[1] GAVILÁN R G. The use of climatic parameters and indices in vegetation distribution. A case study in the Spanish Sistema Central[J]. International Journal of Biometeorology,2005,50:111-120 [2] ZEDLER J B,CALLAWAY J C,DESMOND J S,et al. Californian salt-marsh vegetation:An improved model of spatial pattern[J]. Ecosystems,1999,2:19-35 [3] CHASE M,JOHNSON E,MARTIN Y. The influence of geomorphic processes on plant distribution and abundance as reflected in plant tolerance curves[J]. Ecological Monographs,2012,82(4):429-447 [4] MUJIC A B,DURALL D M,SPATAFORA J W,et al. Competitive avoidance not edaphic specialization drives vertical niche partitioning among sister species of ectomycorrhizal fungi[J]. New Phytologist,2016,209(3):1174-1183 [5] XIA J,ZHANG S,ZHAO X,et al. Effects of different groundwater depths on the distribution characteristics of soil-Tamarix water contents and salinity under saline mineralization conditions[J]. Catena,2016,142:166-176 [6] 王军强,刘彬,常凤,等. 巴音布鲁克新疆假龙胆适生地植物群落物种多样性及其环境解释[J]. 中国草地学报,2021,43(3):29-36 [7] TILMAN D,WEDIN D,KNOPS J. Productivity and sustainability influenced by biodiversity in grassland ecosystems[J]. Nature,1996,379:718-720 [8] PHILLIPS O L,VARGAS P N,MONTEAGUDO A L,et al. Habitat association among Amazonian tree species:A landscape-scale approach[J]. Journal of Ecology,2003,91(5):757-775 [9] SHALTOUT K,EL-KADY H,AL-SODANY Y. Vegetation analysis of the Mediterranean region of Nile Delta[J]. Vegetatio,1995,116(1):73-83 [10] BALDECK C A,HARMS K E,YAVITT J B,et al. Soil resources and topography shape local tree community structure in tropical forests[J]. Proceedings of the Royal Society B:Biological Sciences,2013,280(1753):20122532 [11] GUERRA T N F,RODAL M J N,LINS E SILVA A C B,et al. Influence of edge and topography on the vegetation in an Atlantic Forest remnant in northeastern Brazil[J]. Journal of Forest Research,2013,18(2):200-208 [12] 李新荣,何明珠,贾荣亮. 黑河中下游荒漠区植物多样性分布对土壤水分变化的响应[J]. 地球科学进展,2008,23(7):685-691 [13] 王水献,董新光,刘磊. 新疆焉耆盆地绿洲水盐双梯度下天然植被多样性分异特征[J]. 冰川冻土,2010,32(5):999-1006 [14] 杜泉滢,李智,刘书润,等. 干旱、半干旱区湖泊周围盐生植物群落的多样性格局及特点[J]. 生物多样性,2007,15(3):271-281 [15] 马松梅,张明理,张宏祥,等. 利用最大熵模型和规则集遗传算法模型预测孑遗植物裸果木的潜在地理分布及格局[J]. 植物生态学报,2010,34(11):1327-1335 [16] 柴永青,曹致中,刘秉儒. 河西走廊肃北地区中亚紫菀木-裸果木荒漠群落特征[J]. 林业科学,2011,47(4):166-171 [17] 丁杰,张和钰,李志鹏,等. 天山南麓中段戈壁区裸果木种群空间异质性特征[J]. 草地学报,2021,29(9):2067-2073 [18] 王立龙,王亮,张丽芳,等. 不同生境下濒危植物裸果木种群结构及动态特征[J]. 植物生态学报,2015,39(10):980-989 [19] 徐振朋,宛涛,蔡萍,等. 裸果木种群遗传多样性特点及与地理气候因子关联研究[J]. 草地学报,2018,26(1):70-76 [20] MAGURRAN A E. Ecological diversity and its measurement[M]. New York:Princeton University Press,1988:34-37 [21] MORRIS C. Multivariate analysis of ecological data using CANOCO 5[M]. Oxford:Taylor and Francis,2015:149-167 [22] 郭旭东,傅伯杰,陈利顶,等. 河北省遵化平原土壤养分的时空变异特征-变异函数与Kriging插值分析[J]. 地理学报,2000,55(5):555-566 [23] 周德明. RDA-从理论到实践[M]. 北京:海洋出版社,2014:24 [24] 杜忠毓,贺一鸣,房朋朋,等. 孑遗濒危植物四合木群落组成、物种多样性及土壤养分含量[J]. 生态学杂志,2020,39(11):3537-3548 [25] 柴永青,曹致中,蔡卓山. 肃北地区裸果木荒漠群落构成特征及物种多样性研究[J]. 草业学报,2010,19(1):21-27 [26] 郄亚栋,蒋腊梅,吕光辉,等. 温带荒漠植物叶片功能性状对土壤水盐的响应[J]. 生态环境学报,2018,27(11):2000-2010 [27] 陶冶,吴甘霖,刘耀斌,等. 古尔班通古特沙漠典型灌木群落土壤化学计量特征及其影响因素[J]. 中国沙漠,2017,37(2):305-314 [28] 何玉惠,刘新平,谢忠奎. 红砂灌丛对土壤盐分和养分的富集作用[J]. 干旱区资源与环境,2015,29(3):115-119 [29] 弋良朋,马健,李彦. 荒漠盐生植物根际土壤盐分和养分特征[J]. 生态学报,2007,27(9):3565-3571 [30] YOSHIHARA Y,TATSUNO Y,MIYASAKA K,et al. Can complementarity in water use help explain diversity-productivity relationships in semi-arid grasslands?[J]. Journal of Arid Environments,2020,173:103994 [31] ROEM W,KLEES H,BERENDSE F. Effects of nutrient addition and acidification on plant species diversity and seed germination in heathland[J]. Journal of Applied Ecology,2002,39(6):937-948 [32] FLOWERS T. Improving crop salt tolerance[J]. Journal of Experimental Botany,2004,55(396):307-319 [33] 雍艳华,张霞,王绍明,等. 新疆典型盐生植物营养器官盐分积累与生态化学计量特征[J]. 植物生态学报,2016,40(12):1267-1275 |