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Efficacy of fungicide alternatives against late wilt disease of maize and their influence on plant morphogenesis and yield characters

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Abdel-Kader, M.M. 1997. Field application of Trichoderma harzianum as biocide for control of bean root rot disease. Egyptian Journal of Phytopathology, 25: 19-25. Search in Google Scholar

Abdel-Kader, M.M., El-Mougy, N.S., Aly, M.D.E. and Lashin, S.M. 2012. Integration of Biological and Fungicidal Alternatives for Controlling Foliar Diseases of Vegetables Under Greenhouse Conditions. International Journal of Agricultural Forest, 2: 38-48.10.5923/j.ijaf.20120202.07 Search in Google Scholar

Ahimou, F., Jacques, P. and Deleu, M. 2000. Surfactin and iturin A effects on Bacillus subtilis surface hydrophobicity. Enzyme Microbial Technology, 27: 749-754.10.1016/S0141-0229(00)00295-7 Search in Google Scholar

Ahmed, H.A.H., Khalil, M.K. and Farrag, A.M. 2002. Nitrate accumulation, growth, yield and chemical composition of rocket (Eruca vesicaria subsp. sativa) plant as affected by NPK fertilization, kinetin and salicylic acid. Annals of Agricultural Science, Ain Shams Univ., 47 (1): 1-26. Search in Google Scholar

Anonymous 2017. Ministry of agriculture and Land Reclamation. Year Book of Department of Agricultural Economic Statistical, Egypt, p 215. Search in Google Scholar

Barnett, H.L. and Hunter, B.B. 1972. Illustrated genera of imperfect fungi. 3rd edition, Burgess Publishing Co. 273 pp. Search in Google Scholar

Begum, H., Mohammad, S., Rao, G.K. and Raj, R.B. 1989. Influence of seed dressing fungicides on the incidence of post flowering stalk rot (late wilt and charcoal rot), yield and profitability of maize. Crop Research Hisar, 2:142-146. Search in Google Scholar

Bindu, S. and Kumar, P. 2009. In vitro antifungal potency of some plant extracts against Fusarium oxysporum. International Journal of Green Pharmacy, 3:63-65.10.4103/0973-8258.49377 Search in Google Scholar

Bonjouklian, R., Smitka, T.A., Doolin, L.E., Molloy, R.M., Debono, M. and Shaffer, S.A. 1991. “Tjipanazoles, new antifungal agents from the blue-green alga Tolypothrix tjipanasensis,” Tetrahedron, 47(37): 7739–7750.10.1016/S0040-4020(01)81932-3 Search in Google Scholar

Cameron, R.K. 2000. Salicylic acid and its role in plant defense responses: what do we really know. Physiological and Molecular Plant Pathology, 56: 91-93.10.1006/pmpp.2000.0262 Search in Google Scholar

Chen-Chunquan, S., Belanger, R.R., Benhamou, N., Paulitz, T.C. and Chen, C.Q. 1999. Role of Salicylic acid in systemic resistance induced by Pseudomonas spp. against Pythium aphanidermatum in cucumber roots. European Journal of Plant Pathology, 105: 477-486. Search in Google Scholar

Cheng, L. and Piper, P.W. 1994. Weak acid preservation block the heat shock response and heat shock-element-directed lacZ expression pf low pH Saccharomyces cerevisiae cultures an inhibitory action partially relieved by respiratory deficiency. Microbiology, 140: 1085-1096.10.1099/13500872-140-5-1085 Search in Google Scholar

Chetsumon, A., Fujieda, K., Hirata, K., Yagi, K. and Miura, Y. 1993. “Optimization of antibiotic production by the cyanobacterium Scytonema sp. TISTR 8208 immobilized on polyurethane foam”. Journal of Applied Phycology, 5 (6): 615–622.10.1007/BF02184640 Search in Google Scholar

Dinagaran, S., Sridhar, S. and Eganathan, P. 2016. Chemical composition and antioxidant activities of black seed oil (Nigella sativa L.). International Journal of Pharmaceutical Sciences and Research. Vol. 7(11): 4473-4479. Search in Google Scholar

Degani, O., Movshowitz, D., Dor, S., Meerson, A., Goldbalt, Y. and Raninovitz, O. 2019. Plant Disease, 103(2): 238-248. https://doi.org/10.1094/PDIS-05-18-0759-RE30457434 Search in Google Scholar

El-Beltagi, H.S., Ahmed, S.H., Namich, A.A.M. and Abdel-Sattar, R.R. 2017 Effect of salicylic acid and potassium citrate on cotton plant under salt stress. Fresenius Environmental Bulletin, 26 (1): 1091-1100. Search in Google Scholar

El-Mougy, N.S. and Abdel-Kader, M.M. 2013. “Effect of commercial cyanobacteria products on the growth and antagonistic ability of some bio-agents under laboratory conditions,” Journal of Pathogens, vol. 2013, Article ID 838329, 11 pages.10.1155/2013/838329383879724307948 Search in Google Scholar

El-Mougy, N.S., El-Gamal, N.G. and Abd-El-Kareem, F. 2008. Use of organic acids and salts to control postharvest diseases of lemon fruits in Egypt. Archives of Phytopathology and Plant Protection, 41(7): 467-476.10.1080/03235400600813532 Search in Google Scholar

El-Shafey, H.A. and Claflin, L.E. 1999. Late wilt. In: White DG (ed) Compendium of corn diseases, 3rd ed. The American Phytopathological Society, St. Paul, pp 43–44. Search in Google Scholar

El-Shafey, H.A., Abd-el-Rahim, M.F., Abd-el-Azim, O.Z. and Abd-eI-Hamid, M.S. 1976. Carryover of maize stalk-rot fungi in seed. Agricultural Research Review, 54: 29–42. Search in Google Scholar

El-Shafey, H.A., El-Shorbagy, F.A., Khalil, I.I. and El-Assiuty, E.M. 1988. Additional sources of resistance to the late-wilt disease of maize caused by Cephalosporium maydis. Egypt. Agricultural Research Review, 66: 221-230. Search in Google Scholar

Farouk, S., Youssef, S.A. and Ali, A.A. 2012. Exploitation of biostimulatants and vitamins as an alternative strategy to control early blight of tomato plants. Asian Journal of Plant Science, 11 (1): 36-43.10.3923/ajps.2012.36.43 Search in Google Scholar

Ferreira, J.H.S., Mathee, F.N. and Thomas, A.C. 1991. Biological control of Eutypalota on grapevine by an antagonistic strain of Bacillus subtilis. Phytopathology, 81: 283–287.10.1094/Phyto-81-283 Search in Google Scholar

Frankmolle, W.P., Larsen, L.K., Caplan, F.R., Patterson, G.M., Knübel, G., Levine, I.A. and Moore, R.E. 1992. “Antifungal cyclic peptides from the terrestrial blue-green alga Anabaena laxa. I. Isolation and biological properties”. Journal of Antibiotics, 45(9): 1451–1457.10.7164/antibiotics.45.14511429231 Search in Google Scholar

Ganjewala, D. and Gupta, A.K. 2016. Lemongrass (Cymbopogon flexuosus Steud.) Wats Essential Oil: Overview and Biological Activities. Recent Progress in Medicinal Plants (RPMP) Vol. 37: Essential Oils–II. 233-274. Search in Google Scholar

Gilman, J.C. 1957. A manual of soil fungi. Iowa State College Press, Ames. 2nd Edition, pp.450.10.1097/00010694-195708000-00021 Search in Google Scholar

Hewedy, M.A., Rahhal, M.M.H. and Ismail, I.A. 2000. “Pathological studies on soybean damping-off disease”. Egyptian Journal of Applied Science, 15: 88–102. Search in Google Scholar

Ismail, I.M.K., Salama, A.M., Ali, M.I.A. and Ouf, S.A. 1988. Effect of some phenolic compounds on spore germination and germ-tube length of Aspergillus fumigatus and Fusarium oxysporum f. sp. lycopersici. Egyptian Journal of Microbiology, 23: 29-41. Search in Google Scholar

Johal, L., Huber, D.M. and Martyn, R. 2004. Late wilt of corn (maize) pathway analysis: intentional introduction of Cephalosporium maydis. In: Pathways Analysis for the Introduction to the U.S. of Plant Pathogens of Economic Importance. USDA-APHIS Technical Report No. 503025. Search in Google Scholar

Kalarani, M.K., Thangaraj, M., Sivakumar, R. and Mallika, V. 2002. Effects of salicylic acid on tomato (Lycopersicon esculentum Mill) productivity. Crop Research, 23 (3): 486-492. Search in Google Scholar

Kaur, J. and Arora, D. 1999. Antimicrobial activities of species. International Journal of Antimicrobial Agents, 12: 257–262.10.1016/S0924-8579(99)00074-6 Search in Google Scholar

Kirillov, V., Stikhareva, T., Suleimen, Y., Serafimovich, M., Kabanova, S. and Mukanov, B. 2017. Chemical composition of the essential oil from carnation coniferous (Dianthus acicularis Fisch. ex Ledeb) growing wild in Northern Kazakhstan, Natural Product Research, 31(1): 117-123. DOI: 10.1080/14786419.2016.121483227465604 Open DOISearch in Google Scholar

Kiviranta, J., Abdel-Hameed, A., Sivonen, K., Niemela, S.I. and Carlberg, G. 1993. “Toxicity of cyanobacteria to mosquito larvae screening of active compounds,” Environmental Toxicology and Water Quality, 8 (1): 63–71.10.1002/tox.2530080107 Search in Google Scholar

Kulik, M.M. 1995. “Thepotential for using cyanobacteria (blue-green algae) and algae in the biological control of plant pathogenic bacteria and fungi,” European Journal of Plant Pathology, 101 (6): 585–599.10.1007/BF01874863 Search in Google Scholar

Li, S., Xue, L., Xu, S., Feng, H. and An, L. 2009. Mediators, genes and signaling in adventitious rooting. Botanical Review, 75: 230-247.10.1007/s12229-009-9029-9 Search in Google Scholar

Mandavia, M.K., Khan, N.A., Gajera, H.P., Andaria, J.H. and Parameswaram, M. 2000. Inhibitory effects of phenolic compounds on fungal metabolism in host-pathogen interactions in Fusarium wilt of Cumin. Allelopathy Journal, 7: 85-92. Search in Google Scholar

Moraditochaee, M. 2012. Effects of humic acid foliar spraying and nitrogen fertilizer management on yield of peanut (Arachis hypogaea L.) in Iran. ARPN Journal of Agricultural and Biological Science, 7: 289–293. Search in Google Scholar

Moyne, A.L., Shelby, R., Cleveland, T.E. and Tuzun, S. 2001. Bacillomycin D: an iturin with antifungal activity against Aspergillus flavus. Journal of Applied Microbiology, 90: 622-629.10.1046/j.1365-2672.2001.01290.x Search in Google Scholar

Naqui, S.H.A., Khan, M.S.Y. and Vohora, S.B. 1994. Antibacterial, antifungal and anthelmintic investigation on Indian medicinal plants. Fitoterapia, 62: 221–228. Search in Google Scholar

Nascimento, G.G., Locatelli, J. and Freitas, P.C. 2000. Antibacterial activity of plants extracts and phytochemical on antibiotic resistant bacteria. Brazilian Journal of Microbiology, 31: 247–256.10.1590/S1517-83822000000400003 Search in Google Scholar

Nishimoto, R. 2019. Global trends in the crop protection industry. Journal of Pesticides Sciences 44(3): 141-147. https://www.jstage.jst.go.jp/article/jpestics/44/3/44_D19-101/_article10.1584/jpestics.D19-101671835431530972 Search in Google Scholar

Paulitz, T.C. and Bélanger, R.R. 2001. Biological control in greenhouse systems. Annual Review of Phytopathology, 39: 103-133.10.1146/annurev.phyto.39.1.103 Search in Google Scholar

Ranum, P., Pena-Rosas, J.P. and Garcia-Casal, M.N. 2014. Global maize production, utilization, and consumption. Annals of the New York Academy of Sciences, 1312: 105-12. https://doi.org/10.1111/nyas.1239624650320 Search in Google Scholar

Saad, A.S.A., Kadous, E.A., Tayeb, E.H., Massoud, M.A., Ahmed, S.M. and Abou El-Ela, A.S.A. 2014. The inhibitory effect of some antioxidants and fungicides on the growth of Alternaria solani and Fusarium solani in vitro. Middle East Journal of Agricultural Research, 3(2): 123-134. Search in Google Scholar

Sabet, K.A., Zaher, A.M., Samra, A.S. and Mansour, I.M. 1970. Pathogenic behavior of Cephalosporium maydis and C. acremonium. Annals of Applied Biology, 66:257-263.10.1111/j.1744-7348.1970.tb06432.x Search in Google Scholar

Samra, A.S., Sabet, K.A. and Abdel-Rahim, M.F. 1966. Effect of soil conditions and cultural practices on infection with stalk rots. pp 117-164. In: Samra, A.S. and Sabet, K.A. (eds) Investigations on Stalk-rot Disease of Maize in U.A.R. Ministry of Agric. Government Printing Offices, Cairo, Egypt. Search in Google Scholar

Samra, A.S., Sabet, K.A. and Hingorani, M.K. 1963. Late wilt disease of maize caused by Cephalosporium maydis. Phytopathology, 53: 402–406. Search in Google Scholar

Sathiyabama M, Balasubramanian R (1999) Treatment of groundnut leaves with Salicylic acid controls the development of rust disease caused by Puccinia arachidis Speg. Zeitschrift fur Pflanzenkrankheiten und Pflanzenschutz, 106: 166-173. Search in Google Scholar

Satyanarayana, E. and Begum, H. 1996. Relative efficacy of fungicides (seed dressers) and irrigation schedule for the control of late wilt of maize. Current Research University of Agricultural Science Bangalore, 25: 59-60. Search in Google Scholar

Schlegel, I., Doan, N.T., de Chazal, N. and Smith, G.D. 1998. “Antibiotic activity of new cyanobacterial isolates from Australia and Asia against green algae and cyanobacteria,” Journal of Applied Phycology, 10 (5): 471–479.10.1023/A:1008042619686 Search in Google Scholar

Shabaan, M.M. 2010. Green microalgae water extracts as foliar feeding to wheat plants. Pakistan Journal of Biological Science, 4: 628–632.10.3923/pjbs.2001.628.632 Search in Google Scholar

Sharma, P., Jha, A.B., Dubey, R.S. and Pessarakli, M. 2012. Reactive Oxygen Species, Oxidative Damage, and Antioxidative Defense Mechanism in Plants under Stressful Conditions. Journal of Botany, Volume 2012, Article ID 217037, 26 pages.10.1155/2012/217037 Search in Google Scholar

Shashi-Chauhan, S.M. and Chauhan, S. 1989. In vitro efficacy of certain antifungal lotions on the growth of deratophytic fungi. National Academy Science Letters, 12: 11-13. Search in Google Scholar

Singh, S.D. and Siradhana, B.S. 1987. Influence of some environmental conditions on the development of late wilt of maize induced by Cephalosporium maydis. Indian Journal of Mycology and Plant Pathology, 17: 1-5. Search in Google Scholar

Singh, S.D. and Siradhana, B.S. 1989. Chemical control of late wilt of maize induced by Cephalosporium maydis. Indian Journal of Mycological Plant Pathology, 19: 121-122. Search in Google Scholar

Sofos JN (1992) Sorbic acid, mode of action. In: Ledeberg J, editor. Encyclopedia of microbiology. San Diego, CA: Academic Press. pp 43 – 52. Search in Google Scholar

Sofos, J.N., Pierson, M.D., Blocher, J.C. and Busta, F.F. 1986. Mode of action of sorbic acid on bacterial cells and spores. International Journal of Food Microbiology, 3:1-17.10.1016/0168-1605(86)90036-X Search in Google Scholar

Song, T., Martensson, L., Eriksson, T., Zheng, W. and Rasmussen, U. 2005. Biodiversity and seasonal variation of the cyanobacterial assemblage in a rice paddy field in Fujian, China. The Federation of European Materials Societies (FEMS) Microbiology Ecology, 54: 131–140.10.1016/j.femsec.2005.03.008 Search in Google Scholar

Unlu, H.O., Unlu, H., Karakurt, Y. and Padem, H. 2011. Changes in fruit yield and quality in response to foliar and soil humic acid application in cucumber. Scientific Research Essays, 6: 2800–2803. Search in Google Scholar

Whipps, J.M. 2001. Microbial interactions and bio-control in the rhizosphere. Journal of Experimental Botany, 52: 487-511.10.1093/jxb/52.suppl_1.487 Search in Google Scholar

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