[1] ELDRIDGE D J, DELGADO -BAQUERIJZO M, TRAVERS S K, et al. Competition drives the response of soil microbial diversity to increased grazing by vertebrate herbivores[J]. Ecology, 2017, 98(7): 1922-1931 [2] 李红琴, 毛绍娟, 祝景彬, 等. 放牧强度对高寒草甸群落碳氮磷化学计量特征的影响[J]. 草业科学, 2017, 34(3): 449-455 [3] FINN J A, KIRWAN L, CONNOLLY J, et al. Ecosystem function enhanced by combining four functional types of plant species in intensively managed grassland mixtures: a 3-year continental-scale field experiment[J]. Journal of Applied Ecology, 2013(50): 365-375 [4] 李洋, 严振英, 郭丁, 等. 围封对青海湖流域高寒草甸植被特征和土壤理化性质的影响[J]. 草业学报, 2015, 24(10): 33-39 [5] 张文彦, 樊江文, 钟华平, 等. 中国典型草原优势植物功能群氮磷化学计量学特征研究[J]. 草地学报, 2010, 18(4): 503-509 [6] 臧润国, 张志东. 热带森林植物功能群及其动态研究进展[J]. 生态学报, 2010, 30(12): 3289-3296 [7] 罗东华, 王敏, 徐有权. 植物功能群在陆生退化生态系统中的研究进展[J]. 绿色科技, 2017(18): 39-42 [8] HE J S, WANG L, FLINN D F B, et al. Leaf nitrogen: phosphorus stoichiometry across Chinese grassland biomes[J]. Ecosystem Ecology, 2008(155): 301-310 [9] 刘旻霞, 朱柯嘉. 青藏高原东缘高寒草甸不同功能群植物氮磷化学计量特征研究[J]. 中国草地学报, 2013, 35(2): 52-58 [10] 戚德辉, 温仲明, 王红霞, 等. 黄土丘陵区不同功能群植物碳氮磷生态化学计量特征及其对微地形的响应[J]. 生态学报, 2016, 36(20): 6420-6430 [11] 许宏斌, 辛晓平, 宝音陶格涛, 等. 放牧对呼伦贝尔羊草草甸草原生物量分布的影响[J]. 草地学报, 2020, 28(3): 1007-1035 [12] REED M S, STRINGER L C. Land Degradation, Desertification and Climate Change: Anticipating, assessing and adapting to future change[M]. London: Routledge, 2016: 4-28 [13] BECK J J, HERNANDEZ D L, PASARI J R, et al. Grazing maintains native plant diversity and promotes community stability in an annual grassland[J]. Ecological Applications, 2015, 25(5): 1259-1270 [14] 岳鹏鹏, 卢学峰, 叶润蓉, 等. 青海湖地区紫花针茅草原群落特征[J]. 草业学报, 2014, 23(4): 10-19 [15] 侯路路, 闫瑞瑞, 张宇, 等. 放牧强度对草甸草原羊草功能性状的影响[J]. 中国农业科学, 2020, 53(13): 2562-2572 [16] 张宇, 侯路路, 闫瑞瑞, 等. 放牧强度对草甸草原植物群落特征及营养品质的影响[J]. 中国农业科学, 2020, 53(13): 2550-2561 [17] 闫瑞瑞, 辛晓平, 王旭, 等. 不同放牧梯度下呼伦贝尔草甸草原土壤碳氮变化及固碳效应[J]. 生态学报, 2014, 34(6): 1587-1595 [18] STERNER R W, ELSER J J, VITOUSEK P. Ecological Stoichiometry: The biology of elements from molecules to the biosphere[M]. Princeton: Princeton University Press, 2017: 2-15 [19] 曹娟, 闫文德, 项文化, 等. 不同年龄杉木人工林土壤有机磷的形态特征[J]. 土壤通报, 2016, 47(3): 681-687 [20] 李金花, 李镇清, 王刚. 不同放牧强度对冷蒿和星毛委陵菜养分含量的影响[J]. 草业学报, 2003(6): 30-35 [21] HE J S, FANG J, WANG Z, et al. Stoichiometry and large-scale patterns of leaf carbon and nitrogen in the grassland biomes of China[J]. Oecologia, 2006, 149(1): 115-122 [22] 韩梦琪, 王忠武, 靳宇曦, 等. 短花针茅荒漠草原物种多样性及生产力对长期不同放牧强度的响应[J]. 西北植物学报, 2017, 37(11): 2273-2281 [23] BARON V S, MAPFUMO E, DICK A C, et al. Grazing intensity impacts on pasture carbon and nitrogen flow[J]. Journal of Range Management, 2002(55): 535-541 [24] HAN G D, HAO X Y, ZHAO M L, et al. Effect of grazing intensity on carbon and nitrogen in soil and vegetation in a meadow steppe in Inner Mongolia[J]. Agriculture Ecosystems & Environment, 2008, 125(1), 21-32 [25] 朱爱民, 韩国栋, 康静, 等. 长期放牧对短花针茅荒漠草原不同功能群植物重要值的影响[J]. 草原与草坪, 2020, 40(5): 59-67 [26] DYBZINSKI R, FARGIONE J E, ZAK D R, et al. Soil fertility increases with plant species diversity in a long-term biodiversity experiment[J]. Oecologia, 2008, 158(1): 85-93 [27] ROCHER C, THEIN S, SCHMID B, et al. Complementary nitrogen use among potentially dominant species in a biodiversity experiment varies between two years[J]. Journal of Ecology, 2008, 96(3): 477-488 [28] 黄建军, 王希华. 浙江天童32种常绿阔叶树叶片的营养及结构特征[J]. 华东师范大学学报(自然科学版), 2003(1): 92-97 [29] LI X, LIU Z, REN W, et al. Linking nutrient strategies with plant size along a grazing gradient: Evidence from Leymus chinensis in a natural pasture[J]. Journal of integrative agriculture, 2016, 15(5): 1132-1144 [30] SONG S, ZHU J, ZHENG T, et al. Long-term grazing exclusion reduces species diversity but increases community heterogeneity in an alpine grassland[J]. Frontiers in Ecology and Evolution, 2020, 8: 66 [31] KOERSELMAN W, MEULEMAN. The vegetation N: P ratio: a new tool to detect the nature of nutrient limit at tion [J]. Journa of Applied Ecology, 1996, 33(6): 1441-1450 [32] 牛得草, 董晓玉, 傅华. 长芒草不同季节碳氮磷生态化学计量特征[J]. 草业科学, 2011, 28(6): 915-920 [33] 韩雪娇. 内蒙古中部荒漠草原的化学计量特征[D]. 呼和浩特: 内蒙古大学, 2017: 22-25 [34] 董晓玉, 傅华, 李旭东, 等. 放牧与围封对黄土高原典型草原植物生物量及其碳氮磷贮量的影响[J]. 草业学报, 2010, 19(2): 175-182 [35] 董晓玉. 放牧与围封对黄土高原典型草原植物碳、氮、磷生态计量特征及其贮量的影响[D]. 兰州: 兰州大学, 2009: 31-32 [36] HEDIN L O. Global organization of terrestrial plant nutrient interactions[J]. Proceedings of the national academy o f sciences of the United States of America, 2004, 101(30): 10849-10850 [37] 宋珊珊, 张建胜, 郑天立, 等. 围栏封育对青海海北高寒草甸植被碳储量的影响[J]. 草业科学, 2020, 37(12): 2414-2421 |