- Calonne, M., Fontaine, J., Debiane, D., Laruelle, F., Grandmougin-Ferjani, A. and Lounès-Hadj Sahraoui, A. 2010. Propiconazole toxicity on the non-target organism, the arbuscular mycorrhizal fungus, Glomus irregulare. In: O. Carisse (ed.) Fungicides. InTech, Janeza Trdine 9, 51000 Rijeka, Croatia, pp. 325-346.
- Cameron, J.C., Lehman, R.M., Sexton, P., Osborne, S.L. and Taheri, W.I. 2017. Fungicidal seed coatings exert minor effects on arbuscular mycorrhizal fungi and plant nutrient content. Agronomy Journal 109(3): 1005-1012.
- Cardoso, I.M. and Kuyper, T.W. 2006. Mycorrhizas and tropical soil fertility. Agriculture, Ecosystems & Environment 116(1-2): 72-84.
- Channabasava, A., Lakshman, H.C. and Jorquera, M.A. 2015. Effect of fungicides on association of arbuscular mycorrhiza fungus Rhizophagus fasciculatus and growth of Proso millet (Panicum miliaceum). Journal of Soil Science and Plant Nutrition 15 (1): 35-45.
- Chiocchio, V., Venedikian, N., Martinez, A.E., Ana Menendez, A.M., Ocampo, J.A. and Godeas, A. 2000. Effect of the fungicide benomyl on spore germination and hyphal length of the arbuscular mycorrhizal fungus Glomus mosseae. International Microbiology 3(3): 173-175.
- Ehteshami, S.M. 2011. Phosphorus acquisition by two wheat cultivars supplied with rock phosphate and inoculated with Glomus intraradices in an alkaline soil. Technical Journal of Engineering and Applied Sciences 1: 20-25.
- Available at http://www.fao.org/faostat/en/#data/QC. (visited 29 July 2019).
- Ghorchiani, M., Alikhani, H., Akbari, GH., Zarei, M. and Alah Dadi, I. 2011. Effect of phosphate solubilizing bacteria, arbuscular mycorrhizal fungi and phosphorus fertilizer on yield and yield components of maize under normal and deficit irrigation conditions in Karaj region. Iranian Journal of Agricultural Research 10(1): 214-224. (in Persian with English abstract)
- Giovannetti, M. and Mosse, B. 1980. An evaluation of techniques for measuring vesicular arbuscular mycorrhizal infection in roots. New Phytologist 84(3): 489-500.
- Gosling, P., Hodge, A., Goodlass, G. and Bending, G.D. 2006. Arbuscular mycorrhizal fungi and organic farming. Agriculture, Ecosystems & Environment 113(1-4):17-35.
- Hage Ahmed, K., Rosner, K. and Steinkellner, S. 2018. Arbuscular mycorrhizal fungi and their response to pesticides. Pest Management Science 75(3): 583-590.
- Jahan, M., Koocheki, A., Ghorbani, R., Rejali, F., Aryayi, M. and Ebrahimi, E. 2009. The effect of biological fertilizers application on some agroecological characteristics of corn under conventional and ecological cropping systems. Iranian Journal of Agricultural Research, 7(2): 375-390. (in Persian with English abstract)
- Jain, D., Kour, R., Bhojiya, A.A., Meena, R.H., Singh, A., Mohanty, S.R., Rajpurohit, D. and Ameta, K.D. 2020. Zinc tolerant plant growth promoting bacteria alleviates phytotoxic effects of zinc on maize through zinc immobilization. Scientific reports 10(1): 1-13.
- Jin, H., Germida, J.J. and Walley, F.L. 2013. Suppressive effects of seed-applied fungicides on arbuscular mycorrhizal fungi (AMF) differ with fungicide mode of action and AMF species. Applied Soil Ecology 72: 22-30.
- Laatikainen, T. and Heinonen-Tanski, H. 2002. Mycorrhizal growth in pure cultures in the presence of pesticides. Microbiological Research 157:127-137.
- Murillo-Williams, A. and Pedersen, P. 2008. Arbuscular mycorrhizal colonization response to three seed-applied fungicides. Agronomy journal 100(3): 795-800.
- Omara, A.E.D. and Elbagory, M. 2018. Enhancement of plant growth and yield of wheat (Triticum aestivum) under drought conditions using plant-growth-promoting bacteria. Annual Research & Review in Biology pp.1-18.
- O’neill J.J.M. and Mitchell, D.T. 2000. Effects of benomyl and captan on growth and mycorrhizal colonization of Sitka-spruce (Picea sitchensis) and ash (Fraxinus excelsior) in Irish nursery soil. Forest Pathology 30(3):165-174.
- Phillips, J.M. and Hayman, D.S. 1970. Improved procedures for clearing roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Transactions of the British Mycological Society 55(1): 158-161.
- Püschel, D., Janoušková, M., Hujslová, M., Slavíková, R., Gryndlerová, H. and Jansa, J. 2016. Plant-fungus competition for nitrogen erases mycorrhizal growth benefits of Andropogon gerardii under limited nitrogen supply. Ecology Evolution 6(13): 4332–4346.
- Rezvani, E., Hassani, F. and Zare, L. 2017. Seed-born fungi infection of hybrid maize seed (Zea mays .L) in different climates and agronomic management. Plant Protection (Scientific Journal of Agriculture) 40(1): 49-64. (in Persian with English abstract)
- Saghari, M., Barani, H., Asghari, H.R., Mesdaghi, M. and Sadroie, M. 2009. Effect of inoculation of mycorrhizal arbuscular fungus and phosphorus fertilizer on growth and production of two alfalfa cultivars. Rangeland Scientific Journal 2: 291-301. (in Persian with English abstract)
- Schalamuk, S., Velazquez, S., Simón, M.R. and Cabello, M. 2014. Effect of septoria leaf blotch and its control with commercial fungicides, on arbuscular-mycorrhizal-fungal colonization, spore numbers, and morphotype diversity. Journal of Plant Protection Research 54(1): 9-14.
- Smith, S.E., Jakobsen, I., Grønlund, M. and Smith, F.A. 2011. Roles of arbuscular mycorrhizas in plant phosphorus (P) nutrition: interactions between pathways of P uptake in arbuscular mycorrhizal (AM) roots have important implications for understanding and manipulating plant P acquisition. Plant Physiology 156: 1050-1057.
- Tosun, N. and Turkusay, H. 2004. Seed and soil treatments with a natural fungicide product against some fungal and bacterial diseases of vegetables. Nutritional Biotechnology in the Feed and Food Industries, p. 383.
- Wang, X.X., Wang, X., Sun, Y., Cheng, Y., Liu, S., Chen, X., Feng, G. and Kuyper T.W. 2018. Arbuscular mycorrhizal fungi negatively affect nitrogen acquisition and grain yield of maize in a N deficient soil. Frontiers in Microbiology 9: 1-10.
27. Wilson, G. and Williamson, M. 2008. Topsin-M: the new benomyl for mycorrhizal-suppression experiments. Mycologia 100(4): 548-554.
|