[1] MARTIN F M,HARRISON M J,LENNON S,et al. Cross-scale integration of mycorrhizal function[J]. New Phytologist,2018,220(4):941-946 [2] STURMER S L,BEVER J D,MORTON J B. Biogeography of arbuscular mycorrhizal fungi (Glomeromycota):a phylogenetic perspective on species distribution patterns[J]. Mycorrhiza,2018,28(7):587-603 [3] STURMER S L,KEMMELMEIER K. The glomeromycota in the neotropics[J]. Frontiers in Microbiology,2021(11):553679 [4] LEAKE J R,JOHNSON D,DONNELLY D P,et al. Networks of power and influence:the role of mycorrhizal mycelium in controlling plant communities and agroecosystem functioning[J]. Canadian Journal of Botany,2004,82(8):1016-1045 [5] XIE K,REN Y H,CHEN A Q,et al. Plant nitrogen nutrition:The roles of arbuscular mycorrhizal fungi[J]. Journal Plant Physiology,2022,269:153591 [6] 宋凤鸣,刘建华,刘登彪,等. 3种丛枝菌根真菌对任豆生长和抗旱性的影响研究[J]. 西南林业大学学报(自然科学),2018,38(6):97-105 [7] 孟根花. 丛枝菌根接种对两种耐盐碱牧草的综合效应[D]. 呼和浩特:内蒙古农业大学,2009:4 [8] RIAZ M,KAMRAN M,FANG Y,et al. Arbuscular mycorrhizal fungi-induced mitigation of heavy metal phytotoxicity in metal contaminated soils:a critical review[J]. Journal of hazardous materials,2021,402:123919 [9] 李芳,邓杰,郭艳娥,等. 禾草内生真菌与丛枝菌根互作对多年生黑麦草生长及叶斑病的影响[J]. 植物保护学报,2019,46(2):352-361 [10] JIA Y Y,WALDER F,WAGG C,et al. Mycorrhizal fungi maintain plant community stability by mitigating the negative effects of nitrogen deposition on subordinate species in Central Asia[J]. Journal of Vegetation Science,2021,32(1):1-12 [11] 温杨雪,赵博,罗巧玉,等. 青藏高原高寒草地AM真菌分布及其对近自然恢复的生态作用[J]. 菌物学报,2021,40(10):2562-2578 [12] MEDDAD-HAMZA A,HAMZA N,NEFFAR S,et al. Spatiotemporal variation of arbuscular mycorrhizal fungal colonization in olive (Olea europaea L.) roots across a broad mesic-xeric climatic gradient in North Africa[J]. Science of the Total Environment,2017,583:176-189 [13] 王玉虎. 全面深入推进青海农业农村绿色发展[N]. 农民日报,2019-9-7(3) [14] 颜志辉,郑怀国,王爱玲,等. “十三五”时期中国农业“药肥双减”效果分析[J]. 中国农业科技导报,2022,24(11):159-170 [15] 马坤,芦光新,邓晔,等. 有机肥对垂穗披碱草根际微生物及土壤理化性质的影响[J]. 草地学报,2022,30(3):594-602 [16] 朱晨. 不同施肥制度对主要农作物土壤中AMF群落结构的影响[D]. 南京:南京农业大学,2016:6 [17] HAN Y F,FENG J G,HAN M G,et al. Responses of arbuscular mycorrhizal fungi to nitrogen addition:a meta-analysis[J]. Global Change Biology,2020,26(12):7229-7241 [18] MA X,GENG Q,ZHANG H,et al. Global negative effects of nutrient enrichment on arbuscular mycorrhizal fungi,plant diversity and ecosystem multifunctionality[J]. New Phytologist,2021,229(5):2957-2969 [19] MA K,WANG Y,JIN X,et al. Application of organic fertilizer changes the rhizosphere microbial communities of a gramineous grass on Qinghai-Tibet Plateau[J]. Microorganisms,2022,10(6):1148 [20] NGUYEN N H,SONG Z,BATES S T,et al. FUNGuild:An open annotation tool for parsing fungal community datasets by ecological guild[J]. Fungal Ecology,2016,20:241-248 [21] WANG J,WANG J,HE J Z,et al. Arbuscular mycorrhiza fungi increase soil denitrifier abundance relating to vegetation community[J]. Applied Soil Ecology,2022,171:104325 [22] 高伟勤,王鹏. 长期施肥对丛枝菌根真菌的影响研究进展[J]. 浙江柑橘,2021,38(3):2-6 [23] 张琳. 三种土壤长期不同施肥措施对丛枝菌根真菌的影响[D]. 南京:南京农业大学,2017:33 [24] VAN DER HEIJDEN M G A,KLIRONOMOS J N,URSIC M,et al. Mycorrhizal fungal diversity determines plant biodiversity,ecosystem variability and productivity[J]. Nature,1998,396(6706),69-72 [25] 江尚焘,栗晗,彭海英,等. 有机肥替代部分化肥对芒果丛枝菌根真菌群落的影响[J]. 应用生态学报,2023,34(2):481-490 [26] GRYNDLER M,LARSEN J,HRSELOVA H,et al. Organic and mineral fertilization,respectively,increase and decrease the development of external mycelium of arbuscular mycorrhizal fungi in a long-term field experiment[J]. Mycorrhiza,2006,16:159-166 [27] 刘玮. 施肥对华北平原典型大田玉米菌根真菌群落特征及影响因子分析[D]. 北京:中国农业大学,2014:14 [28] WU F,DONG M,LIU Y,et al. Effects of long-termfertilization on AM fungal community structure and Glomalin-related soil protein in the Loess Plateau of China[J]. Plant and Soil,2011,342:233-247 [29] TANG Y,LUO L,CARSWELL A,et al. Changes in soil organic carbon status and microbial community structure following biogas slurry application in a wheat-rice rotation[J]. Science of The Total Environment,2021,757:143786 [30] 刘文娟,马琨,王兵兵,等. 冬小麦免耕覆盖与有机肥施用对土壤丛枝菌根真菌群落多样性的影响[J]. 生态学杂志,2022,41(6):1101-1108 [31] VAN DER HEIJDEN M G A,BARDGETT R D,VAN STRAALEN N M.The unseen majority:soil microbes as drivers of plant diversity and productivity in terrestrial ecosystems[J]. Ecology Letters,2008,11(6):296-310 [32] XU X H,CHEN C,ZHANG Z,et al. The influence of environmental factors on communities of arbuscular mycorrhizal fungi associated with Chenopodium ambrosioides revealed by MiSeq sequencing investigation[J]. Scientific Reports,2017,7(1):45134 [33] 曹敏,胡开治,刘燕琴,等. 高通量测序分析重庆地区茅苍术根际丛枝菌根真菌多样性[J]. 微生物学通报,2020,47(9):2877-2886 [34] 杨文莹. 我国东北黑土区丛枝菌根真菌多样性及其对土壤有机碳的响应[D]. 吉林:中国科学院大学(中国科学院东北地理与农业生态研究所),2022:61 [35] 周静怡,赵璐峰,唐建军,等. 稻鱼共生系统农田边界的植物和丛枝菌根真菌调查——以首批全球重要农业文化遗产稻鱼共生系统核心保护地浙江青田龙现为例[J]. 中国生态农业学报(中英文),2022,30(6):889-899 [36] 张亮,王晓娟,王强,等. 青藏高原高寒生境中丛枝菌根真菌研究进展[J]. 菌物研究,2017,15(1):58-69 |