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130 related items for PubMed ID: 24498986
21. Impact of soil salinity on arbuscular mycorrhizal fungi biodiversity and microflora biomass associated with Tamarix articulata Vahll rhizosphere in arid and semi-arid Algerian areas. Bencherif K, Boutekrabt A, Fontaine J, Laruelle F, Dalpè Y, Sahraoui AL. Sci Total Environ; 2015 Nov 15; 533():488-94. PubMed ID: 26184906 [Abstract] [Full Text] [Related]
30. Warmer winters increase the rhizosphere carbon flow to mycorrhizal fungi more than to other microorganisms in a temperate grassland. Birgander J, Rousk J, Olsson PA. Glob Chang Biol; 2017 Dec 15; 23(12):5372-5382. PubMed ID: 28675677 [Abstract] [Full Text] [Related]
31. Arbuscular mycorrhizal fungi inoculation mediated changes in rhizosphere bacterial community structure while promoting revegetation in a semiarid ecosystem. Rodríguez-Caballero G, Caravaca F, Fernández-González AJ, Alguacil MM, Fernández-López M, Roldán A. Sci Total Environ; 2017 Apr 15; 584-585():838-848. PubMed ID: 28131451 [Abstract] [Full Text] [Related]
32. Plant Identity Exerts Stronger Effect than Fertilization on Soil Arbuscular Mycorrhizal Fungi in a Sown Pasture. Zheng Y, Chen L, Luo CY, Zhang ZH, Wang SP, Guo LD. Microb Ecol; 2016 Oct 15; 72(3):647-58. PubMed ID: 27423979 [Abstract] [Full Text] [Related]
33. Abundance of the arbuscular mycorrhizal fungal taxa associated with the roots and rhizosphere soil of different durum wheat cultivars in the Canadian prairies. Ellouze W, Hamel C, Singh AK, Mishra V, DePauw RM, Knox RE. Can J Microbiol; 2018 Aug 15; 64(8):527-536. PubMed ID: 29633625 [Abstract] [Full Text] [Related]
34. [Arbuscular mycorrhizal fungal effects on wheat growth in response to elevated tropospheric O3 concentration]. Hu JL, Lin XG, Wang JH, Cui XC, Wu S, Zhang J, Zhu JG. Huan Jing Ke Xue; 2009 Nov 15; 30(11):3393-8. PubMed ID: 20063760 [Abstract] [Full Text] [Related]
35. Effect of Rhizobium and arbuscular mycorrhizal fungi inoculation on electrolyte leakage in Phaseolus vulgaris roots overexpressing RbohB. Arthikala MK, Nava N, Quinto C. Plant Signal Behav; 2015 Nov 15; 10(4):e1011932. PubMed ID: 25946118 [Abstract] [Full Text] [Related]
36. Assessment of ambient ozone effects on vegetation using snap bean as a bioindicator species. Burkey KO, Miller JE, Fiscus EL. J Environ Qual; 2005 Nov 15; 34(3):1081-6. PubMed ID: 15888894 [Abstract] [Full Text] [Related]
37. Phylogenetically diverse AM fungi from Ecuador strongly improve seedling growth of native potential crop trees. Schüßler A, Krüger C, Urgiles N. Mycorrhiza; 2016 Apr 15; 26(3):199-207. PubMed ID: 26260945 [Abstract] [Full Text] [Related]
38. [Effects of fertilization on arbuscular mycorrhizal fungi in Elymus nutans roots]. Yong LJ, Shi GX, Mao L, Cheng G, Jiang SJ, Feng HY. Ying Yong Sheng Tai Xue Bao; 2011 Dec 15; 22(12):3131-7. PubMed ID: 22384578 [Abstract] [Full Text] [Related]
39. Nitrate regulates rhizobial and mycorrhizal symbiosis in common bean (Phaseolus vulgaris L.). Nanjareddy K, Blanco L, Arthikala MK, Affantrange XA, Sánchez F, Lara M. J Integr Plant Biol; 2014 Mar 15; 56(3):281-98. PubMed ID: 24387000 [Abstract] [Full Text] [Related]
40. Mycorrhizal fungal communities respond to experimental elevation of soil pH and P availability in temperate hardwood forests. Carrino-Kyker SR, Kluber LA, Petersen SM, Coyle KP, Hewins CR, DeForest JL, Smemo KA, Burke DJ. FEMS Microbiol Ecol; 2016 Mar 15; 92(3):. PubMed ID: 26850158 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]