Literature Abstracts

Home > Literature Abstracts >
     Select All
(Kindly login to see/print the abstract)
   The abundance and diversity of legume-nodulating rhizobia and arbuscular mycorrhizal fungal communities in soil samples from ...
European Journal of Soil Biology, 52: 30-40p. , 2012
Godar Sene, Ramatoulaye Samba-Mbaye, Mansour Thiao, Damase Khasa, Aboubacry Kane, Anicet Manga , Mame Samba Mbaye, Samba Ndao Sylla
 
   The abundance of arbuscular mycorrhizal fungal species in symbiosis with okra plants is affected by induced drought condition...
Rhizosphere. 10(100150)., 2019
Müller A.*, Eltigani A. and George E.
 
   The activity of mycorrhizal symbiosis in suppressing Verticillium wilt in susceptible and tolerant strawberry (Fragaria x ana...
Applied Soil Ecology. 101: 152-164p., 2016
Sowik I., Borkowska B., Markiewicz M.
 
   The activity of mycorrhizal symbiosis in suppressing Verticillium wilt in susceptible and tolerant strawberry (Fragaria x ana...
Applied Soil Ecology 101: 152–164, 2016
Iwona, Sowik; Bożenna, Borkowska; Monika, Markiewicz
 
   The addition of compost and arbuscular mycorrhiza to the growth of Artemisia annua in middle altitude plain....
IOP Conference Series: Earth and Environmental Science. 250(012019)., 2019
Purwadi Y. P.*, Tjandra V., Harjoko D. and Yunus A.
 
   The age of island-like habitats impacts habitat specialist species richness...
Ecology, 93 (5): 1106-1114p. , 2012
Horsák M, Hájek M, Spitale D, Hájková P, Díte D, Nekola JC.
 
   The agronomic relevance of arbuscular mycorrhizas in the fertility of Australian extensive cropping systems...
Agriculture, Ecosystems & Environment, 163(December): 37-53p., 2012
Ryan, M.H., Kirkegaard, J.A.
 
   The altitudinal climatic effect on the stable isotope compositions of Agave and Opuntia in arid environments – A case study a...
Journal of Arid Environments, 92:102–112p., 2013
G. Skrzypek, D. Paul, B. Wojtuń
 
   The application of an organic amendment modifies the arbuscular mycorrhizal fungal communities colonizing native seedlings gr...
Soil Biology and Biochemistry 43(7): 1498–1508p., 2011
Alguacil M M, Torrecillas E, Caravaca F, Fernández D A, Azcón R, Roldán A
 
   The Application of K Phosphites to Seed Tubers Enhanced Emergence, Early Growth and Mycorrhizal Colonization in Potato (Solan...
American Journal of Plant Sciences, 5(1): 132-137p., 2014
Cecilia Tambascio, Fernanda Covacevich, María Candela Lobato, Carolina de Lasa, Daniel Caldiz, Guillermo Dosio*, Adriana Andreu
 
   The Arbuscular Mycorrhizal Fungal Community Response to Warming and Grazing Differs between Soil and Roots on the Qinghai-Tib...
PLoS ONE 8(9): e76447, 2013
Yang W., Zheng Y., Gao C., He X., Ding Q., Kim Y., Rui Y., Wang S., *Guo L.-D.
 
   The arbuscular mycorrhizal fungal protein glomalin is a putative homolog of heat shock protein 60...
FEMS microbiology letters. 263(1): 93-101p., 2006
Gadkar V., Rillig M.C.
 
   The arbuscular mycorrhizal fungal protein glomalin: Limitations, progress, and a new hypothesis for its function...
PEDOBIOLOGIA. 51(2):123-130p., 2007
Purin, S; Rillig, MC
 
   The arbuscular mycorrhizal fungi colonising roots and root nodules of New Zealand kauri Agathis australis...
Fungal Biology. 120(5):807-817p., 2016
Padamsee M., Johansen R. B., Stuckey S. A., Williams S. E., Hooker J. E., Burns B. R., Bellgard S. E.
 
   The arbuscular mycorrhizal fungus Diversispora spurca ameliorates effects of waterlogging on growth, root system architecture...
Fungal Ecology 6(1): 37-43p., 2013
Qiang-Sheng Wu, Ying-Ning Zou, Yong-Ming Huang
 
   The arbuscular mycorrhizal fungus Glomus hoi can capture and transfer nitrogen from organic patches to its associated host pl...
Applied Soil Ecology 48(1): 102–105p., 2011
Barrett G, Campbell C D, Fitter A H, Hodge A.
 
   The arbuscular mycorrhizal fungus Glomus mosseae alleviates autotoxic effects in maize (Zea mays L.)...
European Journal of Soil Biology 58: 59-65p., 2013
Džafić E., Pongrac P., Likar M., Regvar M., *Vogel-Mikuš K.
 
   The arbuscular mycorrhizal fungus Glomus mosseae can enhance arsenic tolerance in Medicago truncatula by increasing plant pho...
Environmental Pollution, 156(1): 215-220, 2008
Xu, PL; Christie, P; Liu, Y; Zhang, JL; Li XL
 
   The arbuscular mycorrhizal fungus Glomus mosseae induces growth and metal accumulation changes in Cannabis sativa L....
Chemosphere. 59(1): 21-29p., 2005
Citterio,S., Prato,N., Fumagalli,P., Aina,R., Massa,N., Santagostino,A., Sgorbati,S., Berta,G
 
   The arbuscular mycorrhizal fungus Rhizophagus irregualris MUCL41833 increases the phosphorus uptake and biomass of Medicago t...
Mycorrhiza. 28(8): 761-771., 2018
Calonne-Salmon M., Plouznikoff K. and Declerck S.
 
   The arbuscular mycorrhizal fungus Rhizophagus irregularis MUCL 43194 induces the gene expression of citrate synthase in the t...
Mycorrhiza. 29(1): 69-75., 2019
Zhang L.*, Fan J., Feng G. and Declerck S.
 
   The arbuscular mycorrhizal fungus Rhizophagus irregularis uses a reductive iron assimilation pathway for high-affinity iron u...
Environmental Microbiology. 20(5)., 2018
Tamayo E.*, Knight S. A. B., Valderas A., Dancis A. and Ferrol N.
 
   The arbuscular mycorrhizal host status of plants can not be linked with the Striga seed-germination-activity of plant root ex...
Journal of Plant Diseases and Protection. 116(2): 86-89p., 2009
Lendzemo V., Kuyper T W., Urban A., Vegvari G., Puschenreiter M., Schickmann S., Langer I., Steinkellner S., Vierheilig H.
 
   The arbuscular mycorrhizal Paraglomus majewskii sp. nov. represents a distinct basal lineage in Glomeromycota...
Mycologia, 104 (1): 148-156p. , 2012
Błaszkowski, J., Kovács, G.M., Gáspár, B.K., Balázs, T.K., Buscot, F., Ryszka, P.
 
   The arbuscular mycorrhizal Rhizophagus irregularis activates storage lipid biosynthesis to cope with the benzo[a]pyrene oxida...
Phytochemistry. 97: 30-7p., 2014
Calonne M, Fontaine J, Debiane D, Laruelle F, Grandmougin-Ferjani A, Lounès-Hadj Sahraoui A.
 
   The arbuscular mycorrhizal status has an impact on the transcriptome profile and amino acid composition of tomato fruit...
BMC Plant Biology, 12, art. no. 44, 2012
Salvioli, A., Zouari, I., Chalot, M., Bonfante, P.
 
   The arbuscular mycorrhizal symbiosis attenuates symptom severity and reduces virus concentration in tomato infected by Tomato...
Mycorrhiza 24(3): 179-186p., 2014
Giulia Maffei, Laura Miozzi, Valentina Fiorilli, Mara Novero, Luisa Lanfranco, Gian Paolo Accotto
 
   The arbuscular mycorrhizal symbiosis can overcome reductions in yield and nutritional quality in greenhouse-lettuces cultivat...
Scientia Horticulturae 164: 145-154p., 2013
Baslam, M., Garmendia, I., *Goicoechea, N.
 
   The arbuscular mycorrhizal symbiosis enhances the photosynthetic efficiency and the antioxidative response of rice plants sub...
Journal of Plant Physiology. 167: 11, 862-869. , 2010.
Ruiz-Sanchez, M. Aroca, R. Munoz, Y. Polon, R. Ruiz-Lozano, J. M.
 
   The arbuscular mycorrhizal symbiosis links N mineralization to plant demand...
Mycorrhiza. 19(4): 239-246p., 2009
AtulNayyar A., Hamel C., Hanson K., Germida J.
 
   The arbuscular mycorrhizal symbiosis promotes the systemic induction of regulatory defence-related genes in rice leaves and c...
Molecular Plant Pathology, 13 (6): 579-592p. , 2012
Campos-Soriano L, García-Martínez J, San Segundo B.
 
   The arbuscular mycorrhizal symbiosis: a molecular review of the fungal dimension....
Journal of Experimental Botany. 52(1): 469-478., 2001
Harrier L. A.
 
   The Arbuscular mycorrhizal symbiosis: Origin and evolution of a beneficial plant infection...
PLoS Pathogens, 8 (4), art. no. e1002600, 2012
Corradi, N., Bonfante, P.
 
   The arbuscular mycorrhizal symbiotic status of Populus euphratica, a drought resistant tree species from arid lands...
Ecohydrology 6(6): 1001-1008p., 2013
Yang Y., Chen Y., Cai B., Jie W , Lv D.
 
   The architecture of Norway spruce ectomycorrhizae: three-dimensional models of cortical cells, fungal biomass, and interface ...
Mycorrhiza 23(6): 431-445p., 2013
Bernhard Stögmann, Andreas Marth, Barbara Pernfuß, Reinhold Pöder
 
   The Arsenic Detoxification System in Corynebacteria: Basis and Application for Bioremediation and Redox Control...
Advances in Applied Microbiology 99: 103-137p, 2017
Mateos L.M., Villadangos A.F. de la Rubia A.G. Mourenza A., Marcos-Pascual L., Letek M., Pedre B., Messens J., Gil J.A.
 
   The Asian black truffle Tuber indicum can form ectomycorrhizas with North American host plants and complete its life cycle in...
Fungal Ecology 4(1): 83–93p., 2011
Bonito G; James M. Trappe; Sylvia Donovan; Rytas Vilgalys
 
   The Association With Two Different Arbuscular Mycorrhizal Fungi Differently Affects Water Stress Tolerance in Tomato....
Frontiers in Plant Science., 2018
Volpe V.*, Chitarra W., Cascone P., Volpe M. G., Bartolini P., Moneti G., Pieraccini G., Di Serio C., MAserti B., Guerrieri E. and Balestrini R.
 
   The autotrophic contribution to soil respiration in a northern temperate deciduous forest and its response to stand disturban...
Oecologia, 169 (1): 211-220p. , 2012
Levy-Varon, J.H., Schuster, W.S.F., Griffin, K.L.
 
   The auxin responsive gene Pp-C61 is up-regulated in Pinus pinaster roots following inoculation with ectomycorrhizal fungi...
Plant Cell and Environment, 26(5): 681-691p., 2003
Reddy S .M., Pandey A.K., Melayah D., Marmeisse R., Gay G*
 
   The auxin-inducible GH3 homologue Pp-GH3.16 is downregulated in Pinus pinaster root systems on ectomycorrhizal symbiosis esta...
New phytologist. 170(2):391-400p., 2006
Reddy, SM., Hitchin, S., Melayah, D., Pandey, A.K., Raffier, C., Henderson, J., Marmeisse, R., Gay, G
 
   The bacterial community of tomato rhizosphere is modified by inoculation with arbuscular mycorrhizal fungi but unaffected by ...
Soil Biology & Biochemistry. 42(3):73-483p., 2010
Lioussanne L., Perreault F., Jolicoeur M., St-Arnaud M.
 
   The bacterium Paenibacillus validus stimulates growth of the arbuscular mycorrhizal fungus Glomus intraradices up to the form...
FEMS Microbiology letters. 254(2): 258-267p., 2006
Hildebrandt U., Ouziad F., Marner F.J., Bothe H.
 
   The below-ground perspective of forest plants: Soil provides mainly organic nitrogen for plants and mycorrhizal fungi...
New Phytol. 195(2):329-34p., 2012
Inselsbacher E, Näsholm T.
 
   The benefits of mycorrhizae...
Plantsman. 5(2): 118-123, 2006
Gunn S.
 
   The biogeochemical impact of ectomycorrhizal conifers on major soil elements (Al, Fe, K and Si)...
Geoderma. 136(1/2): 364-377p., 2006
Hees P.A.W. van., Rosling A., Lundstrom U.S. Finlay R.D.
 
   The biology and ecology of the liverwort Cephaloziella varians in Antarctica....
Antarctic Science 22(2):131-143p., 2010
Newsham K K.
 
   The bioprotective effect of AM root colonization against the soil-borne fungal pathogen Gaeumannomyces graminis var. tritici ...
Soil Biology and Biochemistry 43(4): 831-834p., 2011
Vilma Castellanos-Morales; Cornelia Keiser; Rául Cárdenas-Navarro; Heinrich Grausgruber; Johannes Glauninger; José M. García-Garrido; Siegrid Steinkellner; Inmaculada Sampedro; Karin Hage-Ahmed; Antonio Illana; Juan A. Ocampoa and Horst Vierheilig;
 
   The Biosphere: Biogeochemical Cycling on Land...
Biogeochemistry (Third Edition), 173-231p., 2013
William H. Schlesinger, Emily S. Bernhardt
 
   The brighter side of soils: Quantum dots track organic nitrogen through fungi and plants...
Ecology. 90(1): 100-108p., 2009
Whiteside M. D., Treseder K. K., Atsatt P. R.
 
 
PREV1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119120 121 122 123 124 125 126 127 128 129 130 131 132 NEXT
Resources