[1] Zhang Y, Zhang MJ, Qu DY, et al. Water use strategies of dominant species (Caragana korshinskii and Reaumuria soongorica) in natural shrubs based on stable isotopes in the loess hill, China. Water, 2020, 12: 1923 [2] Wu YS, Liao ZL, Yu XQ, et al. Stable isotopic analysis of water utilization characteristics of four xerophytic shrubs in the Hobq Desert, Northern China. Frontiers in Plant Science, 2023, 14: 1103789 [3] Zhao LJ, Wang XG, Zhang YC, et al. Plant water use strategies in the Shapotou artificial sand-fixed vegetation of the southeastern margin of the Tengger Desert, northwestern China. Journal of Mountain Science, 2019, 16: 898-908 [4] 周海, 赵文智, 何志斌. 两种荒漠生境条件下泡泡刺水分来源及其对降水的响应. 应用生态学报, 2017, 28(7): 2083-2092 [5] 张宇, 张明军, 王圣杰, 等. 基于稳定氧同位素确定植物水分来源不同方法的比较. 生态学杂志, 2020, 39(4): 1356-1368 [6] 刘飞, 刘攀, 曹铭, 等. 稳定同位素技术在植物水分关系研究中的应用综述. 生态科学, 2020, 39(6): 224-232 [7] 曾祥明, 徐宪立, 钟飞霞, 等. MixSIAR和 IsoSource模型解析植物水分来源的比较研究. 生态学报, 2020, 40(16): 5611-5619 [8] Antunes C, Pereira AJ, Fernandes P, et al. Understan-ding plant drought resistance in a Mediterranean coastal sand dune ecosystem: Differences between native and exotic invasive species. Journal of Plant Ecology, 2018, 11: 26-38 [9] Zhang JH, Wang NA, Niu ZM, et al. Stable isotope analysis of water sources for Tamarix laxa in the mega-dunes of the Badain Jaran Desert, China. Journal of Arid Land, 2018, 10: 821-832 [10] Cui YQ, Ma JY, Sun W, et al. A preliminary study of water use strategy of desert plants in Dunhuang, China. Journal of Arid Land, 2015, 7: 73-81 [11] Dai Y, Zheng XJ, Tang LS, et al. Stable oxygen isotopes reveal distinct water use patterns of two Haloxylon species in the Gurbantonggut Desert. Plant and Soil, 2015, 389: 73-87 [12] 刘保清, 刘志民, 钱建强, 等. 科尔沁沙地南缘主要固沙植物旱季水分来源. 应用生态学报, 2017, 28(7): 2093-2101 [13] Chen J, Xu Q, Gao DQ, et al. Differential water use strategies among selected rare and endangered species in West Ordos Desert of China. Journal of Plant Ecology, 2017, 10: 660-669 [14] 刘果厚. 阿拉善荒漠特有植物沙冬青濒危原因的研究. 植物研究, 1998, 18(3): 341-345 [15] 段义忠, 杜忠毓, 亢福仁. 西北干旱区孑遗濒危植物蒙古沙冬青群落特征及与环境因子的关系. 植物研究, 2018, 38(6): 834-842 [16] 刘美, 吴世新, 潘伯荣, 等. 中国沙冬青属植物的地理分布及生境特征. 干旱区地理, 2017, 40(2): 380-387 [17] Zhu YJ, Wang GJ, Xin ZM. Water use strategy of Ammopiptanthus mongolicus community in a drought year on the Mongolian Plateau. Journal of Plant Ecology, 2020, 13: 793-800 [18] 李新乐, 鲍芳, 吴波, 等. 荒漠植物白刺新固定碳在植物-土壤系统中的分配. 草业学报, 2019, 28(2): 33-40 [19] 高君亮, 罗凤敏, 马迎宾, 等. 电阻率成像法监测人工梭梭林土壤水分. 农业工程学报, 2018, 34(22): 92-101 [20] 李星, 马媛, 李星, 等. 乌兰布和沙漠植物群落相异性及其影响因素. 中国沙漠, 2022, 42(5): 187-194 [21] 齐凯, 辛智鸣, 张景波, 等. 乌兰布和沙漠沙冬青群落的根系分布特征. 草业科学, 2019, 36(7): 1706-1715 [22] Stock BC, Jackson AL, Ward EJ, et al. Analyzing mixing systems using a new generation of Bayesian tracer mixing models. PeerJ, 2018, 6: e5096 [23] Wang HJ, Tian LH, Zhang HW, et al. Water uptake by Artemisia ordosica roots at different topographic positions in an alpine desert dune on the northeastern Qinghai-Tibet Plateau. Frontiers in Earth Science, 2022, 10: 686441 [24] Zhang CC, Li XY, Wu HW, et al. Differences in water-use strategies along an aridity gradient between two coexis-ting desert shrubs (Reaumuria soongorica and Nitraria sphaerocarpa): Isotopic approaches with physiological evidence. Plant and Soil, 2017, 419: 169-187 [25] 彭丽萍, 戴岳, 师庆东. 新疆准东荒漠区5种典型植物水分来源. 干旱区研究, 2018, 35(5): 1146-1152 [26] Dong ZW, Li SY, Zhao Y, et al. Stable oxygen-hydrogen isotopes reveal water use strategies of Tamarix taklamakanensis in the Taklimakan Desert, China. Journal of Arid Land, 2020, 12: 115-129 [27] 李宁, 周海, 任珩, 等. 不同地下水位处梭梭(Haloxylon ammodendron)水分来源特征. 中国沙漠, 2021, 41(4): 79-86 |