应及抗旱性评价[J].草业学报,2010,19(4):61-70 [8] 孙可蒙,隋晓青,王玉祥,等. PFG模拟干旱胁迫下12份新疆野生无芒雀麦种质萌发期抗旱性评价[J].草原与草坪,2020,40(6):102-117 [9] 李京蓉,周学斌,马真,等. 6种高寒牧区禾本科牧草抗旱性研究与评价[J].草地学报,2018,26(3):659-665 [10] 李聪,马真,武林,等.种子大小和原位埋藏对17种高寒草甸植物种子萌发率和死亡率的影响[J].草地学报,2021,29(10):2169-2175 [11] VENABLE D,BROWN J S. The Selective Interactions of Dispersal,Dormancy,and Seed Size as Adaptations for Reducing Risk in Variable Environments[J]. The American Naturalist,1988,131:360-384 [12] 郭有燕,刘宏军,余宏远,等.种子大小和干旱胁迫对文冠果幼苗生长的影响[J].西北农林科技大学学报(自然科学版),2016,44(8):143-147 [13] 付锦雪,张晨星,王晓霞,等.水分胁迫和种子大小对侧柏种子萌发的影响[J].种子,2020,39(2):50-57 [14] 赵新全.高寒草甸生态系统与全球变化[M].北京:科学出版社,2009:2-4 [15] CHU C,WANG Y,DU G,et al. On the Balance between Niche and Neutral Processes as Drivers of Community Structure along a Successional Gradient:Insights from Alpine and Sub-Alpine Meadow Communities[J]. Annals of Botany,2007,100:807-812 [16] ZHANG C,WILLIS C G,KLEIN J A,et al. Recovery of Plant Species Diversity during Long-Term Experimental Warming of a Species-Rich Alpine Meadow Community on the Qinghai-Tibet Plateau[J]. Biological Conservation,2017,213:218-224 [17] 张荣,陈亚明,孙国钧,等.繁殖体与微生境在退化草地恢复中的作用(英文)[J].生态学报, 2004,24(5):972-977 [18] 王长庭,龙瑞军,丁路明.高寒草甸不同草地类型功能群多样性及组成对植物群落生产力的影响[J].生物多样性,2004,12(4):21-27 [19] 王亚楠,赵思明,曹兵. PEG-6000模拟干旱胁迫下10种草本植物萌发期抗旱性比较[J].草地学报,2020,28(4):983-989 [20] 秦立刚,李雪,李韦瑶,等. PEG干旱胁迫对3种葱属植物种子萌发期渗透调节物质及酶活性的影响[J].草地学报,2021,29(1):72-79 [21] GREIPSSON S,DAVY A J. Seed Mass and Germination Behaviour in Populations of the Dune-building Grass Leymus arenarius[J]. Annals of Botany,1995(5):493-501 [22] VOLIS S,BOHRER G. Joint Evolution of Seed Traits along an Aridity Gradient:Seed Size and Dormancy are not Two Substitutable Evolutionary Traits in Temporally Heterogeneous Environment[J]. New Phytologist,2012,197(2):655-667 [23] 武高林,杜国祯,尚占环.种子大小及其命运对植被更新贡献研究进展[J].应用生态学报,2006,17(10):1969-1972 [24] ZHANG C,WILLIS C,BURGHARDT L,et al. The Community-Level Effect of Light on Germination Timing in Relation to Seed Mass:A Source of Regeneration Niche Differentiation[J]. New Phytologist,2014,204(3):496-506 [25] LOSOS J B. Phylogenetic Niche Conservatism,Phylogenetic Signal and the Relationship between Phylogenetic Relatedness and Ecological Similarity among Species[J]. Ecology Letters,2008,11:995-1003 [26] ZHANG C,WILLIS C,DONOHUE K,et al. Effects of Environment,Life-History and Phylogeny on Germination Strategy of 789 Angiosperms Species on the Eastern Tibetan Plateau[J]. Ecological Indicators,2021,129:107974 |