Welcome to Open Science
Contact Us
Home Books Journals Submission Open Science Join Us News
The Toxicity Effect of Nano Fungi Isaria fumosorosea and Metarhizium flavoviride Against the Potato Tuber Moth, Phthorimaea operculella (Zeller)
Current Issue
Volume 3, 2015
Issue 5 (October)
Pages: 155-160   |   Vol. 3, No. 5, October 2015   |   Follow on         
Paper in PDF Downloads: 51   Since Sep. 3, 2015 Views: 1782   Since Sep. 3, 2015
Authors
[1]
Sabbour M. M., Pests and Plant Protection Department, Agricultural & Biological Research Division, National Research, Dokki, Giza, Egypt.
Abstract
The effect of the two nano-entomopathogenic fungi Isaria fumosorosea and Metarhizium flavoviride tested under laboratory green house and field conditions against the potato tuber moth Phthorimaea operculella. Results showed the LC50 of the nano fungi I. fumosorosea and nano-M. flavoviride which recorded that 103X104 and 89 X104 spores/ml, the corresponding LC50 under semifield conditions recorded 50X104 and 47 X104 spores/ml. The effect of the nano entomopathogenic fungi against the potato tuber moth P. operculella life cycle which show that the number of eggs laid per female were significantly decreased to23±8.4 and366±8.7 eggs/female after nano-I. fumosorosea and nano-M. flavoviride respectively as compared to 366±8.7 eggs/ female in the control. The percentage of egg hatching significantly decreased to 2 and 1 after I. fumosorosea and M. flavoviride treatment as compared to 100% in the control. The yield assessments is showmen that the highest weight of the potatoes crop recorded 12.67±41.11 and 11.1± 15.16 Ton/ feddan after nano-M. flavoviride and nano-I. fumosorosea treatments in the potatoes field. During season 2014 the potatoes weight were significantly increased to 12. 94±24.18 Ton/ feddan after nano-M. flavoviride treatments as compared to 8. 94±24.18 Ton/ feddan in the control.
Keywords
Isaria fumosorosea, Metarhizium flavoviride, Nano, Phthorimaea operculella
Reference
[1]
A bbott, W. S., 1925. A method of computing the effectiveness of an insecticide. J. Econ. Ent., 18: 265-267. (15) Finney, D. J., 1964. Probit analysis. 2nd Ed., Cambridge. Univ. Press. England. 318 PP.
[2]
Asmaa, Z. El-Sharkawey;M. Ragei; Sabbour, M.M. Hassen Abel-Latif. A. Mohamed and Rasha Samy. 2009. Antioxidants as UV-protectants for Bacillus thuringiensis" photoprotection of Bacillus thuringiensis". aus. J. basic and Appl. Sci, 3 (2): 358-370.
[3]
Fadel M. M. and Magda Sabbour, 1998. Utilization of coffee waste for the production of bioinsecticides under solid stat fermentation. union. Arab Biol, Cairo. 6 (B), 295-305.
[4]
Fadel, M. and Magda Sabbour, 2002. Utilization of dairy by product in production of bioinsecticides. Online. J. of. Biol. Sci. 2(2): 116-120.
[5]
Finney, D. J., 1964. Probit analysis. 2nd Ed., Cambridge. Univ. Press. England. 318 PP.
[6]
Henderson, C. G. and E. W. Tiltron 1955. Tests with acaricides against the brown wheat mite. J. econ. Entomol. 48: 157-161.
[7]
Ismail, A. I.and M. M. Sabbour, 2002. The role of certain terpenes in increasing the efficacy of microbial insecticides against cotton bollworms. J. Egypt. Ger. Soc. Zool. 37:1-11.
[8]
Leiderer, P. and Dekorsy, T.. (2008). Interactions of nano particles and surfaces Tag der m Äundlichen Pr Äufung: 25. April.http://www.ub.unikonstanz.de/kops/ volltexte//5387-5391.
[9]
Magda M. Sabbour and Shadia E-Abd-El-Aziz (2010). Efficacy of some bioinsecticides against Bruchidius incarnates (BOH.) (Coleoptera: Bruchidae) Infestation during storage. J. Plant Prot. Res. 50, (1): 28-34.
[10]
Magda Mahmoud Sabbour and Shadia El-Sayed Abd-El-Aziz. 2014. Control of Bruchidius incarnates and Rhyzopertha Dominica using two entomopathogenic fungi alone or in combination with modified diatomaceous earth. Elixir Entomology 68 (2014) 22239-22242.
[11]
Min Ah Kang a, Mi Ja Seo a, In Cheon Hwang b, Chul Jang b, Hyun Jin Park c, Yong Man Yu a, Young Nam Youn a (2012). Insecticidal activity and feeding behavior of the green peach aphid, Myzus persicae, after treatment with nano types of pyrifluquinaz on. 5343-542.
[12]
Rombach, M. C.; R. M. Aguda; and D. W. Robert. 1988. Production of Beauveria bassiana in different liquid media and subsequent conditions mycelium. Entomol., 33:315-234.
[13]
Sabbour, M, M. 1992. Biology of some stored product pests as affected by microbial control agents. M. Sc. Thesis Faculty of Science. Cairo Uni. 198.
[14]
Sabbour, M.M.1995. Studies of some microbial insecticides on Earias insulana (Boised) (Lepidoptera: Noctuidae). PhD thesis Cairo universityFac of science. PP: Sabbour, M. M. 2002 a. The role of chemical additives in enhancing the efficacy of Beauveria bassiana and Metarhizium anisopliae against the potato tuber moth Phthorimaea operculella (Zeller) (Lepidoptera: Gelechiidae). Pakistan. J. of Biol. Sci. 5(11): 1155-1159.
[15]
Sabbour, M. M. 2003. The combined effects of some microbial control agents mixed with botanical extracts on some stored product insects. Pak. J. of Biol. Sci. 6 (1): 51-56.
[16]
Sabbour, M. M. 2006. Effect of some fertilizers mixed with bioinsecticides on the potato tuber moth Phthorimaea operculella infesting potato in the field and store. Pak. J of Biol. Sci. (1) 10: 1351-1356.
[17]
Sabbour, M. M. and Sahab, A. 2005. Efficacy of some microbial control agents against cabbage pests in Egypt. Pak. J. of Biol. Sci. (8) 10: 1351-1356.
[18]
Sabbour, M. M and Abdel-Rahman, A. 2007. Evaluations of some terpenes and entomopathogenic fungi on three sugar beet insect pests. J. Boil. Pest. Cont. 17:22-29.
[19]
Sabbour. M. M. and A. F. Sahab. 2007. Efficacy of some microbial control agents against Agrotis ipsilon and Heliothis armigera in Egypt. Bull. N. R. C. Egypt.13: 16-20.
[20]
Sabbour, and Ismail. A. Ismail. 2001. The combined effect of microbial control agents and plant extracts against the potato tuber moth Phthorimaea operculella Zeller. Bull. J. N.R.C. Egypt. 27 (4): (459-467).
[21]
Sabbour, Magda M, 2002b. Evaluation studies of some bio-control agents against corn borers in Egypt. Annal Agric. Sci. Ain Shams Univ. Cairo, 47(3): 1033-1043.
[22]
Sabbour, M. M, 2007a. Evaluations of some entomopathogenic fungi and the predator Coccinella septempunctata against cereal aphids in Egypt, 2007. Egypt. Bull. ent. Soc. Egypt. Econ. 33: 165-174.
[23]
Sabbour, M. M. 2007b. Effect of some natural bioagents and natural enemies against aphids in wheat fields J. Boil. Pest. Cont 33: 33-39.
[24]
Sabbour, M.M. 2009. Evaluation of two entomopathogenic fungi against some insect pests infesting tomato crops in Egypt, IOBC/wprs Bulletin, Vol. 49: 273-278.
[25]
Sabbour, M.M. 2012a. Evaluations of some bioagents against the rice weevil Sitophilus oryzae under laboratory and store conditions. Integrated Protection of Stored Products. IOBC-WPRS Bulletin Vol. 81, pp. 135-142.
[26]
Sabbour M.M. 2012b. Entomotoxicity assay of two Nanoparticle Materials 1-(Al2O3 and TiO2) Against Sitophilus oryzae Under Laboratory and Store Conditions in Egypt. Journal of Novel Applied Sciences. 1-4/103-108.
[27]
Sabbour, M.M. 2013a. Efficacy of Isaria fumosorosea against olive pests under laboratory and field conditions in Egypt. I. J of development (1):55-61.
[28]
Sabbour, M.M. 2013b. Preliminary Investigations Into The Biological Control Of Red Palm Weevil Rhynchophorus ferrugineus By Using Beauveria bassiana In Egypt. Emerging Issues in the Natural and Applied Sciences 2013; 3(1), 85-99. DOI: 10.7813/einas.2013/3-1/7.
[29]
Sabbour, M. M and Shadia E-Abd-El-Aziz 2007. Efficiency of Some Bioinsecticides against Broad Bean Beetle, Bruchus rufimanus (Coleoptera: Bruchidae).Res. J. of Agric .and Biol.Sci.3(2): 67-72.
[30]
Sabbour, M.M.; Shadia El-Sayed Abd-El-Aziz, Marwa Adel Sherief. (2012). Efficacy of three entomopathogenic fungi alone or in combination with diatomaceous earth modifications for the control of three pyralid moths in stored grain. J of. Plant Pro. Res.. Vol. 52, No. 3: 359-363.
[31]
Sabbour. M. M. and Abbass, M. H. 2006. The role of some bioagent mixed with some fertilizers for the control of onion pests. pak. J. Appl. Sci.2 (9): 624-628.
[32]
Sabbour, M. M and Abbass, M. H. 2007. Efficacy of some microbial control agents against onion insect pests in Egypt. Egypt. J. boil. Pest. Cont. 17: 23-27.
[33]
Sabbour, M. M. and Abdel-Rahman, A. 2007. Evaluations of some terpenes and entomopathogenic fungi on three sugar beet insect pests. J. Boil. Pest. Cont. 17:22-29.
[34]
Sabbour, M. M and Hany, A. 2007a. Controlling of Bemisia tabaci by Verticillium lecanii and Paecilomyces fumosoroseus in potato field. Egypt. Bull. ent. Soc. Egypt, 33:135-141.
[35]
Sabbour, M. M and Hany, A. 2007b. Evaluations of some entomopathogenic fungi and Trichogramma evanescens on the potato tuber moth in the field Egypt. Bull. ent. Soc. Egypt. Egypt. Bull. ent. Sco. Egypt, 33: 115-123.
[36]
Sabbour, M.M., M. Ragei and A. Abd-El Rahman, 2011. Effect of Some Ecological Factors on The Growth of Beauveria bassiana and Paecilomyces fumosoroseus Against Corn Borers. Australian Journal of Basic and Applied Sciences, 5(11): 228-235, 2011.
[37]
Sabbour M.M. and M.A. Abd-El-Raheem. 2013. Repellent Effects of Jatropha curcas, canola and Jojoba Seed oil, against Callosobruchus maculates (F.) and Callosobruchus chinensis (L.). Journal of Applied Sciences Research, 9(8): 4678-4682, 2013.
[38]
Sabbour M.M. 2013. Entomotoxicity assay of Nanoparticle 4-(silica gel Cab-O-Sil-750, silica gel Cab-O-Sil-500) against Sitophilus oryzae Under Laboratory and Store Conditions in Egypt. Sci. Re s. Rep. Vol., 1 (2), 67-74, 2013.
[39]
Sabbour M.M. 2013. Entomotoxicity assay of Nano-particle3-(Zinc oxide ZnO) against Sitophilus oryzae Under Laboratory and Store Conditions in Egypt Sci. Re s. Rep. Vol., 1 (2), 50-57, 2013.
[40]
Sabbour, M. M. 2014. a. Evaluating Toxicity of nano-Extracted Destruxin from Metarhizium anisopliae against the grasshopper Hetiracris littoralis in Egypt. J. Egypt. Acad. Environ. Develop. 15(2): 1-7.
[41]
Sabbour, M.M. 2014c. Evaluating toxicity of extracted nano -Destruxin against the desert locust Schistocerca gregaria in Egypt. J. Egypt. Acad. Environ. Develop. 15(2): 9-17.
[42]
Sabbour M.M. and Singer, S.M. 2014. Evaluations of Two Metarhizium varieties against Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae) in Egypt. International Journal of Science and Research (IJSR) ISSN (Online): 2319-7064.
[43]
Sabbour M.M. and Singer, S.M. 2014. Efficacy of Two Entomopathogenic Fungi against Corn Pests Under Laboratory and Field Conditions in Egypt. European Journal of Academic Essays 1(9): 1-6, 2014.
[44]
Sabbour M.M. and Singer, S. M. 2014. Evaluations of two isolated Paecilomyces against Phthorimaea operculella (Lepidoptera: Gelechiidae) under laboratory and field conditions (IJSR) Volume 3 Issue 9, september 2014. 319-324.
[45]
Sahab, A. F and Sabbour, M. M, (2011). Virulence of four entomopathogenic fungi on some cotton pests with especial reference to impact of some pesticides, nutritional and environmental factors on fungal growth. Egyp. J. biol pest cont. 21 (1): 61-67.
[46]
Sahab, A. F; Sabbour, M.M., Attallah, A.G. and Abou-Serreh, Nivin. 2014. Genetic analysis of the entomopathogenic fungus Beauvaria bassiana to the corn borers tested by UV as physical mutagen. International Journal of Chem Tech Research Vol. 6, No. 5, pp 2319-7064.
Open Science Scholarly Journals
Open Science is a peer-reviewed platform, the journals of which cover a wide range of academic disciplines and serve the world's research and scholarly communities. Upon acceptance, Open Science Journals will be immediately and permanently free for everyone to read and download.
CONTACT US
Office Address:
228 Park Ave., S#45956, New York, NY 10003
Phone: +(001)(347)535 0661
E-mail:
LET'S GET IN TOUCH
Name
E-mail
Subject
Message
SEND MASSAGE
Copyright © 2013-, Open Science Publishers - All Rights Reserved