- صباغ پور مجله علوم زراعی ایران - 1385 - دوره : 8 - شماره : 2 پیوست - صفحه:15 – 54
- Al-Karaki, G. N., Al-Ridded, A. & Clarck, R. B. 1998. Effects of arbuscular mycorrhizal fungi and drought stress on growth and nutrient uptake of two wheat genotypes differing in drought resistance. Mycorrhiza, 7: 83-88.
- Ames RN, Reid CPP, Porter LK, Cambardella C. 1983. N-15 uptake and transport by hyphae of a vesicular-arbuscular mycorrhizal fungus. Phytopathology 73: 840–841
- Bethlenfalvay G J, Reyes-Solis M G, Camel S B and Ferrera- Cerrato R 1991. Nutrient transfer between the root zones of soybean and maize plants connected by a common mycorrhizal mycelium. Physiol. Plant. 82, 423-432.
- Bremner, J.M., and Mulvaney, C.S. 1982. Nitrogen-Total, P 595-624. In: Page, A.L. et al. (eds.), and Methods of Soil Analysis. Agronomy Monograph 9, Part 2, 2nd Ed. American Society of Agronomy, Madison, WI
- Bürkert, Barbara, and Alan Robson. "65 Zn uptake in subterranean clover (Trifolium subterraneum L.) by three vesicular-arbuscular mycorrhizal fungi in a root-free sandy soil." Soil Biology and Biochemistry 26.9 (1994): 1117-1124.
- Goicoechea, N., M. C. Antolin, and M. Sánchez-Díaz. "Influence of arbuscular mycorrhizae and Rhizobium on nutrient content and water relations in drought stressed alfalfa." Plant and soil 192.2 (1997): 261-268.
- Hageman, R.H. and Reed, A.J., 1980. Nitrate mductase from higher plants. Met. Enzymol., 49: 270-280.- Azc6n, R., G6mez, M. and Tobar, R.M., 1992. Effects of nitrogen source on growth, nutrition, photosynthetic rate and nitrogen metabolism of mycorrhizal and phosphorus-fertilized plants of Lactuca satioa L. New Phytol. 121: 227-237.
- Hawkins HJ, Johansen A, George E 2000. Uptake and transport of organic and inorganic nitrogen by arbuscular mycorrhizal fungi. Plant Soil 226:275–285.
- Hodge A, Fitter AH 2010. Substantial nitrogen acquisition by arbuscular mycorrhizal fungi from organic material has implications for N cycling. Proc Natl Acad Sci USA 107:13754–13759.
- Izzo, R., Navari‐Izzo, F., & Quartacci, M. F. 1991. Growth and mineral absorption in maize seedlings as affected by increasing NaCl concentrations. Journal of Plant Nutrition, 14(7), 687-699.
- Jakobsen, I. & Nielsen, N. E. 1983. Vesicular arbuscular mycorrhiza in field grown crops. 1. Mycorrhizal infection in cereals and peas at various times and soil depths
- Johansen A. 1993. Hyphal transport by a vesicular-arbuscular mycorrhizal fungus of N applied to the soil as ammonium or nitrate. Biology and Fertility of Soils 16: 66–70.
- Ladjal, M., Huc, R., & Ducrey, M. 2005. Drought effects on hydraulic conductivity and xylem vulnerability to embolism in diverse species and provenances of Mediterranean cedars. Tree Physiology, 25: 1109 –1117.
- 16-Leigh, J., Hodge, A., & Fitter, A. H. 2009. Arbuscular mycorrhizal fungi can transfer substantial amounts of nitrogen to their host plant from organic material. New Phytologist, 181(1), 199-207.
- Li XL, Marschner H, George E. 1991. Acquisition of phosphorus and copper by VA–mycorrhizal hyphae and root-to-shoot transport in white clover. Plant and Soil 136: 49–57
- Linderman, R. G. 1994. Role of VAM fungi in biocontrol, p. 1–26. In F. L. Pfleger and R. G. Linderman (ed.), Mycorrhizae and plant health. APS Press, St. Paul, Minn
- Marulanda, A., Azcon, R. & Ruiz-Lozano, J.M. 2003. Contribution of six arbuscular mycorrhizal fungal isolates to water uptake by Lactuca sativa L. plant under drought stress. Physiology Plant, 119: 526-533.
- Marulanda, A., Parcel, R., Berea, J. M. & Azcon, R. 2007. Drought tolerance and antioxidant activities in lavender plants colonized by native drought tolerant or drought-sensitive Glomus Species. Microbial Ecology, 54, 543-
- Nelsen, C. E. 1987. The water relations of vesicular-arbuscular mycorrhizal systems, p. 71–79. In G. R. Sadr (ed.), Eco physiology of VA mycorrhizal plants. CRC Press, Boca Raton, Fla.
- QiangSheng, W. 2009. Mycorrhizal influence on nutrient uptake of citrus exposed to drought stress. Philippine Agricultural Scientist, 92(1), 33-38.
- Robson A D, O'Hara G W and Abbott L K 1981. Involvement of phosphorus in nitrogen fixation by subterranean clover (Trifolium subterraneum L). Aust. J. Plant Physiol. 8, 427436. Rygiewicz P T and Bledsoe C S 1984 Mycorrhizal effects on potassium fluxes by northwest coniferous seedlings. Plant Physiol. 76, 918-923.
- Ruiz-Lozano, J. M., & Azcón, R. 1996. Mycorrhizal colonization and drought stress as factors affecting nitrate reductase activity in lettuce plants. Agriculture, ecosystems & environment, 60(2), 175-181.
- Smith, S.E. & Read, D.J. 2008. Mycorrhizal Symbiosis. 3rd ed., Academic Press, London.
- Subramanian, K. S., C. Charest, L. M. Dawyer and R. I. Hamilton. 1997. Effects of arbuscular mycorrhizae on leaf water potential, sugar and P contents during drought and recovery of maize. Canadian Journal of Botany. 75: 1582-1591.
- 27-Subramanian, K. S., Santhanakrishnan, P., & Balasubramanian, P. 2006. Responses of field grown tomato plants to arbuscular mycorrhizal fungal colonization under varying intensities of drought stress. Scientia horticulturae, 107(3), 245-253
- Taiz, L., & Ezeiger, H. 1998. Plant Physiology (2nd ed). Sinaye Associates Inc. Publisher. Sonderland Massachusetts, 757p. [32]. Tajamolian, M., Irannejad Parizi, M., Maleki Nejad, H., Rad, M., & Sodaeizade, H.
- Vafadar, F., Amooaghaie, R., & Otroshy, M. 2014. Effects of plant-growth-promoting rhizobacteria and arbuscular mycorrhizal fungus on plant growth, stevioside, NPK, and chlorophyll content of Stevia rebaudiana. Journal of Plant Interactions, 9(1), 128-136.
- Vogt K A, Publicover D A and Vogt D J 1991. A critique of the role of ectomycorrhizas in forest ecology. Agric. Ecos. Environ. 35, 171-190.
- Wang, Y. and Oyaizu, H., 2009. Evaluation of the phytoremediation potential of four plant species for dibenzofuran-contaminated soil. Journal of hazardous materials, 168(2), pp.760-764.
- Whitmore, A. P., & Whalley, W. R. 2009. Physical effects of soil drying on roots and crop growth. Journal of Experimental Botany, 60(10), 2845-2857.
- Wu, Q. S. 2011. Mycorrhizal efficacy of trifoliate orange seedlings on alleviating temperature stress. Plant Soil Environ, 10, 459-464.
- Wu, Q. S., & Xia, R. X. 2006. Arbuscular mycorrhizal fungi influence growth, osmotic adjustment and photosynthesis of citrus under well-watered and water stress conditions. Journal of plant physiology, 163(4), 417-425.
- Wu, Q. S., & Xia, R. X. 2006. Arbuscular mycorrhizal fungi influence growth, osmotic adjustment and photosynthesis of citrus under well-watered and water stress conditions. Journal of plant physiology, 163(4), 417-425.
- Wu, Q. S., & Zou, Y. N. 2009. Mycorrhiza has a direct effect on reactive oxygen metabolism of drought-stressed citrus. Plant Soil Environ, 55(10), 436-442.
- Wu, Q. S., & Zou, Y. N. 2009. Mycorrhiza has a direct effect on reactive oxygen metabolism of drought-stressed citrus. Plant Soil Environ, 55(10), 436-442.
- Wu, Q. S., Xia, R. X., Zou, Y. N., & Wang, G. Y. 2007. Osmotic solute responses of mycorrhizal citrus (Poncirus trifoliata) seedlings to drought stress. Acta Physiologiae Plantarum, 29(6), 543-549.
- Wu, Q. S., Zou, Y. N., Xia, R. X., & Wang, M. Y. 2007. Five Glomus species affect water relations of Citrus tangerine during drought stress. Bot Stud, 48(2), 147-154.
|