[1] 再努尔·吐尔逊. 盐胁迫下接种AMF对胡杨幼苗生长的影响[D]. 乌鲁木齐:新疆师范大学,2021:1-20 [2] 刘星宏,张青青,张广鹏,等. 塔里木河下游植物群落空间分布及影响因素分析[J]. 中国农业科技导报,2021,23(10):131-144 [3] AILI Y,CHEN X N,GAO W L,et al. Response of Alhagi sparsifolia Seedlings to AMF Inoculation and Nitrogen Addition under Drought Stress[J]. Atmosphere,2023,14(3):446 [4] 瞿宋林,吴一凡,刘忠宽,等. 丛枝菌根真菌对紫花苜蓿生长发育特性的影响[J]. 草地学报,2022,30(10):2529-2534 [5] PUSCHEL D,BITTERLICH M,RYDLOVA J,et al. Facilitation of plant water uptake by an arbuscular mycorrhizal fungus:a Gordian knot of roots and hyphae[J]. Mycorrhiza,2020,30(2-3):299-313 [6] 郑亚茹,唐明. 丛枝菌根真菌对盐胁迫下桑树生长及光合特性的影响[J]. 蚕业科学,2020,46(6):669-677 [7] LI Z,WU N,MENG S,et al. Arbuscular mycorrhizal fungi (AMF) enhance the tolerance of Euonymus maackii Rupr. at a moderate level of salinity[J]. PloS one,2020,15(4):e0231497 [8] 曹磊,李逸雯,凌康杰,等. 盐渍化胁迫下接种不同丛枝菌根真菌对番茄耐盐性的影响[J]. 福建农业学报,2022,37(2):188-196 [9] METWALLY R A,ABDELHAMEED R E. Synergistic Effect of Arbuscular Mycorrhizal Fungi on Growth and Physiology of Salt- Stressed Trigonella foenum-graecum Plants[J]. Biocatalysis and Agricultural Biotechnology,2018(16):538-544 [10] GIOVANNETTI M,AVIO L,FORTUNA P,et al. At the root of the wood wide web:self recognition and non-self incompatibility in mycorrhizal networks[J]. Plant signaling & behavior,2006,1(1):1-5 [11] FANG L F,HE X H,ZHANG X L,et al. A Small Amount of Nitrogen Transfer from White Clover to Citrus Seedling via Common Arbuscular Mycorrhizal Networks[J]. Agronomy,2020,11(1):32-32 [12] 耿依仪,于露,张万通,等. 丛枝菌根真菌对垂穗披碱草的生长发育和防御性酶活的影响[J]. 草地学报,2022,30(12):3225-3232 [13] SCHUTZ L,SAHARAN K,MADER P,et al. Rate of hyphal spread of arbuscular mycorrhizal fungi from pigeon pea to finger millet and their contribution to plant growth and nutrient uptake in experimental microcosms[J]. Applied Soil Ecology,2022(169):104156 [14] CHEN X N,AILI Y,MA X D,et al. Mycorrhizal fungal colonization promotes apparent growth and physiology of Alhagi sparsifolia seedlings under salt or drought stress at vulnerable developmental stage[J]. Plant Growth Regulation,2023:1-12 [15] 田方,陈锡,钟理,等. 丛枝菌根真菌对白刺花苗期抗旱酶系及生理特性的影响[J]. 西北农业学报,2022,31(12):1625-1634 [16] 再努尔·吐尔逊,高文礼,陈晓楠,等. 菌根对盐胁迫下胡杨幼苗生长和叶绿素荧光特性的影响[J]. 西北农林科技大学学报(自然科学版),2022,50(4):58-65 [17] 杨玉海,陈亚宁,李卫红. 荒漠河岸林植物丛枝菌根真菌侵染及环境影响因子——以塔里木河下游为例[J]. 自然科学进展,2008(4):397-405 [18] 郭平林,刘波,张志浩,等. 疏叶骆驼刺与花花柴互作对氮素固定和根际微生物的影响[J]. 生态学报,2020,40(18):6632-6643 [19] 龚远博,胡吉怀,胡丁猛,等. 丛枝菌根真菌对盐碱胁迫下杜梨幼苗生长和生理特性的影响[J]. 西北植物学报,2022,42(8):1320-1329 [20] CHRISTIAN S,MARIO S,JORGE O,et al. Arbuscular Mycorrhizal Colonization Promotes the Tolerance to Salt Stress in Lettuce Plants through an Efficient Modification of Ionic Balance[J]. Journal of Soil Science and Plant Nutrition,2019,19(2):321-331 [21] YE L,ZHAO X,BAO E C,et al. Effects of Arbuscular Mycorrhizal Fungi on Watermelon Growth,Elemental Uptake,Antioxidant,and Photosystem II Activities and Stress-Response Gene Expressions Under Salinity-Alkalinity Stresses[J]. Frontiers in Plant Science,2019(10):863 [22] KLINSUKON C,LUMYONG S,KUYPER T W,et al. Colonization by arbuscular mycorrhizal fungi improves salinity tolerance of eucalyptus (Eucalyptus camaldulensis) seedlings[J]. Scientific Reports,2021,11(1):4362-4362 [23] 南思睿,罗永忠,于思敏,等. 干旱胁迫后复水对新疆大叶苜蓿幼苗光合和叶绿素荧光的影响[J]. 草地学报,2022,30(5):1141-1149 [24] 候文慧,张玉霞,王红静,等. 施氮水平对羊草叶片光合特性和叶绿素荧光特性的影响[J]. 草地学报,2021,29(3):531-536 [25] 王一鸣,唐剑,龙胜举,等. NaCl胁迫对接种AMF费菜生长和叶绿素含量及荧光参数的影响[J]. 干旱地区农业研究,2017,35(6):134-139,153 [26] 王建秋,曹子林,王晓丽,等. 铅胁迫对滇白前生长、光合作用及叶绿素荧光的影响[J]. 草地学报,2021,29(11):2422-2427 [27] 陈晓楠,伊力努尔·艾力,高文礼,等. 盐胁迫下丛枝菌根真菌对疏叶骆驼刺幼苗生长和生理的影响[J]. 草业科学,2022,39(9):1763-1772 [28] 崔令军,刘瑜霞,林健,等. 丛枝菌根真菌对盐胁迫下桢楠光合生理的影响[J]. 南京林业大学学报(自然科学版),2021,45(1):101-106 [29] 赵华,任晴雯,王熙予,等. 丛枝菌根真菌对盐胁迫下番茄抗氧化酶活性和光合特性的影响[J]. 浙江农业学报,2021,33(11):2075-2084 [30] 任智新,史建楠,何佳星,等. 盐胁迫对青绿苔草生长及生理特性的影响[J]. 草地学报,2022,30(8):2045-2052 [31] WANG J P,YUAN J H,REN Q,et al. Arbuscular mycorrhizal fungi enhanced salt tolerance of Gleditsia sinensis by modulating antioxidant activity,ion balance and P/N ratio[J]. Plant Growth Regulation,2022,97(1):33-49 [32] 余淑艳,周燕飞,黄薇,等. 干旱、盐及旱盐复合胁迫对沙芦草光合和生理特性的影响[J]. 草地学报,2021,29(11):2399-2406 [33] 朱天奇,鲁泽宇,胡桑源,等. 盐胁迫对两个高羊茅品种幼苗生长及生理特性的影响[J]. 草地学报,2022,30(8):2082-2088 [34] 桑钰,高文礼,再努尔·吐尔逊,等. 干旱胁迫下AMF对多枝柽柳幼苗和疏叶骆驼刺根系生长和氮素吸收分配的影响[J]. 干旱区研究,2021,38(1):247-256 [35] 高文礼,陈晓楠,伊力努尔·艾力,等. 不同水分处理下双接种丛枝菌根真菌和根瘤菌对疏叶骆驼刺生长及氮素转移的影响[J]. 生态学报,2022,42(16):6816-6826 |