学术堂首页 | 文献求助论文范文 | 论文题目 | 参考文献 | 开题报告 | 论文格式 | 摘要提纲 | 论文致谢 | 论文查重 | 论文答辩 | 论文发表 | 期刊杂志 | 论文写作 | 论文PPT
学术堂专业论文学习平台您当前的位置:学术堂 > 生物学论文 > 植物学论文

豆科植物、根瘤菌、丛枝菌根真菌三者的共生关系研究(4)

来源:草业学报 作者:树斌;郭理想;李菁;王
发布于:2017-06-28 共14519字
  [18]Puppo A,Pauly N,Boscari A,et al.Hydrogen peroxide and nitric oxide:key regulators of the legume-rhizobium and my-corrhizal symbioses.Antioxidants & Redox Signaling,2013,18(16):2202-2219. 
  [19]Raudaskoski M,Kothe E.Novel findings on the role of signal exchange in arbuscular and ectomycorrhizal symbioses.Mycor-rhiza,2015,25(4):243-252.  
  [20]Jia Y,Gray V M,Straker C J.The influence of Rhizobiumand arbuscular mycorrhizal fungi on nitrogen and phosphorus ac-cumulation by Vicia faba.Annals of Botany,2004,94(2):251-258.  
  [21]Mortimer P E,Pérez-Fernández M A,Valentine A J.The role of arbuscular mycorrhizal colonization in the carbon and nutri-ent economy of the tripartite symbiosis with nodulated Phaseolus vulgaris.Soil Biology and Biochemistry,2008,40(5):1019-1027.  
  [22]Kaschuk G,Kuyper T W,Leffelaar P A,et al.Are the rates of photosynthesis stimulated by the carbon sink strength of rhi-zobial and arbuscular mycorrhizal symbioses.Soil Biology and Biochemistry,2009,41(6):1233-1244.  
  [23]Wright D P,Read D J,Scholes J D.Mycorrhizal sink strength influences whole plant carbon balance of Trifolium repens L.Plant,Cell & Environment,1998,21(9):881-891.  
  [24]Gray V M.The role of the C∶N∶P stoichiometry in the carbon balance dynamics of the Legume-AMF-Rhizobiumtripartitesymbiotic association[M].Plant Growth and Health Promoting Bacteria.Berlin:Springer-Verlag Berlin Heidelberg,2010. 
  [25]Bago B,Pfeffer P E,Abubaker J,et al.Carbon export from arbuscular mycorrhizal roots involves the translocation of carbo-hydrate as well as lipid.Plant Physiology,2003,131(3):1496-1507. 
  [26]Mortimer P E,Le Roux M R,Pérez-Fernández M A,et al.The dual symbiosis between arbuscular mycorrhiza and nitrogenfixing bacteria benefits the growth and nutrition of the woody invasive legume Acacia cyclops under nutrient limiting condi-tions.Plant and Soil,2013,366(1/2):229-241.  
  [27]Paul M J,Foyer C H.Sink regulation of photosynthesis.Journal of Experimental Botany,2001,52:1383-1400.  
  [28]Black K G,Mitchell D T,Osborne B A.Effect of mycorrhizal-enhanced leaf phosphate status on carbon partitioning,translo-cation and photosynthesis in cucumber.Plant,Cell & Environment,2000,23(8):797-809.  
  [29]Xavier L J C,Germida J J.Selective interactions between arbuscular mycorrhizal fungi and Rhizobium leguminosarum bv.viceae enhance pea yield and nutrition.Biology and Fertility of Soils,2003,37(5):261-267.  
  [30]Harris D,Pacovsky R S,Paul E A.Carbon economy of Soybean-Rhizobium-Glomus associations.New Phytologist,1985,101(3):427-440.  
  [31]Hodge A,Campbell C D,Fitter A H.An arbuscular mycorrhizal fungus accelerates decomposition and acquires nitrogen di-rectly from organic material.Nature,2001,413:297-299.  
  [32]Goicoechea N,Antolin M C,Strnad M,et al.Root cytokinins,acid phosphatase and nodule activity in drought-stressed my-corrhizal or nitrogen-fixing alfalfa plants.Journal of Experimental Botany,1996,47(5):683-686.  
  [33]Rausch C,Daram P,Brunner S,et al.A phosphate transporter expressed in arbuscule-containing cells in potato.Nature,2001,414:462-470. 
  [34]Sanginga N,Lyasse O,Singh B B.Phosphorus use efficiency and nitrogen balance of cowpea breeding lines in a low P soil ofthe derived savanna zone in West Africa.Plant and Soil,2000,220(1/2):119-128. 
  [35]Hayman D S.Mycorrhizae of nitrogen-fixing legumes.Journal of Applied Microbiology and Biotechnology,1986,2(1):121-145. 
  [36]Wang S,Feng Z,Wang X,et al.Arbuscular mycorrhizal fungi alter the response of growth and nutrient uptake of snap bean(Phaseolus vulgaris L.)to O3.Journal of Environmental Sciences,2011,23(6):968-974.  
  [37]Govindarajulu M,Pfeffer P E,Jin H,et al.Nitrogen transfer in the arbuscular mycorrhizal symbiosis.Nature,2005,435:819-823.  
  [38]Johnson N C.Resource stoichiometry elucidates the structure and function of arbuscular mycorrhizas across scales.New Phy-tologist,2010,185(3):631-647.  
  [39]Chalk P M,Souza R F,Urquiaga S,et al.The role of arbuscular mycorrhiza in legume symbiotic performance.Soil Biologyand Biochemistry,2006,38(9):2944-2951. 
  [40]Thompson J P.Decline of vesicular-arbuscular mycorrhizae in long fallow disorder of field crops and its expression in phos-phorus deficiency of sunflower.Crop and Pasture Science,1987,38(5):847-867.  
  [41]Antunes P M,Rajcan I,Goss M J.Specific flavonoids as interconnecting signals in the tripartite symbiosis formed by arbus-cular mycorrhizal fungi,Bradyrhizobium japonicum(Kirchner)Jordan and soybean(Glycine max(L.)Merr.).Soil Biolo-gy and Biochemistry,2006,38(3):533-543.  
  [42]Clark R B,Zeto S K.Mineral acquisition by arbuscular mycorrhizal plants.Journal of Plant Nutrition,2000,23(7):867-902. 
  [43]Wipf D,Mongelard G,van Tuinen D,et al.Transcriptional responses of Medicago truncatula upon sulfur deficiency stressand arbuscular mycorrhizal symbiosis.Frontiers in Plant Science,2014,5:1-17.  
  [44]Ahmad M H.Compatibility and co-selection of vesicular-arbuscular mycorrhizal fungi and rhizobia for tropical legumes.Criti-cal Reviews in Biotechnology,1995,15(3/4):229-239.  
  [45]Tavasolee A,Aliasgharzad N,SalehiJouzani G,et al.Interactive effects of arbuscular mycorrhizal fungi and rhizobial strainson chickpea growth and nutrient content in plant.African Journal of Biotechnology,2011,10(39):7585-7591.  
  [46]AugéR M.Water relations,drought and vesicular-arbuscular mycorrhizal symbiosis.Mycorrhiza,2001,11(1):3-42. 
  [47]Aliasgharzad N,Neyshabouri M R,Salimi G.Effects of arbuscular mycorrhizal fungi and Bradyrhizobium japonicum ondrought stress of soybean.Biologia,2006,61(19):324-328.  
  [48]Kong J,Pei Z,Du M,et al.Effects of arbuscular mycorrhizal fungi on the drought resistance of the mining area repair plantSainfoin.International Journal of Mining Science and Technology,2014,24(4):485-489.  
  [49]Soliman A S H,Shanan N T,Massoud O N,et al.Improving salinity tolerance of Acacia saligna(Labill.)plant by arbus-cular mycorrhizal fungi and Rhizobiuminoculation.African Journal of Biotechnology,2012,11(5):1259-1266.  
  [50]AugéR M,Toler H D,Saxton A M.Arbuscular mycorrhizal symbiosis alters stomatal conductance of host plants more un-der drought than under amply watered conditions:a meta-analysis.Mycorrhiza,2015,25(1):13-24.  
  [51]Porcel R,Ruiz-Lozano J M.Arbuscular mycorrhizal influence on leaf water potential,solute accumulation,and oxidativestress in soybean plants subjected to drought stress.Journal of Experimental Botany,2004,55:1743-1750.  
  [52]Martín-Rodríguez J?,León-Morcillo R,Vierheilig H,et al.Ethylene-dependent/ethylene-independent ABA regulation oftomato plants colonized by arbuscular mycorrhiza fungi.New Phytologist,2011,190(1):193-205.  
  [53]Aroca R,Vernieri P,Ruiz-Lozano J M.Mycorrhizal and non-mycorrhizal Lactuca sativa plants exhibit contrasting responsesto exogenous ABA during drought stress and recovery.Journal of Experimental Botany,2008,59(8):2029-2041.  
  [54]Wu Q S,Xia R X.Arbuscular mycorrhizal fungi influence growth,osmotic adjustment and photosynthesis of citrus underwell-watered and water stress conditions.Journal of Plant Physiology,2006,163(4):417-425.  
  [55]Al-Karaki G N,Hammad R.Mycorrhizal influence on fruit yield and mineral content of tomato grown under salt stress.Jour-nal of Plant Nutrition,2001,24(8):1311-1323.  
  [56]Garg N,Pandey R.Effectiveness of native and exotic arbuscular mycorrhizal fungi on nutrient uptake and ion homeostasis insalt-stressed Cajanus cajan L.(Millsp.)genotypes.Mycorrhiza,2015,25(3):165-180.  
  [57]Jin L,Sun X W,Wang X J,et al.Synergistic interactions of arbuscular mycorrhizal fungi and rhizobia promoted the growthof Lathyrus sativus under sulphate salt stress.Symbiosis,2010,50(3):157-164. 
  [58]De Varennes A,Goss M J.The tripartite symbiosis between legumes,rhizobia and indigenous mycorrhizal fungi is more effi-cient in undisturbed soil.Soil Biology and Biochemistry,2007,39(10):2603-2607.  
  [59]Kaschuk G,Leffelaar P A,Giller K E,et al.Responses of legumes to rhizobia and arbuscular mycorrhizal fungi:a meta-a-nalysis of potential photosynthate limitation of symbioses.Soil Biology and Biochemistry,2010,42(1):125-127.  
  [60]Al-Karaki G N.Growth of mycorrhizal tomato and mineral acquisition under salt stress.Mycorrhiza,2000,10(2):51-54.  
  [61]Labidi S,Jeddi F B,Tisserant B,et al.Field application of mycorrhizal bio-inoculants affects the mineral uptake of a foragelegume(Hedysarum coronarium L.)on a highly calcareous soil.Mycorrhiza,2015,25(4):297-309.  
  [62]Ruiz-Lozano J M,Azcon R,Gomez M.Alleviation of salt stress by arbuscular-mycorrhizal Glomus species in Lactuca sativaplants.Physiologia Plantarum,1996,98(4):767-772.  
  [63]Andrade S A L,Abreu C A,De Abreu M F,et al.Influence of lead additions on arbuscular mycorrhiza and Rhizobiumsym-bioses under soybean plants.Applied Soil Ecology,2004,26(2):123-131.  
  [64]Al-Garni S M S.Increased heavy metal tolerance of cowpea plants by dual inoculation of an arbuscular mycorrhizal fungi andnitrogen-fixer Rhizobium bacterium.African Journal of Biotechnology,2006,5(2):133-142.  
  [65]Joner E J,Briones R,Leyval C.Metal-binding capacity of arbuscular mycorrhizal mycelium.Plant and Soil,2000,226(2):227-234.  
  [66]Yang X M,Chen B D,Zhu Y G,et al.Effect of arbuscular mycorrhizal fungi(Glomus intraradices)on growth and mineralnutrition of maize plants in copper contaminated soils.Acta Ecologica Sinica,2008,28(3):1052-1057.杨秀梅,陈保冬,朱永官,等.丛枝菌根真菌对铜污染土壤上玉米生长的影响.生态学报,2008,28(3):1052-1057. 
  [67]Hu Y,Wu S,Sun Y,et al.Arbuscular mycorrhizal symbiosis can mitigate the negative effects of night warming on physio-logical traits of MedicagotruncatulaL.Mycorrhiza,2015,25(2):131-142.  
  [68]Martin C A,Stutz J C.Interactive effects of temperature and arbuscular mycorrhizal fungi on growth,P uptake and root res-piration of Capsicum annuum L.Mycorrhiza,2004,14(4):241-244.  
  [69]Ruotsalainen A L,Kyt?viita M M.Mycorrhiza does not alter low temperature impact on Gnaphaliumnorvegicum.Oecolo-gia,2004,140(2):226-233.  
  [70]Yang X H,Sun Z H,Zeng B.Research of mycorrhizal in citrus orchards of Sanxia Reservoir Area[C].China Association forScience and Technology in 2005Academic Essays,2005.杨晓红,孙中海,曾斌.三峡库区橘园丛枝菌根真菌无梗囊霉属调查研究[C].中国科协2005年学术年会论文集,2005.  
原文出处:何树斌,郭理想,李菁,王燚,刘泽民,程宇阳,呼天明,龙明秀. 丛枝菌根真菌与豆科植物共生体研究进展[J]. 草业学报,2017,(01):187-194.
相关标签:
  • 报警平台
  • 网络监察
  • 备案信息
  • 举报中心
  • 传播文明
  • 诚信网站