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Cross-Resistance Relationship between Spiromesifen and Tebufenpyrad in Tetranychus urticae Koch (Acari:Tetranychidae) Populations Collected from Bean Fields in Burdur Province

Yıl 2024, Cilt: 19 Sayı: 2, 16 - 22, 31.12.2024
https://doi.org/10.54975/sduzfd.1510109

Öz

In this study, spiromesifen and tebufenpyrad cross-resistance was investigated in Tetranychus urticae Koch (Acari: Tetranychidae) populations collected from Burdur province during the 2023 bean production season. In Burdur province, where beans are produced intensively, 5 Tetranychus urticae populations were collected, 2 from the Central district, 2 from Çeltikçi district and 1 from Çavdır district. The dry residue method was used to determine the resistance levels of the populations. 7 insecticide doses + 1 control group were used in the trials. Each group consisted of 3 repetitions. There are 25 adult two spotted spider mite individuals in each replicate. Acaricides were applied to the leaf surface as 2ml at 1 atm pressure using a spraying tower. Dead and living counts in the populations were made after 24 hours. Spiromesifen and tebufenpyrad resistance ratios in Tetranychus urticae populations were determined by ratioing the LC50 values of the field populations to the LC50 value of the susceptible population.As a result of the study, spiromesifen resistance ratios of B1, B2, B3, B4 and B5 populations collected from bean fields of Tetranychus urticae were 98.1, 51.5, 177.1, 130.6 and 53.6 folds, respectively; tebufenpyrad resistance ratios were determined as 2.3, 1.1, 1.8, 1.8 and 1.0 folds. Cross-resistance between spiromesifen and tebufenpyrad has not been identified in two spotted spider mite populations. When the results are evaluated together, it is thought that spiromesifen should not be used in the control against Tetranychus urticae in these areas, and the use of tebufenpyrad would be more accurate.

Kaynakça

  • Abubakar, M., Umer, A., Shad, S. A., Sarwar, Z. M., & Kamran, M. (2023). Negative impact of unstable spiromesifen resistance on fitness of Tetranychus urticae (Acari: Tetranychidae). Neotropical Entomology, 52(4), 772-780.
  • Adesanya, A. W., Lavine, M. D., Moural, T. W., Lavine, L. C., Zhu, F., & Walsh, D. B. (2021). Mechanisms and management of acaricide resistance for Tetranychus urticae in agroecosystems. Journal of PestScience, 94, 639-663.
  • APRD, 2024. Arthropod pesticide resistance database. https://www.pesticideresistance.org/03-06-2024.
  • Bajda, S., Dermauw, W., Panteleri, R., Sugimoto, N., Douris, V., Tirry, L., & Van Leeuwen, T. (2017). A mutation in the PSST homologue of complex I (NADH: ubiquinoneoxidoreductase) from Tetranychus urticae is associated with resistanceto METI acaricides. Insect Biochemistry and Molecular Biology, 80, 79-90.
  • Balkan, T. (2022). Abamectin, hexythiazox and spiromesifen resistance in populations of Tetranychus urticae Koch (Acari:Tetranychidae) collected from cucumber greenhouses in Tokat province. Turkish Journal of Agriculture -Food Science and Technology, 10(2), 2888-2891.
  • Bolland, H. R., Gutierrez, J., & Flechtmann, C. H. (1998). "World Catalogue of the Spider Mite Family (Acari: Tetranychidae) ", Springer, Brill.
  • Demaeght, P., Dermauw, W.,Tsakireli, T.,Khajehali, J.,Nauen, R.,Tirry, L.,Vontas, J.,Lümmen, P., & Van Leuween, T. (2013). Molecular analysis resistance to acaricidal spirocylic tetranic acids in Tetranychus urticae: CYP392E10 metobolizes spirodiclofen, but not its corresponding enol. Insect Biochemical Molecular Biology, 43, 544-554.
  • Grbić, M., Van Leeuwen, T., Clark, R. M., Rombauts, S., Rouzé, P., Grbić, V., & Van de Peer, Y. (2011). The genome of Tetranychus urticae reveals herbivorous pest adaptations. Nature, 479 (7374), 487-492.
  • Han, Y., Zhang, Y. C., Ye, W. N., Wang, S. M., Wang, X., & Gao, C. F. (2024). Increasing resistance of Tetranychus urticae to common acaricides in China and risk assessment to spiromesifen. Crop Protection, 176, 106519.
  • Helle, W., & Sabelis, M. W. (1985). Spider Mites: Their biology, natural enemies and control, Elsevier, Amsterdam.
  • Herron, G. A., & Rophail, J., (1998). Tebufenpyrad (Pyranica®) resistance detected in two-spotted spider mite Tetranychus urticae Koch (Acari: Tetranychidae) from apples in Western Australia. Experimental & Applied Acarology, 22, 633–641.
  • İnak, E., Demirci, B., Vandenhole, M., Söylemezoğlu, G., Van Leeuwen, T., & Toprak, U. (2023). Molecular mechanisms of resistance to spirodiclofen and spiromesifen in Tetranychus urticae. Crop Protection, 172, 106343.
  • Rauch, N., & Nauen, R. (2003). Spirodiclofen resistance risk assessment in Tetranychus urticae (Acari: Tetranychidae): a biochemical approach. Pesticide Biochemistry and Physiology, 74(2), 91-101.
  • Jonckheere, W., Dermauw, W., Zhurov, V., Wybouw, N., Van den Bulcke, J., Villarroel, C. A., Greenhalgh, R., Grbić, M., Schuurink, R. C., & Tirry, L. (2016). The salivary protein repertoire of the polyphagous spider mite Tetranychus urticae: A quest for effectors. Molecular & Cellular Proteomics, 15(12), 3594-3613.
  • Öncüer, C., & Durmuşoğlu, E., (2008). Tarımsal Zararlılarla Savaş Yöntemleri ve İlaçları. Adnan Menderes Üniversitesi Yayınları, Aydın.
  • Raimqulovich, A. A., & Khabibullaevich, R. A. (2022). Biological effectiveness of hamla-550 EC against spider mite (Tetranychus urticae) on apple orchard. International Journal of Phytology Research, 2(1), 36-37.
  • Rauch, N., & Nauen, R. (2003). Spirodiclofen resistance risk assessment in Tetranychus urticae (Acari: Tetranychidae): a biochemical approach. Pesticide Biochemistry and Physiology, 74, 91-101.
  • Sato, M. E., Veronez, B., Stocco, R. S., Queiroz, M. C. V., & Gallego, R. (2016). Spiromesifen resistance in Tetranychus urticae (Acari: Tetranychidae): selection, stability, and monitoring. Crop Protection, 89 (1), 278-283.
  • Singh, S. P. (1999). Integrated Genetic Improvement. In: Common Bean Improvement in The Twenty-First Century. Kluwer Academic Publishers, Dordrecht, The Netherlands.
  • Snoeck, S., Kurlovs, A. H., Bajda, S., Feyereisen, R., Greenhalgh, R., Villacis-Perez, E., & Van Leeuwen, T. (2019). High-resolution QTL mapping in Tetranychus urticae reveals acaricide-specific responses and common target-site resistance after selection by different METI-I acaricides. Insect Biochemistry and Molecular Biology, 110, 19-33.
  • Stumpf, N., & Nauen, R. (2001). Cross-resistance, inheritance, andbiochemistry of mitochondrial electron transport inhibitor-acaricide resistance in Tetranychus urticae (Acari: Tetranychidae). Journal of Economic Entomology, 94(6), 1577-1583.
  • Tomlin, C. D. S. (1997). The pesticide manual 11th. British CropProtection Council.
  • Tomlin, C. (2003).The pesticide manual, 13th ed. Crop Protection Publications, British Crop Protection Council, Farnham, Surrey, United Kingdom.
  • Van Leeuwen, T., & Dermauw, W. (2016). The molecular evolution of xenobiotic metabolism and resistance in chelicerate mites. Annual Review of Entomology, 61(1), 475-498.
  • Van Leeuwen, T., Tirry, L., Yamamoto, A., Nauen, R.,& Dermauw, W. (2015). The economic importance of acaricides in the control of phytophagous mites and an update on recent acaricide mode of action research. Pesticide Biochemistry and Physiology, 121, 12-21.
  • Van Leeuwen, T., Vontas, J., Tsagkarakou, A., Dermauw, W., & Tirry, L. (2010). Acaricide resistance mechanisms in the two-spotted spider mite Tetranychus urticae and other important Acari: A review. Insect Biochemistry and Molecular Biology, 40(8), 563-572.
  • Yorulmaz Salman, S., & Kaplan, K. B. (2014). Isparta ili merkez ilçesinde domates seralarından toplanan Tetranychus urticae Koch (Acari: Tetranychidae) popülasyonlarının bazı akarisitlere karşı direnç düzeyleri ve detoksifikasyon enzimleri. Türkiye Entomoloji Bülteni, 4(3), 185-195.
  • Yu, SJ. ( 2008). The Toxicology and Biochemistry of İnsecticides. CRC Pres Taylor- Francis Group.

Burdur İli Fasulye Alanlarından Toplanan Tetranychus urticae Koch (Acari:Tetranychidae) Popülasyonlarında Spiromesifen ve Tebufenpyrad Çapraz Direnç ilişkisi

Yıl 2024, Cilt: 19 Sayı: 2, 16 - 22, 31.12.2024
https://doi.org/10.54975/sduzfd.1510109

Öz

Bu çalışmada, 2023 yılı fasulye üretim sezonu boyunca Burdur ilinden toplanan Tetranychus urticae Koch (Acari: Tetranychidae) popülasyonlarında spiromesifen ve tebufenpyrad çapraz direnci araştırılmıştır. Burdur ilinde yoğun olarak fasulye üretimi yapılan Merkez ilçesinden 2, Çeltikçi ilçesinden 2 ve Çavdır ilçesinden 1 olmak üzere 5 adet Tetranychus urticae popülasyonu toplanmıştır. Popülasyonların direnç düzeylerinin belirlenmesi için kuru rezidü yöntemi kullanılmıştır. Denemelerde 7 insektisit dozu+1 kontrol grubu kullanılmıştır. Her grup 3 tekerrürden oluşmuştur. Her tekerrürde ise 25 adet ergin kırmızıörümcek bireyi bulunmaktadır. Akarisitler ilaçlama kulesi kullanılarak 1 atm başınçta yaprak yüzeyine 2ml olarak uygulanmıştır. Popülasyonlarda ölü-canlı sayımları 24 saat sonra yapılmıştır. Tetranychus urticae popülasyonlarında spiromesifen ve tebufenpyrad direnç oranları tarla popülasyonlarının LC50 değerlerinin hassas popülasyonun LC50 değerine oranlanması ile belirlenmiştir. Çalışma sonucunda Tetranychus urticae’nin fasulye alanlarından toplanan B1, B2, B3, B4 ve B5 popülasyonlarında spiromesifen direnç oranları sırasıyla 98.1, 51.5, 177.1, 130.6 ve 53.6 kat; tebufenpyrad direnç oranları ise 2.3, 1.1, 1.8, 1.8 ve 1.0 kat olarak belirlenmiştir. Kırmızıörümcek popülasyonlarında spiromesifen ve tebufenpyrad arasında çapraz direnç belirlenmemiştir. Sonuçlar birlikte değerlendirildiğinde, bu alanlarda Tetranychus urticae mücadelesinde spiromesifen kullanılmaması gerektiği, tebufenpyrad kullanımının ise daha doğru olacağı düşünülmektedir.

Kaynakça

  • Abubakar, M., Umer, A., Shad, S. A., Sarwar, Z. M., & Kamran, M. (2023). Negative impact of unstable spiromesifen resistance on fitness of Tetranychus urticae (Acari: Tetranychidae). Neotropical Entomology, 52(4), 772-780.
  • Adesanya, A. W., Lavine, M. D., Moural, T. W., Lavine, L. C., Zhu, F., & Walsh, D. B. (2021). Mechanisms and management of acaricide resistance for Tetranychus urticae in agroecosystems. Journal of PestScience, 94, 639-663.
  • APRD, 2024. Arthropod pesticide resistance database. https://www.pesticideresistance.org/03-06-2024.
  • Bajda, S., Dermauw, W., Panteleri, R., Sugimoto, N., Douris, V., Tirry, L., & Van Leeuwen, T. (2017). A mutation in the PSST homologue of complex I (NADH: ubiquinoneoxidoreductase) from Tetranychus urticae is associated with resistanceto METI acaricides. Insect Biochemistry and Molecular Biology, 80, 79-90.
  • Balkan, T. (2022). Abamectin, hexythiazox and spiromesifen resistance in populations of Tetranychus urticae Koch (Acari:Tetranychidae) collected from cucumber greenhouses in Tokat province. Turkish Journal of Agriculture -Food Science and Technology, 10(2), 2888-2891.
  • Bolland, H. R., Gutierrez, J., & Flechtmann, C. H. (1998). "World Catalogue of the Spider Mite Family (Acari: Tetranychidae) ", Springer, Brill.
  • Demaeght, P., Dermauw, W.,Tsakireli, T.,Khajehali, J.,Nauen, R.,Tirry, L.,Vontas, J.,Lümmen, P., & Van Leuween, T. (2013). Molecular analysis resistance to acaricidal spirocylic tetranic acids in Tetranychus urticae: CYP392E10 metobolizes spirodiclofen, but not its corresponding enol. Insect Biochemical Molecular Biology, 43, 544-554.
  • Grbić, M., Van Leeuwen, T., Clark, R. M., Rombauts, S., Rouzé, P., Grbić, V., & Van de Peer, Y. (2011). The genome of Tetranychus urticae reveals herbivorous pest adaptations. Nature, 479 (7374), 487-492.
  • Han, Y., Zhang, Y. C., Ye, W. N., Wang, S. M., Wang, X., & Gao, C. F. (2024). Increasing resistance of Tetranychus urticae to common acaricides in China and risk assessment to spiromesifen. Crop Protection, 176, 106519.
  • Helle, W., & Sabelis, M. W. (1985). Spider Mites: Their biology, natural enemies and control, Elsevier, Amsterdam.
  • Herron, G. A., & Rophail, J., (1998). Tebufenpyrad (Pyranica®) resistance detected in two-spotted spider mite Tetranychus urticae Koch (Acari: Tetranychidae) from apples in Western Australia. Experimental & Applied Acarology, 22, 633–641.
  • İnak, E., Demirci, B., Vandenhole, M., Söylemezoğlu, G., Van Leeuwen, T., & Toprak, U. (2023). Molecular mechanisms of resistance to spirodiclofen and spiromesifen in Tetranychus urticae. Crop Protection, 172, 106343.
  • Rauch, N., & Nauen, R. (2003). Spirodiclofen resistance risk assessment in Tetranychus urticae (Acari: Tetranychidae): a biochemical approach. Pesticide Biochemistry and Physiology, 74(2), 91-101.
  • Jonckheere, W., Dermauw, W., Zhurov, V., Wybouw, N., Van den Bulcke, J., Villarroel, C. A., Greenhalgh, R., Grbić, M., Schuurink, R. C., & Tirry, L. (2016). The salivary protein repertoire of the polyphagous spider mite Tetranychus urticae: A quest for effectors. Molecular & Cellular Proteomics, 15(12), 3594-3613.
  • Öncüer, C., & Durmuşoğlu, E., (2008). Tarımsal Zararlılarla Savaş Yöntemleri ve İlaçları. Adnan Menderes Üniversitesi Yayınları, Aydın.
  • Raimqulovich, A. A., & Khabibullaevich, R. A. (2022). Biological effectiveness of hamla-550 EC against spider mite (Tetranychus urticae) on apple orchard. International Journal of Phytology Research, 2(1), 36-37.
  • Rauch, N., & Nauen, R. (2003). Spirodiclofen resistance risk assessment in Tetranychus urticae (Acari: Tetranychidae): a biochemical approach. Pesticide Biochemistry and Physiology, 74, 91-101.
  • Sato, M. E., Veronez, B., Stocco, R. S., Queiroz, M. C. V., & Gallego, R. (2016). Spiromesifen resistance in Tetranychus urticae (Acari: Tetranychidae): selection, stability, and monitoring. Crop Protection, 89 (1), 278-283.
  • Singh, S. P. (1999). Integrated Genetic Improvement. In: Common Bean Improvement in The Twenty-First Century. Kluwer Academic Publishers, Dordrecht, The Netherlands.
  • Snoeck, S., Kurlovs, A. H., Bajda, S., Feyereisen, R., Greenhalgh, R., Villacis-Perez, E., & Van Leeuwen, T. (2019). High-resolution QTL mapping in Tetranychus urticae reveals acaricide-specific responses and common target-site resistance after selection by different METI-I acaricides. Insect Biochemistry and Molecular Biology, 110, 19-33.
  • Stumpf, N., & Nauen, R. (2001). Cross-resistance, inheritance, andbiochemistry of mitochondrial electron transport inhibitor-acaricide resistance in Tetranychus urticae (Acari: Tetranychidae). Journal of Economic Entomology, 94(6), 1577-1583.
  • Tomlin, C. D. S. (1997). The pesticide manual 11th. British CropProtection Council.
  • Tomlin, C. (2003).The pesticide manual, 13th ed. Crop Protection Publications, British Crop Protection Council, Farnham, Surrey, United Kingdom.
  • Van Leeuwen, T., & Dermauw, W. (2016). The molecular evolution of xenobiotic metabolism and resistance in chelicerate mites. Annual Review of Entomology, 61(1), 475-498.
  • Van Leeuwen, T., Tirry, L., Yamamoto, A., Nauen, R.,& Dermauw, W. (2015). The economic importance of acaricides in the control of phytophagous mites and an update on recent acaricide mode of action research. Pesticide Biochemistry and Physiology, 121, 12-21.
  • Van Leeuwen, T., Vontas, J., Tsagkarakou, A., Dermauw, W., & Tirry, L. (2010). Acaricide resistance mechanisms in the two-spotted spider mite Tetranychus urticae and other important Acari: A review. Insect Biochemistry and Molecular Biology, 40(8), 563-572.
  • Yorulmaz Salman, S., & Kaplan, K. B. (2014). Isparta ili merkez ilçesinde domates seralarından toplanan Tetranychus urticae Koch (Acari: Tetranychidae) popülasyonlarının bazı akarisitlere karşı direnç düzeyleri ve detoksifikasyon enzimleri. Türkiye Entomoloji Bülteni, 4(3), 185-195.
  • Yu, SJ. ( 2008). The Toxicology and Biochemistry of İnsecticides. CRC Pres Taylor- Francis Group.
Toplam 28 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Pestisititler ve Toksikoloji, Tarımda Akaroloji
Bölüm Araştıma
Yazarlar

Sibel Yorulmaz 0000-0003-3836-5673

Hüseyin Kaplan 0009-0004-8172-9350

Orhan Kaya 0009-0005-6083-8432

Yayımlanma Tarihi 31 Aralık 2024
Gönderilme Tarihi 3 Temmuz 2024
Kabul Tarihi 30 Temmuz 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 19 Sayı: 2

Kaynak Göster

APA Yorulmaz, S., Kaplan, H., & Kaya, O. (2024). Burdur İli Fasulye Alanlarından Toplanan Tetranychus urticae Koch (Acari:Tetranychidae) Popülasyonlarında Spiromesifen ve Tebufenpyrad Çapraz Direnç ilişkisi. Ziraat Fakültesi Dergisi, 19(2), 16-22. https://doi.org/10.54975/sduzfd.1510109

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