Yıl: 2021 Cilt: 45 Sayı: 2 Sayfa Aralığı: 124 - 132 Metin Dili: İngilizce DOI: 10.3906/tar-2006-67 İndeks Tarihi: 29-07-2022

Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae)

Öz:
In Turkey, Tinocallis (Sappocallis) saltans (Nevsky) on Ulmus glabra Hudson was detected for the first time, and it wasdetermined that it caused a considerable amount of damage. The study was conducted for the purpose of determining the usability ofenthomopathogens in the control against it, while avoiding the negative effects of chemicals on the environment and human health.A total of 12 bacteria strains were tested for control efficacy and verified: Brevibacillus brevis (2), Bacillus thuringiensis (1), Bacillusthuringiensis subsp. kenyae(2), Bacillus thuringiensis subsp. kurstakii (2), Bacillus subtilis (1), Pseudomonas chlororaphis (1), Bacillussphaericus GC subgroup D (1), Pseudomonas fluorescens biotype C (1), Bacillus atrophaeus (1), and 1 fungus isolate (Beauveria bassiana).The trials were carried out in 2 different forms: under controlled conditions and under field conditions. Data showed that the mortalityrates were between 12.84% and100% in controlled condition and between 7.72% and 31.79% in field condition over the 72 h period. B.thuringiensis subsp. kurstakii (FDP-41), B. subtilis (EK-7), and B. thuringiensis subsp. kenyae (FDP-42) were the most effective bacterialstrains against the aphids in controlled conditions. The percentage of mortality related to these applications was 100% in 48 h incontrolled condition. However, the effectiveness of B. thuringiensis subsp. kurstakii (FDP-41) was 31.79% in 72 h in field conditions. Onthe other hand, fungal isolate B. bassiana (ET 10) suppressed the harmful population significantly in controlled conditions (86.64%);however, it was less effective in field conditions (13.04%). As a result, it was concluded in the present study that these bacteria strainsmay be used successfully as bioagents in the biological control against T. saltans.
Anahtar Kelime: biological control Beauveria bassiana Bacillus spp. Tinocallis (Sappocallis) saltans

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  • Alper M, Güneş H, Civelek HS, Dursun O, Eskin A (2013). Toxic effect of Bacillus thuringiensis (Berliner) (Bacillales: Bacillaceae) isolates against Tetranychus urticae Koch (Acarina: Tetranycidae), Ceroplastes rusci L. (Homoptera: Coccidae) and Ceratitis capitata (Wiedemann) (Diptera: Tephritidae). Turkish Bulletin of Entomology 3 (2): 75-87 (in Turkish with an abstract in English).
  • Bélanger RR (2001). Biological control in greenhouse systems. Annual Review of Phytopathology 39: 103-133.
  • Bravo JA, Forsythe P, Chew MV, Escaravage E, Savigna HM et al. (2011). Ingestion of Lactobacillus strain regulates emotional behavior and central GABA receptor expression in a mouse via the vagus nerve. Proceedings of the National Academy of Sciences of the United States of America 20 (108): 16050- 16055.
  • Cooke RC (1977). Fungi, Man and His Environment. London, UK: Longman Group Limited.
  • Dadasoglu F, Karagöz K, Kotan R, Sarihan F, Yildirim E et al. (2013). Biolarvicidal effects of nine Bacillus strains against larvae of Culexpipiens Linnaeus, 1758 (Diptera: Culicidae) and nontarget organisms. Egyptian Journal of Biological Pest Control 23 (1): 35-42.
  • Dadasoglu F, Calmasur O, Karagoz K, Kotan R (2014). Insecticidal effect of some bacteria on cherry slugworm Caliroa cerasi (Linnaeus, 1758) (Hymenoptera: Tenthredinidae). Fresenius Environmental Bulletin 23 (8): 2011-2015.
  • Dadasoglu F, Tozlu G, Kotan R, Gokturk T, Karagoz K (2016). Biological control of pine sawfly (Diprion pini L.) and molecular characterisation of effective strains. Romanian Biotechnological Letters 21 (2): 11271-11280.
  • Devi PSV, Prasad YG, Chowdary YGA, Rao DM, Balakrishnan LK (2003). Identification of virulent isolates of the entomopathogenic fungus Nomuraea rileyi (F) Samson for the management of Helicoverpa armigera and Spodoptera litura. Mycopathologia 156: 365-373.
  • Devonshire AL (1989). Resistance of aphids to insecticides. In: Minks AK, Harrewijn P (editors). Aphids, Their Biology, Natural Enemies and Control, Vol. C. Amsterdam, Netherlands: Elsevier Science Publishers BV, pp. 123-135.
  • Edreva A (2005). Pathogenesis-related proteins: research progress in the last 15 years. Generaland Applied Plant Physiology 31: 105-124.
  • Glare T, Caradus J, Gelernter W Jackson T, Keyhani N et al. (2012). Have biopesticides come of age? Trends in Biotechnology 30: 250-258.
  • Gokturk T, Tozlu E, Kotan R (2018). Prospects of entomopathogenic bacteria and fungi for biological control of Ricania simulans (Walker, 1851) (Hemiptera: Ricaniidae). Pakistan Journal of Zoology 50 (1): 75-82.
  • Görür G, Şenol Ö, Beğen Akyıldırım H, Akyürek B (2020). Foresights derived from recent studies conducted on Turkey aphid fauna. Atatürk University Journal of Agricultural Faculty 51 (1): 63- 68.
  • Gray LR, Jensen A, Riebe J, Head G, Duan JJ (2001). Transgenic Bt potato and conventional insecticides for Colorado potato beetle management: comparative efficacy and non-target impacts. Entomologia Experimentaliset Applicata 100 (1): 89- 100.
  • Halbert SE, Pike KS (1990). An Asian elm aphid (Homoptera: Aphididae) new to North America found in suction trap samples. Proceedings of the Entomological Society of Washington 92: 672-674.
  • Hesketh H, Alderson PG, Pye BJ, Pell JK (2008). The development and multipleuses of a standardized bioassay method to select hypocrealean fungi for biological control of aphids. Biological Control 46: 242-255.
  • Jabeen F, Hussain A, Manzoo M, Younis T, Rasul A et al. (2018). Potential of bacterial chitinolytic, Stenotrophomonas maltophilia, in biological control of termites l. Egyptian Journal of Biological Pest Control 28: 86.
  • Jackson CW, Heale JB, Hall RA (1985). Traits associated with virulence to the aphid Macrosiphoniella sanborni in eighteen isolates of Verticillium lecanii. Annals of Applied Biology 105: 39-48.
  • Jandricic SE, Filotas M, Sanderson JP, Wraigh SP (2014). Pathogenicity of conidia-based preparations of entomopathogenic fungi against the greenhouse pest aphids Myzus persicae, Aphis gossypii, and Aulacorthum solani (Hemiptera: Aphididae). Journal of Invertebrate Pathology 118: 34-46.
  • Jung HS, Lee HB, Kim K, Lee EY(2006). Selection of Lecancillium strains for aphid (Myzuspersicae) control. Korean Journal of Mycology 34: 112-118.
  • Khachatourians GG (1986). Production and use of biological pests control agents. Trends in Biotechnology 4: 120-124.
  • Khamraev A, Davenport CF (2004). Identification and control of agricultural plant pests and diseases in Khorezm and the Republic of Karakalpakstan, Uzbekistan. In: ZEF Work Papers for Sustainable Development in Central Asia; Tashkent, Uzbekistan.
  • Kim JJ (2004). Pathological studies of Verticillium lecanii on the cotton aphid control. Ph.D, Chonnam National University, Korea.
  • Klement Z, Farkas GL, Lovrekovich L (1964). Hypersensitive reaction induced by phytopathogenic bacteria in the tobacco leaf. Phytopathology 54: 474-477.
  • Kramer KJ, Muthukrishnan S (1997). Insect chitinases: molecular biology and potential use as biopesticides. Insect Biochemistry and Molecular Biology 27: 887-900.
  • Kumar S, Sultana R (2017). Effect of entomopathogenic fungi on the food consumption of acrididae species. International Journal of Biological, Biomolecular, Agricultural, Food and Biotechnological Engineering 11 (6): 360-364.
  • Leathers TD, Gupta SC (1993). Susceptibility of the eastern tent caterpillar (Malacosoma americanum) to the entomogenous fungus Beauveria bassiana. Journal of Invertebrate Pathology 61: 217-219.
  • Leite LG, Alves SB, Filho Batista F, Roberts DW (2003). Effect of salts, vitamins, sugars and nitrogen sources on the growth of three genera of Entomophthorales: Batkoa, Furia, and Neozygites. Mycological Research 107: 872-878.
  • Milner RJ (1997). Prospect for biopesticides for aphid control. Entomophaga 42: 227-239.
  • Mohammadi P, Tozlu E, Kotan R, Kotan Şenol M (2017). Potential of some bacteria for biological control of postharvest citrus green mould caused by Penicillium digitatum. Plant Protection Science 53 (3): 134-143.
  • Núñez Pérez E, Durante M, Duran Alvaro MP, Nieto Nafria JM (1991). Tinocallis saltans (Nevsky) (Homoptera: Aphididae) en España, plagapotencial del olmo siberiano: Ulmus pumila. Boletin de Sanidad Vegetal Plagas 17: 355-360 (in Portuguese with an abstract in English).
  • Öncüer C (1991). Agricultural pests and pesticides. İzmir, Turkey: Ege University Agricultural Faculty Press (in Turkish).
  • Patti I, Barbagallo S (1998). An approach to the knowledge on the Italian aphid fauna. In: Nieto Nafria JM, Dixon AFG (editors). Aphids in Natural and Managed Ecosystems. Leon, Spain: Universidad de Leon, pp. 397-405.
  • Porcar M, Grenier AM, Federici B, Rahbe Y (2009). Effects of Bacillus thuringiensis ∂- Endotoxins on the Pea Aphid (Acyrthosiphon pisum). Applied and Environmental Microbiology 75 (14): 4897-4900.
  • Quesada-Moraga E, Landa BB, Muñozledesma J, Jiménez-Díaz RM, Álvarez Santiago C (2006). Endophytic colonization of opium poppy, Papaver somniferum, by an entomopathogenic Beauveria bassiana strain. Mycopathologia 161: 323-329.
  • Quintela ED, McCoy CW (1998). Synergistic effect of imidacloprid and two entomopathogenic fungi on the behavior and survival of larvae of Diaprepes abbreviatus (Coleoptera: Curculionidae) in soil. Journal of Economic Entomology 91: 110-122.
  • Richards WR (1967). A review of the Tinocallis of the world (Homoptera: Aphididae). The Canadian Entomologist 99 (5): 536-553.
  • Ripka G (1998). New data to the knowledge on the phytoseiid fauna in Hungary (Acari: Mesostigmata). Acta Phytopathological et Entomologica Hungarica 33: 395-405.
  • Sasser M (1990). Identification of bacteria through fatty acid analysis. In: Klement Z, Rudolph K, Sands D (editors). Methods in Phytobacteriology. Budapest, Hungary: Academia Kiado, pp. 199-204.
  • Shan LT, Feng MG (2010). Evaluation of the biocontrol potential of various Metarhizium isolates against green peach aphid Myzus persicae (Homoptera: Aphididae). Pest Management Science 66: 669-675.
  • Shia WB, Feng MG (2004). Lethal effect of Beauveria bassiana, Metarhizium anisopliae, and Paecilomyces fumosoroseuson the eggs of Tetranychus cinnabarinus (Acari: Tetranychidae) with a description of a mite egg bioassay system. Biological Control 30: 165-173.
  • Steenberg T, Humber RA (1999). Entomopathogenic potential of Verticillium and Acremonium species (Deuteromycotina: Hyphomycetes). Journal of Invertebrate Pathology 73: 309-314.
  • Tesfaye D, Seyoum E (2010). Studies on the pathogenicity of native entomopathogenicfunal isolates on the cotton/melon aphid, Aphis gossypii (Homoptera: Aphididae) Glover under different temperature regimes. African Entomology 18: 302-312.
  • Tozlu E, Dadaşoğlu F, Kotan R, Tozlu G (2011). Insecticidal effect of some bacteria on Bruchus dentipes Baudi (Coleoptera: Bruchidae). Fresenius Environmental Bulletin 20 (4): 918-923.
  • Tozlu E, Mohammadi P, Kotan Senol M, Nadaroglu H, Kotan R (2016). Biological control of Sclerotinia sclerotiorum (Lib.) de Bary, the causal agent of white mould disease in red cabbage, by some bacteria. Plant Protection Science 52 (3): 188-198.
  • Tozlu E, Kotan R, Tozlu G (2017). The investigation of Beauveria bassiana (Ascomycota: Hypocreales) as biocontrol agent of rosestem sawfly, Syrista parreyssi (Spinola, 1843) (Hymenoptera: Symphyta: Cephidae) larvae. Fresenius Environmental Bulletin 26 (12): 7091-7100.
  • Tozlu E, Saruhan I, Tozlu G, Kotan R, Dadaşoğlu F et al. (2019). Potentials of some entomopathogens against the Brown marmorated stink bug, Halyomorpha halys (Stål, 1855) (Hemiptera: Pentatomidae). Egyptian Journal of Biological Pest Control 29: 76.
  • van Lenteren JC, Bolckmans, K, Köhl J, Ravensberg WJ, Urbaneja A (2018). Biological control using invertebrates and microorganisms: plenty of new opportunities. BioControl 63 (1): 39-59.
  • Walters FS, English LH (1995). Toxicity of Bacillus thuringiensis δ-endotoxins toward the potato aphid in an artificial diet bioassay. Entomologia Experimentalis et Applicata 77 (2): 211- 216.
  • Wright C, Brooks A, Wall R (2004). Toxicity of the entomopathogenic fungus, Metarhizium anisopliae (Deuteromycotina: Hyphomycetes) to adult females of the blowfly Luciliasericata (Diptera: Calliphoridae). Pest Management Science 60: 639- 644.
  • Veliz EA, Martínez-Hidalgo P, Hirsch AN (2017). Chitinaseproducing bacteria and their role in biocontrol. AIMS Microbiology 3 (3): 689-705.
  • Vu VH, Hong SII, Kim K (2007). Selection of entomopathogenic fungi for aphid control. Journal of Bioscience and Bioengineering 104 (6): 498-505.
  • Yaltırık F (1993). Dendrology, Angiospermae. İstanbul, Turkey: İstanbul University Press (in Turkish).
  • Zibaee A, Bandani AR, Sendi JJ (2013). Pathogenicity of Beauveria bassiana to fall webworm (Hyphantria cunea) (Lepidoptera: Arctiidae) on different host plants. Plant Protection Science 49 (4): 169-176.
APA TOZLU E, Tozlu G, KOTAN R, çalmaşur ö, DADASOGLU F (2021). Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). , 124 - 132. 10.3906/tar-2006-67
Chicago TOZLU Elif,Tozlu Göksel,KOTAN RECEP,çalmaşur önder,DADASOGLU FATIH Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). (2021): 124 - 132. 10.3906/tar-2006-67
MLA TOZLU Elif,Tozlu Göksel,KOTAN RECEP,çalmaşur önder,DADASOGLU FATIH Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). , 2021, ss.124 - 132. 10.3906/tar-2006-67
AMA TOZLU E,Tozlu G,KOTAN R,çalmaşur ö,DADASOGLU F Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). . 2021; 124 - 132. 10.3906/tar-2006-67
Vancouver TOZLU E,Tozlu G,KOTAN R,çalmaşur ö,DADASOGLU F Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). . 2021; 124 - 132. 10.3906/tar-2006-67
IEEE TOZLU E,Tozlu G,KOTAN R,çalmaşur ö,DADASOGLU F "Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae)." , ss.124 - 132, 2021. 10.3906/tar-2006-67
ISNAD TOZLU, Elif vd. "Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae)". (2021), 124-132. https://doi.org/10.3906/tar-2006-67
APA TOZLU E, Tozlu G, KOTAN R, çalmaşur ö, DADASOGLU F (2021). Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). Turkish Journal of Agriculture and Forestry, 45(2), 124 - 132. 10.3906/tar-2006-67
Chicago TOZLU Elif,Tozlu Göksel,KOTAN RECEP,çalmaşur önder,DADASOGLU FATIH Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). Turkish Journal of Agriculture and Forestry 45, no.2 (2021): 124 - 132. 10.3906/tar-2006-67
MLA TOZLU Elif,Tozlu Göksel,KOTAN RECEP,çalmaşur önder,DADASOGLU FATIH Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). Turkish Journal of Agriculture and Forestry, vol.45, no.2, 2021, ss.124 - 132. 10.3906/tar-2006-67
AMA TOZLU E,Tozlu G,KOTAN R,çalmaşur ö,DADASOGLU F Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). Turkish Journal of Agriculture and Forestry. 2021; 45(2): 124 - 132. 10.3906/tar-2006-67
Vancouver TOZLU E,Tozlu G,KOTAN R,çalmaşur ö,DADASOGLU F Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae). Turkish Journal of Agriculture and Forestry. 2021; 45(2): 124 - 132. 10.3906/tar-2006-67
IEEE TOZLU E,Tozlu G,KOTAN R,çalmaşur ö,DADASOGLU F "Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae)." Turkish Journal of Agriculture and Forestry, 45, ss.124 - 132, 2021. 10.3906/tar-2006-67
ISNAD TOZLU, Elif vd. "Investigation of some enthomopathogens as biocontrol agents of Tinocallis (Sappocallis) saltans (Nevsky, 1929) (Hemiptera: Aphididae)". Turkish Journal of Agriculture and Forestry 45/2 (2021), 124-132. https://doi.org/10.3906/tar-2006-67