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Effect of water stress and AM fungi on the growth performance of pea
Corresponding Author(s) : Jaya Thakur
International Journal of Applied Biology,
Vol. 4 No. 1 (2020): International Journal of Applied Biology
Abstract
- Aroca, R., Porcel,R. and Ruiz-Lozano, J.M. 2007. How does arbuscular mycorrhizal symbiosis regulate root hydraulic properties and plasma membrane aquaporins in Phaseolus vulgaris under drought, cold or salinity stresses? New Phytologist, 173: 808-816.
- Auge, R.M. and Moore, J.L. 2005. Arbuscular mycorrhizal symbiosis and plant drought resistance. In: Mehrotra VS (ed) Mycorrhiza: role and applications. Allied Publishers Limited, New Delhi, pp 13.
- Auge, R.M., Kubikova, E. and J.L. Moore 2001. Foliar dehydration tolerance of mycorrhizal cowpea, soyabean and bush bean. New Phytologist,151(2):535-541.
- Barea, J.M., M.J. Pozo, R. Azcon and C. Azcon-Aguilar 2005. Microbial cooperation in the rhizosphere. J. Exp.Bot., 56:1761-1778.
- De la Pena, E., Rodriguez, E.S., van der Putten, W.H., Freitas, H. and Moens, M. 2006. Mechanism of control of root feeding nematodes by mycorrhizal fungi in the dune grass Ammophila arenaria. New Phytologist, 169:829-840.
- Galvan, G.A.,K. Burger-Meijer, Th.W. Kuyper, C. Kik and O.E. Scholten. 2008. Possibilities fir breeding to improve responsiveness to arbuscular mycorrhizal fungi in onion. 16th IFOAM Organic World Congress.
- Gange, A.C. 2001. Species-specific responses of a root and shoot feeding insect to arbuscular mycorrhizal colonisation of its host plant. New Phytol, 150: 611-618.
- Heikham, E. Kapoor, R. and Giri, B. 2009. Arbuscular mycorrhizal fungi in alleviation of salt stress: a review. Annals of Botany, 104(7): 1263-1280.
- Hildebrandt, U., Kaldrof, M. and Bothe, H. 1999. The zinc violet and its colonisation by arbuscular mycorrhizal fungi. Journal of plant Physiology, 154: 709-717.
- Koide, R.T. and Kabir, Z. 2000. Extraradical hyphae of the mycorrhizal fungus Glomus intraradices can hydrolyse organic phosphate. New Phytol, 148:511-517.
- Koide, R.T. and Mosse, B. 2004. A history of research on arbuscular mycorrhiza. Mycorrhiza, 14: 145-163.
- Kothari, S.K., H. Marschnere and V. Romheld 1991. Effect of arbuscular mycorrhizal fungus and rhizosphere microorganisms on manganese reduction in the rhizosphere and manganese concentration in maize (Zea mays L.). New Phytol, 117:649-655.
- Michelson, A. and Rosendahl, S. 1990. The effect of VA mycorrhizal fungi, phosphorus and drought stress on the growth of Acacia nilotica and Leucaena leucocephala seedlings. Plant and soil, 124: 7-13.
- Patale, S. W. and B. P. Shinde 2012. Studies on AM fungi of Bt cotton (Gossypium hirsutum, L.). Ph.D. Thesis, University of Pune.
- Smith, F.A., Grace, E.J. and Smith, S.E. 2009. More than a carbon economy: nutrient trade and ecological sustainability in facultative arbuscular mycorrhizal symbiosis. New phytol, 182: 347-358.
- Vigo, C., Norman, J.R. and Hooker, J.E. 2000. Biocontrol of pathogen Phytophthora parasitica by arbuscular mycorrhizal fungi is a consequence of effects on infection loci. Plant Pathology,49: 509-514.
- Wu, Q.S. and R. X. Xia 2006. Arbuscular mycorrhizal fungi influence growth, osmotic adjustment and photosynthesis of citrus under well-watered and water stress conditions. J. Plant. Physiol, 163: 417-425.
- Wu, Q.S. and R.X. Xia. 2004. Effects of arbuscular mycorrhizal fungi on growth and osmotic adjustment matter content of trifoliate orange seedlings under water stress. J. Plant Physiol. Mol. Biol., 30: 583-588.
- Wu, Q.S., R.X. Xia and Y.N. Zou 2008. Improved soil structure and citrus growth after inoculation with arbuscular mycorrhizal fungi under drought stress. Europ. J. of Soil Biol., 44:122-128.
References
Aroca, R., Porcel,R. and Ruiz-Lozano, J.M. 2007. How does arbuscular mycorrhizal symbiosis regulate root hydraulic properties and plasma membrane aquaporins in Phaseolus vulgaris under drought, cold or salinity stresses? New Phytologist, 173: 808-816.
Auge, R.M. and Moore, J.L. 2005. Arbuscular mycorrhizal symbiosis and plant drought resistance. In: Mehrotra VS (ed) Mycorrhiza: role and applications. Allied Publishers Limited, New Delhi, pp 13.
Auge, R.M., Kubikova, E. and J.L. Moore 2001. Foliar dehydration tolerance of mycorrhizal cowpea, soyabean and bush bean. New Phytologist,151(2):535-541.
Barea, J.M., M.J. Pozo, R. Azcon and C. Azcon-Aguilar 2005. Microbial cooperation in the rhizosphere. J. Exp.Bot., 56:1761-1778.
De la Pena, E., Rodriguez, E.S., van der Putten, W.H., Freitas, H. and Moens, M. 2006. Mechanism of control of root feeding nematodes by mycorrhizal fungi in the dune grass Ammophila arenaria. New Phytologist, 169:829-840.
Galvan, G.A.,K. Burger-Meijer, Th.W. Kuyper, C. Kik and O.E. Scholten. 2008. Possibilities fir breeding to improve responsiveness to arbuscular mycorrhizal fungi in onion. 16th IFOAM Organic World Congress.
Gange, A.C. 2001. Species-specific responses of a root and shoot feeding insect to arbuscular mycorrhizal colonisation of its host plant. New Phytol, 150: 611-618.
Heikham, E. Kapoor, R. and Giri, B. 2009. Arbuscular mycorrhizal fungi in alleviation of salt stress: a review. Annals of Botany, 104(7): 1263-1280.
Hildebrandt, U., Kaldrof, M. and Bothe, H. 1999. The zinc violet and its colonisation by arbuscular mycorrhizal fungi. Journal of plant Physiology, 154: 709-717.
Koide, R.T. and Kabir, Z. 2000. Extraradical hyphae of the mycorrhizal fungus Glomus intraradices can hydrolyse organic phosphate. New Phytol, 148:511-517.
Koide, R.T. and Mosse, B. 2004. A history of research on arbuscular mycorrhiza. Mycorrhiza, 14: 145-163.
Kothari, S.K., H. Marschnere and V. Romheld 1991. Effect of arbuscular mycorrhizal fungus and rhizosphere microorganisms on manganese reduction in the rhizosphere and manganese concentration in maize (Zea mays L.). New Phytol, 117:649-655.
Michelson, A. and Rosendahl, S. 1990. The effect of VA mycorrhizal fungi, phosphorus and drought stress on the growth of Acacia nilotica and Leucaena leucocephala seedlings. Plant and soil, 124: 7-13.
Patale, S. W. and B. P. Shinde 2012. Studies on AM fungi of Bt cotton (Gossypium hirsutum, L.). Ph.D. Thesis, University of Pune.
Smith, F.A., Grace, E.J. and Smith, S.E. 2009. More than a carbon economy: nutrient trade and ecological sustainability in facultative arbuscular mycorrhizal symbiosis. New phytol, 182: 347-358.
Vigo, C., Norman, J.R. and Hooker, J.E. 2000. Biocontrol of pathogen Phytophthora parasitica by arbuscular mycorrhizal fungi is a consequence of effects on infection loci. Plant Pathology,49: 509-514.
Wu, Q.S. and R. X. Xia 2006. Arbuscular mycorrhizal fungi influence growth, osmotic adjustment and photosynthesis of citrus under well-watered and water stress conditions. J. Plant. Physiol, 163: 417-425.
Wu, Q.S. and R.X. Xia. 2004. Effects of arbuscular mycorrhizal fungi on growth and osmotic adjustment matter content of trifoliate orange seedlings under water stress. J. Plant Physiol. Mol. Biol., 30: 583-588.
Wu, Q.S., R.X. Xia and Y.N. Zou 2008. Improved soil structure and citrus growth after inoculation with arbuscular mycorrhizal fungi under drought stress. Europ. J. of Soil Biol., 44:122-128.