[1] Scurlock J M O, Johnson K, Olson R J. Estimating net primary productivity from grassland biomass dynamics measurements[J]. Global Change Biology,2002,8(8):736-753 [2] Ni J. Carbon storage in grasslands of China[J]. Journal of Arid Environments,2003,50:205-218 [3] 王彦龙,马玉寿,施建军,等. 黄河源区高寒草旬不同植被生物量及土壤养分状况研究[J]. 草地学报,2011,19(1):1-6 [4] Jackson R B, Canadell J, Ehleringer J R, et al. A global analysis of root distributions for terrestrial biomes[J]. Oecologia,1996,108:389-411 [5] Titlyanova A A, Romanova I P, Kosykh N P, et al. Pattern and process in above-ground and below-ground components of grassland ecosystems[J]. Journal of Vegetation Science,1999,10(3):307-320 [6] Mokany K, Raison R J, Prokushkin A S. Critical analysis of root: shoot ratios in terrestrial biomes[J]. Global Change Biology,2006,12:84-96 [7] 郑晓翾,赵家明,张玉刚,等. 呼伦贝尔草原生物量变化及其与环境因子的关系[J]. 生态学杂志,2007,26(4):533-538 [8] Peri P L, Lasagno R. Biomass, carbon and nutrient storage for dominant grasses of cold temperate steppe grasslands in southern Patagonia, Argentina[J]. Journal of Arid Environments,2010,74(1):23-34 [9] Brouwer R. Nutritive influences on distribution of dry matter in the plant[J]. Netherlands Journal of Agricultural Science,1962,10:399-408 [10] 张美玲,蒋文兰,陈全功,等. 草地净第一性生产力估算模型研究进展[J]. 草地学报,2011,19(2):356-366 [11] 中国科学院中国植被图编辑委员会. 中国植被图集[M]. 北京: 科学出版社, 2001 [12] Coupland R T. Grassland ecosystems of the world: analysis of grasslands and their uses[M]. New York: Cambridge University Press,1979:23-31 [13] Munkhtsetseg E, Kimura R, Wang J, et al. Pasture yield response to precipitation and high temperature in Mongolia[J]. Journal of Arid Environments,2007,70:94-110 [14] 韩彬,樊江文,钟华平. 内蒙古草地样带植物群落生物量的梯度研究[J]. 植物生态学报,2006,30(4):553-562 [15] 马文红,杨元合,贺金生,等.内蒙古温带草地生物量及其与环境因子的关系[J].中国科学C辑:生命科学,2008,38(1):84-92 [16] 李扬,孙洪仁,丁宁,等. 紫花苜蓿根系生物量[J]. 草地学报,2011,19(5):872-879 [17] Gower S T. Relations between mineral nutrient availability and fine root biomass in two costa rican tropical wet forests: a hypothesis[J]. Biotropica,1987,19:171-175 [18] Heggenstaller A H, Moore K J, Liebman M, et al. Nitrogen influences biomass and nutrient partitioning by perennial, warm-season grasses[J]. Agronomy Journal,2009,101:1363-1371 [19] Darby F, Turner R. Below-and aboveground biomass of Spartina alterniflora: response to nutrient addition in a Louisiana salt marsh[J]. Estuaries and Coasts,2008,31:326-334 [20] 陈世鐄. 内蒙古草原区植被地下生物量分布的规律及其特点[J]. 内蒙古农业大学学报:自然科学版,1992,13(1):1-7 [21] Friedlingstein P, Joel G, Field C B, et al. Toward an allocation scheme for global terrestrial carbon models[J]. Global Change Biology,1999,5(7):755-770 [22] Schenk H J, Jackson R B. Rooting depths, lateral root spreads and below-ground/ above-ground allometries of plants in water-limited ecosystems[J]. Journal of Ecology,2002,90:480-494 [23] 马文红,方精云. 内蒙古温带草原的根冠比及其影响因素[J]. 北京大学学报:自然科学版,2006,42(6):774-778 [24] Poorter H, Nagel O. The role of biomass allocation in the growth response of plants to different levels of light, CO2, nutrients and water: a quantitative review[J]. Australian Journal of Plant Physiology,2000,27:595-607 [25] Wilson J B. Shoot competition and root competition[J]. Journal of Applied Ecology,1988,25:279-296 [26] Aerts R, Boot R G A, van der Aart P J M. The relation between above-and belowground biomass allocation patterns and competitive ability[J]. Oecologia,1991,87:551-559 [27] Markham J H, Grime J P, Buckland S. Reciprocal interactions between plants and soil in an upland grassland[J]. Ecological Research,2009,24(1):93-98 [28] Kong D L, Wu H F, Wang M, et al. Structural and chemical differences between shoot-and root-derived roots of three perennial grasses in a typical steppe in Inner Mongolia China[J]. Plant and Soil,2010,336:209-217 [29] Gao Y Z, Chen Q C, Lin S, et al. Resource manipulation effects on net primary production, biomass allocation and rain-use efficiency of two semiarid grassland sites in Inner Mongolia, China [J]. Oecologia,2011,165: 855-864 [30] Chapin F S. The mineral nutrition of wild plants [J]. Annual Review of Ecology and Systematics,1980,11:233-260 [31] Garten Jr C T, Smith J L, Tyler D D, et al. Intra-annual changes in biomass, carbon, and nitrogen dynamics at 4-year old switchgrass field trials in west Tennessee, USA[J]. Agriculture Ecosystems and Environment,2010,136:177-184 [32] Weiner J. Plant reproductive ecology: patterns and strategies [M]. New York: Oxford University Press,1990:228-245 |