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11 期           石磊琦等: 水分和土壤微生物对干热河谷山合欢和银合欢生长性状的影响                                          2 1 3 9

               with plant growth in karst rocky Guizhou [J]. Guizhou Sciꎬ  (20): 6584-6591. [沈仁芳ꎬ 赵学强ꎬ 2015. 土壤微生物
               27(2): 50-54. [雷丽ꎬ 程星ꎬ 蔡雄飞ꎬ 2009. 贵州岩溶山           在植物 获 得 养 分 中 的 作 用 [ J]. 生 态 学 报ꎬ 35(20):
               区土壤含水量时空分布与植物生长关系研究 [J]. 贵州                       6584-6591.]
               科学ꎬ 27(2): 50-54.]                              SHI GYꎬ 2021. Physiological mechanism and proteomics of
            LI Lꎬ XU ZFꎬ WEI Xꎬ et al.ꎬ 2008. Physiological compare  soybean root response to low phosphorus stress [ D ].
               Merremia boisiana with Pueraria lobata under drought stress  Guiyang: Guizhou University: 9-33. [石贵阳ꎬ 2021. 大豆
               and rewatering conditions [ J]. Guihaiaꎬ 28 ( 6): 806 -  根系响应低磷胁迫的生理机制及蛋白组学初探 [D]. 贵
               810. [李玲ꎬ 徐志防ꎬ 韦霄ꎬ 等ꎬ 2008. 金钟藤和葛藤在干              阳: 贵州大学: 9-33.]
               旱与复水条件下的生理比较 [J]. 广西植物ꎬ 28(6):                  SUN PYꎬ LIU XLꎬ LIU JLꎬ et al.ꎬ 2010. Research progress on
               806-810.]                                         air microorganism [J]. Chin Agric Sci Bullꎬ 26(11): 336-
            LI LZꎬ HAN Lꎬ 2019. Effects of soil organic matter and  340. [孙平勇ꎬ 刘雄伦ꎬ 刘金灵ꎬ 等ꎬ 2010. 空气微生物的
               moisture on greenhouse soil characteristics and plant growth  研究进展 [J]. 中国农学通报ꎬ 26(11): 336-340.]
               [J]. S China Agricꎬ 13(14): 188-189. [李连智ꎬ 韩琳ꎬ  VAN VOORDE TFJꎬ PUTTEN WHꎬ MARYIJIN BTꎬ 2012. Soil
               2019. 土壤有机质和水分对温室土壤特性及植物生长的                       inoculation method determines the strength of plant ̄soil
               影响 [J]. 南方农业ꎬ 13(14): 188-189. ]                  interactions [J]. Soil Biol Biochemꎬ 55: 1-6.
            LI Tꎬ LI LFꎬ SHA Tꎬ et al.ꎬ 2010. Molecular diversity of  WANG XMꎬ YAN BGꎬ ZHAO Gꎬ et al.ꎬ 2017. Effects of
               arbuscular mycorrhizal fungi associated with two dominant  microorganism on carbonꎬ nitrogen and phosphorus of
               xerophytes in a valley ̄type savannaꎬ southwest China  Dodonaea viscosa and the soils from different elevations in
               [J]. Appl Soil Ecolꎬ 44: 61-66.                   Yuanmouꎬ Yunnanꎬ China [J]. Chin J Plant Ecolꎬ 41(3):
            LI Tꎬ ZHAO ZWꎬ 2005. Arbuscular mycorrhizas in a hot and  311-324. [王雪梅ꎬ 闫帮国ꎬ 赵广ꎬ 等ꎬ 2017. 云南元谋不
               arid ecosystem in southwest China [J]. Appl Soil Ecolꎬ 29:  同海拔土壤微生物对车桑子碳、氮、磷化学计量特征及土
               135-141.                                          壤特性的影响 [J]. 植物生态学报ꎬ 41(3): 311-324.]
            LIANG ZPꎬ LI LQꎬ WAN FHꎬ et al.ꎬ 2016. Feedback of soil  WANG XMꎬ ZHAO Lꎬ YAN BGꎬ et al.ꎬ 2016. Morphological
               biota on Ageratina adenophora growth and competitiveness  and physiological responses of Heteropogon contortus to
               with native plant: a comparison of different sterilization  drought stress in a dry ̄hot valley [J]. Bot Studꎬ 57(1):
               methods [J]. Chin J Eco ̄Agricꎬ 24(9): 1223-1230. [梁作  1-12.
               盼ꎬ 李立青ꎬ 万方浩ꎬ 等ꎬ 2016. 土壤微生物对紫茎泽兰                WEI HGꎬ YE HYꎬ 1991. Study on the evaluation of site quality
               生长与竞争的反馈: 不同灭菌方法的比较 [J]. 中国生态                     of soil moisture content in dry season in the dry ̄hot valley of
               农业学报ꎬ 24(9): 1223-1230. ]                         Jinsha River [J]. J West China For Sci (2): 48-51. [魏汉
            LIU ALꎬ FU CMꎬ LUO ZYꎬ et al.ꎬ 2023. Comparative analysis  功ꎬ 叶厚源ꎬ 1991. 金沙江干热河谷旱季土壤含水率评价
               of physiological and biochemical characteristics of six native  立地质量的研究 [J]. 云南林业科技 (2): 48-51.]
               grass species in dry and hot river valley of Yunnan under  WU AJꎬ 2021. Mechanisms of root responses to low phosphorus
               drought stress [J]. J W China For Sciꎬ 52(6): 47-54. [刘  stress in different crop species/ genotypes with contrasting
               爱林ꎬ 伏春美ꎬ 罗中阳ꎬ 等ꎬ 2023. 干旱胁迫下云南干热                  root system [ D]. Xianyang: Research Center of Soil and
               河谷区 6 个乡土草种生理生化特性的比较分析 [J]. 西部                    Water Conservation and Ecological Environmentꎬ Chinese
               林业科学ꎬ 52(6): 47-54.]                              Academy of Sciences and Ministry of Education: 51-91. [吴
            PERNILLA BEꎬ PUTTEN WHꎬ BAKKER EJꎬ et al.ꎬ           爱姣ꎬ 2021. 不同根系类型作物/ 品种的根系对低磷胁迫
               2010.  Plant ̄soil  feedback:  experimental  approachesꎬ  的响应机制 [D]. 咸阳: 中国科学院教育部水土保持与
               statistical analyses and ecological interpretations [J]. J Ecolꎬ  生态环境研究中心: 51-91.]
               98: 1063-1073.                                  XIAO XMꎬ LIU JSꎬ ZHOU Cꎬ et al.ꎬ 2014. Difference of root
            SARDANS Jꎬ PEÑNUELAS Jꎬ 2013. Plant ̄soil interactions in  exudates  from  macadamia  seedlings  under  different
               mediterranean forest and shrublands: impacts of climatic  phosphorus supply [J]. Chin J Trop Cropꎬ 35(2): 261 -
               change [J]. Plant Soilꎬ 365: 1-33.                265. [肖晓明ꎬ 刘军生ꎬ 周程ꎬ 等ꎬ 2014. 不同磷水平下澳
            SHAW LJꎬ BEATONB Yꎬ GLOVER LAꎬ et al.ꎬ 1999. Re ̄     洲坚果幼苗根系分泌物的差异 [J]. 热带作物学报ꎬ
               inoculation of autoclaved soil as a non ̄sterile treatment for  35(2): 261-265.]
               xenobiotic sorption and biodegradation studies [J]. Appl Soil  YANG ZYꎬ SU JRꎬ LUO Dꎬ et al.ꎬ 2007. Progress and
               Ecolꎬ 11: 217-226.                                perspectives on vegetation restoration in the dry ̄hot valley
            SHEN RFꎬ ZHAO XQꎬ 2015. Role of soil microbes in the  [J]. For Resꎬ 20(4): 563-568. [杨振寅ꎬ 苏建荣ꎬ 罗栋ꎬ
               acquisition of nutrients by plants [ J]. Acta Ecol Sinꎬ 35  等ꎬ 2007. 干热河谷植被恢复研究进展与展望 [J]. 林业
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