[1] Benson E J. Effects of Fire on Tallgrass Prairie Plant Population Dynamics[M]. Manhattan, Kansas, USA: MS thesis, Kansas State University, 2001. [2] Benson E J, Hartnett D C, Mann K H. Belowground bud banks and meristem limitation in tallgrass prairie plant populations[J]. American Journal of Botany, 2004, 91: 416-421. [3] Dalgleish H J, Hartnett D C. Below-ground bud banks increase along a precipitation gradient of the North American Great Plains: A test of the meristem limitation hypothesis[J]. New Phytologist, 2006, 171: 81-89. [4] Knapp A K, Smith M D. Variation among biomes in temporal dynamics of aboveground primary production[J]. Science, 2001, 291: 481-484. [5] Rogers W E, Hartnett D C. Temporal vegetation dynamics and recolonization mechanisms on different-sized soil disturbances in tallgrass prairie[J]. American Journal of Botany, 2001, 88: 1634-1642. [6] 张兆军,穆春生,张继涛,等. 羊草根茎顶芽分生组织分化的动态研究[J].草业学报,2008,17(1): 71-79. [7] 杨允菲,邢福.松嫩平原杂类草草甸宽叶蒿无性系种群构件年龄结构及其生产力[J].草业学报,2007,16(2): 19-24. [8] 丁雪梅,杨允菲.科尔沁草原区通辽火电厂储灰池植被恢复过程中假苇拂子茅种群构件的年龄结构[J]. 草业学报, 2007,16(3):15-20. [9] 杨允菲, 宋向华. 通辽火电厂储灰池植被恢复过程中赖草种群构件的年龄结构[J].草业学报,2005,14(4): 116-118. [10] Harper J L. Population Biology of Plants[M]. New York, USA: Academic Press, 1977. [11] Klimeová J, Klime L. Bud banks and their role in vegetative regeneration-A literature review and proposal for simple classification and assessment[J]. Perspectives in Plant Ecology, Evolution and Systematics, 2007, 8: 115-129. [12] Meney K A, Dixon K W, Pate J S. Reproductive potential of obligate seeder and resprouter herbaceous perennial monocots (Restionaceae, Anarthriaceae, Ecdeiocoleaceae) from South-western Western Australia[J]. Australia Journal of Botany, 1997, 45: 771-782. [13] Raffaele E, Veblen T T. Facilitation by nurse shrubs of resprouting behaviour in a post-fire shrubland in northern Patagonia, Argentina[J]. Journal of Vegetation Science, 1998, 9: 693-698. [14] Wang Z W, Li L H, Han X G, et al. Do rhizome severing and shoot defoliation affect clonal growth of Leymus chinensis at ramet population level[J]. Acta Oecologica, 2004, 26: 255-260. [15] Peterson C J, Pickett S T A. Treefall and resprouting following catastrophic windthrow in an old-growth hemlock-hardwoods forest[J]. Forest Ecology and Management, 1991, 42: 205-217. [16] Bellingham P J, Tanner E V J, Healey J R. Sprouting of trees in Jamaican montane forests, after a hurricane[J]. Journal of Ecology, 1994, 82: 747-758. [17] Kammesheidt L. Forest recovery by root suckers and above-ground sprouts after slash-and-burn agriculture, fire and logging in Paraguay and Venezuela[J]. Journal of Tropical Ecology, 1999, 15: 143-157. [18] Guerrero-Campo J, Palacio S, Pérez-Rontomé C, et al. Effect of root system morphology on root-sprouting and shoot-rooting abilities in 123 plant species from eroded lands in North-east Spain[J]. Annals of Botany, 2006, 98: 439-447. [19] 杨允菲,张宝田,李建东.松嫩平原栽培条件下羊草无性系构件的结构[J].应用生态学报,2003,14(11):1847-1850. [20] 田迅,杨允菲.西辽河平原不同利用条件下羊草无性系种群结构的研究[J].应用生态学报,2003,14(3):465-466. [21] 祝廷成. 羊草生物生态学[M]. 长春:吉林科学技术出版社,2004. 44-109. [22] Ye X H, Yu F H, Dong M. A trade-off between guerrilla and phalanx growth forms in Leymus secalinus under different nutrient supplies[J]. Annals of Botany, 2006, 98: 187-191. [23] Polis G A. Desert communities: An overview of patterns and process[A]. In: Polis G A. The Ecology of Desert Communities[M]. Arizona, USA: University of Arizona Press, 1991. 1-25. |