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Bazı bı̇yopestı̇sı̇tlerı̇n domateste zararlı kök-ur nematodu Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) üzerine etkisi̇

Yıl 2025, Cilt: 49 Sayı: 1, 19 - 26

Öz

Son yıllarda, biyopestisitler bitki paraziti nematodların (BPN) kontrolü için yaygın olarak araştırılmaktadır. Bu çalışmada Bacillus bazlı biyopestisitlerin kök-ur nematodu (RKN) Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) üzerindeki etkileri incelenmiştir. Çalışma, 2023 yılında Bolu Abant İzzet Baysal Üniversitesi, Ziraat Fakültesi, Bitki Koruma Bölümü, Nematoloji Laboratuvarı ve iklim odasında yürütülmüştür. Çalışmada Bacillus subtilis (Biyopestisit-I), Bacillus licheniformis suşu RTI184 (Biyopestisit-II) ve Paecilomyces lilacinus suşu 251'in (Biyopestisit-III) etkinliği, kimyasal nematisitler ve uygulama içermeyen bir kontrol ile karşılaştırılmıştır. Uygulamalar farklı zamanlarda gerçekleştirilmiştir: (A) dikimden 5-7 gün önce, (B) dikim sırasında daldırma yoluyla, (C) dikimden hemen sonra ve (D) dikimden 14 gün sonra (DAT). En düşük gal oluşumu Biyopestisit-III + Nematisit-II (CD) uygulamasında (0,40±0,24), ardından Nematisit-I (CD) (3,40±0,24) ve Biyopestisit-I (BD) (4,20±0,37) uygulamalarında gerçekleşmiş, en yüksek ise Biyopestisit-I (CD) (5,00±0,31) uygulamasında gözlenmiştir. İkinci dönem larva sayıları Biyopestisit-III + Nematisit-II (CD) (%99,76), Nematisit-I (CD) (%70,29) ve Biyopestisit-I (BD) (%57,36) ile önemli ölçüde azalmıştır. Sonuçlar, Bacillus bazlı biyopestisitlerin kök-ur nematodu zararını azaltmada etkili olduğunu ve domates bitkilerinde M. incognita'nın mücadelesinde kullanılabileceğini göstermektedir.

Kaynakça

  • Aballay, E., S. Prodan, A. Mårtensson & P. Persson, 2012. Assessment of rhizobacteria from grapevine for their suppressive effect on the parasitic nematode Xiphinema index. Crop Protection, 42: 36-41.
  • Abd-Elgawad, M. M., 2021. Biological control of nematodes infecting eggplant in Egypt. Bulletin of the National Research Centre, 45 (1): 1-9.
  • Arora, R., G. S. Battu & D. S. Bath, 2000. Management of insect pests of cauliflower with biopesticides. Indian Journal of Ecology, 27 (2): 156-162.
  • Blok, V. C., J. T. Jones, M. S. Phillips & D. L. Trudgill, 2008. Parasitism genes and host range disparities in biotrophic nematodes: the conundrum of polyphagy versus specialisation. BioEssays, 30 (3): 249-259.
  • Burkett-Cadena, M., N. Kokalis-Burelle, K. S. Lawrence, E. Van Santen & J. W. Kloepper, 2008. Suppressiveness of root-knot nematodes mediated by rhizobacteria. Biological Control, 47 (1): 55-59.
  • Colagiero, M., L. C. Rosso & A. Ciancio, 2018. Diversity and biocontrol potential of bacterial consortia associated to root-knot nematodes. Biological Control, 120: 11-16.
  • Collange, B., M. Navarrete, G. Peyre, T. Mateille & M. Tchamitchian, 2011. Root-knot nematode (Meloidogyne) management in vegetable crop production: The challenge of an agronomic system analysis. Crop Protection, 30 (10): 1251-1262.
  • Elling, A. A., 2013. Major emerging problems with minor Meloidogyne species. Phytopathology, 103 (11): 1092-1102.
  • Freitas, L. G., W. S. Neves, C. F. S. Fabry, B. M. Marra, M. M. Coutinho, R. S. Romeiro & S. Ferraz, 2005. Isolation and selection of rhizobacteria for the control of root-knot nematodes, Meloidogyne spp. on tomato. Nematologia Brasileira, 29 (2): 215-220.
  • Giannakou, I. O. & I. Anastasiadis, 2005. Evaluation of chemical strategies as alternatives to methyl bromide for the control of root-knot nematodes in greenhouse cultivated crops. Crop Protection, 24 (6): 499-506.
  • Hallmann, J., K. G. Davies & R. Sikora, 2009. “Biological Control Using Microbial Pathogens, Endophytes and Antagonists, 380-411” In: Root-Knot Nematodes (Eds. R. N. Perry, M. Moens & J. L. Starr). CABI International, Wallingford, UK, 488 pp.
  • Hooper, D. J., 1986. “Extraction of Nematodes from Plant Material, 59-80”. In: Laboratory Methods for Work with Plants and Soil Nematodes (Eds. J. F. Southey). Ministry of Agriculture, Fisheries and Food, London, UK, 202 pp.
  • Huang, K., Q. Jiang, L. Liu, S. Zhang, C. Liu, H. Chen & Y. Zhang, 2020. Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes. AMB Express, 10: 72 (1-11).
  • Hunt, D. J. & Z. A. Handoo, 2009. “Taxonomy, Identification and Principal Species, 55-97” In: Root-Knot Nematodes (Eds. R. N. Perry, M. Moens & J. L. Starr). CABI International, Wallingford, UK, 488 pp.
  • Jordan, S., 2018. Yield to the resistance: The impact of nematode resistant varieties on alfalfa yield. Natural Resource Modeling, 31 (2): 1-11.
  • Kerry, B. R., 2000. Rhizosphere interactions and the exploitation of microbial agents for the biological control of plant-parasitic nematodes. Annual Review of Phytopathology, 38 (1): 423-441.
  • Khan, A., A. Khan, A. Ali, S. Fatima & M. A. Siddiqui, 2023. Root-knot nematodes (Meloidogyne spp.): Biology, plant-nematode interactions and their environmentally benign management strategies. Gesunde Pflanzen, 75 (6): 1-19.
  • Lunt, D. H., S. Kumar, G. Koutsovoulos & M. L. Blaxter, 2014. The complex hybrid origins of the root knot nematodes revealed through comparative genomics. PeerJ - Life & Environment, 2: e356 (1-25).
  • Mahesha, H. S., N. G. Ravichandra, M. S. Rao, N. C. Narasegowda, S. Shreeshail & H. Shivalingappa, 2017. Bio-efficacy of different strains of Bacillus spp. against Meloidogyne incognita under in vitro. International Journal of Current Microbiology and Applied Sciences, 6 (11): 2511-2517.
  • Meyer, S. L., 2003. United States Department of Agriculture-Agricultural Research Service research programs on microbes for management of plant‐parasitic nematodes. Pest Management Science: Formerly Pesticide Science, 59 (6‐7): 665-670.
  • Mukhtar, T., M. Z. Kayani & M. A. Hussain, 2013. Nematicidal activities of Cannabis sativa L. and Zanthoxylum alatum Roxb. against Meloidogyne incognita. Industrial Crops and Products, 42: 447-453.
  • Naika, S., J. V. L. De Jeude, M. De Goffau, M. Hilmi & B. Van Dam, 2005. Cultivation of Tomato. Digigrafi, Wageningen, Netherlands, 92 pp.
  • Netscher, C. & R. A. Sikora, 1990. “Nematode Parasites of Vegetables, 237-283”. In: Plant Parasitic Nematodes in Subtropical and Tropical Agriculture (Eds. M. Luc, R. Sikora & J. Bridge). CABI International, Wallingford, UK, 629 pp.
  • Niazi, P., 2024. Isolation and Characterization of a (Surfactin-Like Molecule) Produced by Bacillus subtilis: Antagonistic Impact on Root-Knot Nematodes. Scientific Research Communications, 4 (2): 132-149.
  • Rajasekharan, S. K., S. Kim, J. C. Kim & J. Lee, 2020. Nematicidal activity of 5-iodoindole against root-knot nematodes. Pesticide Biochemistry and Physiology, 163: 76-83.
  • Ramalakshmi, A., R. Sharmila, M. Iniyakumar & V. Gomathi, 2020. Nematicidal activity of native Bacillus thuringiensis against the root knot nematode, Meloidogyne incognita (Kofoid and White). Egyptian Journal of Biological Pest Control, 30 (1): 1-9.
  • Siddiqui, Z. A. & I. Mahmood, 1999. Role of bacteria in the management of plant parasitic nematodes: A review. Bioresource Technology, 69 (2): 167-179.
  • Sikora, R. A., 1992. Management of the antagonistic potential in agricultural ecosystems for the biological control of plant parasitic nematodes. Annual Review of Phytopathology, 30 (1): 245-270.
  • Singh, S., B. Singh & A. P. Singh, 2015. Nematodes: A threat to sustainability of agriculture. Procedia Environmental Sciences, 29: 215-216.
  • Tian, B., J. Yang & K. Q. Zhang, 2007. Bacteria used in the biological control of plant-parasitic nematodes: Populations, mechanisms of action, and future prospects. FEMS Microbiology Ecology, 61 (2): 197-213.
  • Xiao, L., J. W. Wan, J. H. Yao, H. Feng & L. H. Wei, 2018. Effects of Bacillus cereus strain Jdm1 on Meloidogyne incognita and the bacterial community in tomato rhizosphere soil. 3 Biotech, 8 (8): 319 (1-8).
  • Yanyan, F. U., Z. H. A. N. G. Jie, Z. H. U. Wenqian, X. I. A. Mingcong, S. U. N. Runhong, X. U. Wen & L. I. Dongmei, 2023. Identification and mechanism of strain YB-1503 for biological control of Meloidogyne incognita. Chinese Journal of Biological Control, 39 (2): 429-437.
  • Zeck, W. M., 1971. A Rating scheme for field evaluation of root-knot nematode infestation. Pflanzenschutz Nachrichten, 10: 141-144.
  • Zheng, Y. K., X. G. Qiao, C. P. Miao, K. Liu, Y. W. Chen, L. H. Xu & L. X. Zhao, 2016. Diversity, distribution and biotechnological potential of endophytic fungi. Annals of Microbiology, 66 (2): 529-542.

The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants

Yıl 2025, Cilt: 49 Sayı: 1, 19 - 26

Öz

In recent years, biopesticides have been widely investigated for the control of plant parasitic nematodes (PPN). In this study, the effects of Bacillus-based biopesticides on the root-knot nematode (Meloidogyne incognita) (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) were investigated. The study was conducted at the Nematology Laboratory and Growth Room of the Department of Plant Protection, Faculty of Agriculture, Bolu Abant İzzet Baysal University in 2023. The efficacy of Bacillus subtilis (Biopesticide-I), Bacillus licheniformis strain RTI184 (Biopesticide-II) and Paecilomyces lilacinus strain 251 (Biopesticide-III) was compared with chemical nematicides and an untreated control. Treatments were applied at different times: (A) 5-7 days before transplanting, (B) at transplant by drench, (C) just after transplanting, and (D) 14 days after transplanting (DAT). The lowest gal formation was observed in Biopesticide-III + Nematicide-II (CD) treatment (0.40±0.24), followed by Nematicide-I (CD) (3.40±0.24) and Biopesticide-I (BD) (4.20±0.37), while the highest was observed in Biopesticide-I (CD) (5.00±0.31). The number of second-stage juveniles was significantly reduced by Biopesticide-III + Nematicide-II (CD) (99.76%), Nematicide-I (CD) (70.29%) and Biopesticide-I (BD) (57.36%). The results indicate that Bacillus-based biopesticides are effective in reducing root-knot nematode damage and can be used to control M. incognita in tomato plants.

Kaynakça

  • Aballay, E., S. Prodan, A. Mårtensson & P. Persson, 2012. Assessment of rhizobacteria from grapevine for their suppressive effect on the parasitic nematode Xiphinema index. Crop Protection, 42: 36-41.
  • Abd-Elgawad, M. M., 2021. Biological control of nematodes infecting eggplant in Egypt. Bulletin of the National Research Centre, 45 (1): 1-9.
  • Arora, R., G. S. Battu & D. S. Bath, 2000. Management of insect pests of cauliflower with biopesticides. Indian Journal of Ecology, 27 (2): 156-162.
  • Blok, V. C., J. T. Jones, M. S. Phillips & D. L. Trudgill, 2008. Parasitism genes and host range disparities in biotrophic nematodes: the conundrum of polyphagy versus specialisation. BioEssays, 30 (3): 249-259.
  • Burkett-Cadena, M., N. Kokalis-Burelle, K. S. Lawrence, E. Van Santen & J. W. Kloepper, 2008. Suppressiveness of root-knot nematodes mediated by rhizobacteria. Biological Control, 47 (1): 55-59.
  • Colagiero, M., L. C. Rosso & A. Ciancio, 2018. Diversity and biocontrol potential of bacterial consortia associated to root-knot nematodes. Biological Control, 120: 11-16.
  • Collange, B., M. Navarrete, G. Peyre, T. Mateille & M. Tchamitchian, 2011. Root-knot nematode (Meloidogyne) management in vegetable crop production: The challenge of an agronomic system analysis. Crop Protection, 30 (10): 1251-1262.
  • Elling, A. A., 2013. Major emerging problems with minor Meloidogyne species. Phytopathology, 103 (11): 1092-1102.
  • Freitas, L. G., W. S. Neves, C. F. S. Fabry, B. M. Marra, M. M. Coutinho, R. S. Romeiro & S. Ferraz, 2005. Isolation and selection of rhizobacteria for the control of root-knot nematodes, Meloidogyne spp. on tomato. Nematologia Brasileira, 29 (2): 215-220.
  • Giannakou, I. O. & I. Anastasiadis, 2005. Evaluation of chemical strategies as alternatives to methyl bromide for the control of root-knot nematodes in greenhouse cultivated crops. Crop Protection, 24 (6): 499-506.
  • Hallmann, J., K. G. Davies & R. Sikora, 2009. “Biological Control Using Microbial Pathogens, Endophytes and Antagonists, 380-411” In: Root-Knot Nematodes (Eds. R. N. Perry, M. Moens & J. L. Starr). CABI International, Wallingford, UK, 488 pp.
  • Hooper, D. J., 1986. “Extraction of Nematodes from Plant Material, 59-80”. In: Laboratory Methods for Work with Plants and Soil Nematodes (Eds. J. F. Southey). Ministry of Agriculture, Fisheries and Food, London, UK, 202 pp.
  • Huang, K., Q. Jiang, L. Liu, S. Zhang, C. Liu, H. Chen & Y. Zhang, 2020. Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes. AMB Express, 10: 72 (1-11).
  • Hunt, D. J. & Z. A. Handoo, 2009. “Taxonomy, Identification and Principal Species, 55-97” In: Root-Knot Nematodes (Eds. R. N. Perry, M. Moens & J. L. Starr). CABI International, Wallingford, UK, 488 pp.
  • Jordan, S., 2018. Yield to the resistance: The impact of nematode resistant varieties on alfalfa yield. Natural Resource Modeling, 31 (2): 1-11.
  • Kerry, B. R., 2000. Rhizosphere interactions and the exploitation of microbial agents for the biological control of plant-parasitic nematodes. Annual Review of Phytopathology, 38 (1): 423-441.
  • Khan, A., A. Khan, A. Ali, S. Fatima & M. A. Siddiqui, 2023. Root-knot nematodes (Meloidogyne spp.): Biology, plant-nematode interactions and their environmentally benign management strategies. Gesunde Pflanzen, 75 (6): 1-19.
  • Lunt, D. H., S. Kumar, G. Koutsovoulos & M. L. Blaxter, 2014. The complex hybrid origins of the root knot nematodes revealed through comparative genomics. PeerJ - Life & Environment, 2: e356 (1-25).
  • Mahesha, H. S., N. G. Ravichandra, M. S. Rao, N. C. Narasegowda, S. Shreeshail & H. Shivalingappa, 2017. Bio-efficacy of different strains of Bacillus spp. against Meloidogyne incognita under in vitro. International Journal of Current Microbiology and Applied Sciences, 6 (11): 2511-2517.
  • Meyer, S. L., 2003. United States Department of Agriculture-Agricultural Research Service research programs on microbes for management of plant‐parasitic nematodes. Pest Management Science: Formerly Pesticide Science, 59 (6‐7): 665-670.
  • Mukhtar, T., M. Z. Kayani & M. A. Hussain, 2013. Nematicidal activities of Cannabis sativa L. and Zanthoxylum alatum Roxb. against Meloidogyne incognita. Industrial Crops and Products, 42: 447-453.
  • Naika, S., J. V. L. De Jeude, M. De Goffau, M. Hilmi & B. Van Dam, 2005. Cultivation of Tomato. Digigrafi, Wageningen, Netherlands, 92 pp.
  • Netscher, C. & R. A. Sikora, 1990. “Nematode Parasites of Vegetables, 237-283”. In: Plant Parasitic Nematodes in Subtropical and Tropical Agriculture (Eds. M. Luc, R. Sikora & J. Bridge). CABI International, Wallingford, UK, 629 pp.
  • Niazi, P., 2024. Isolation and Characterization of a (Surfactin-Like Molecule) Produced by Bacillus subtilis: Antagonistic Impact on Root-Knot Nematodes. Scientific Research Communications, 4 (2): 132-149.
  • Rajasekharan, S. K., S. Kim, J. C. Kim & J. Lee, 2020. Nematicidal activity of 5-iodoindole against root-knot nematodes. Pesticide Biochemistry and Physiology, 163: 76-83.
  • Ramalakshmi, A., R. Sharmila, M. Iniyakumar & V. Gomathi, 2020. Nematicidal activity of native Bacillus thuringiensis against the root knot nematode, Meloidogyne incognita (Kofoid and White). Egyptian Journal of Biological Pest Control, 30 (1): 1-9.
  • Siddiqui, Z. A. & I. Mahmood, 1999. Role of bacteria in the management of plant parasitic nematodes: A review. Bioresource Technology, 69 (2): 167-179.
  • Sikora, R. A., 1992. Management of the antagonistic potential in agricultural ecosystems for the biological control of plant parasitic nematodes. Annual Review of Phytopathology, 30 (1): 245-270.
  • Singh, S., B. Singh & A. P. Singh, 2015. Nematodes: A threat to sustainability of agriculture. Procedia Environmental Sciences, 29: 215-216.
  • Tian, B., J. Yang & K. Q. Zhang, 2007. Bacteria used in the biological control of plant-parasitic nematodes: Populations, mechanisms of action, and future prospects. FEMS Microbiology Ecology, 61 (2): 197-213.
  • Xiao, L., J. W. Wan, J. H. Yao, H. Feng & L. H. Wei, 2018. Effects of Bacillus cereus strain Jdm1 on Meloidogyne incognita and the bacterial community in tomato rhizosphere soil. 3 Biotech, 8 (8): 319 (1-8).
  • Yanyan, F. U., Z. H. A. N. G. Jie, Z. H. U. Wenqian, X. I. A. Mingcong, S. U. N. Runhong, X. U. Wen & L. I. Dongmei, 2023. Identification and mechanism of strain YB-1503 for biological control of Meloidogyne incognita. Chinese Journal of Biological Control, 39 (2): 429-437.
  • Zeck, W. M., 1971. A Rating scheme for field evaluation of root-knot nematode infestation. Pflanzenschutz Nachrichten, 10: 141-144.
  • Zheng, Y. K., X. G. Qiao, C. P. Miao, K. Liu, Y. W. Chen, L. H. Xu & L. X. Zhao, 2016. Diversity, distribution and biotechnological potential of endophytic fungi. Annals of Microbiology, 66 (2): 529-542.
Toplam 34 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Nematoloji
Bölüm Makaleler
Yazarlar

İbrahim Yılmaz 0009-0000-5643-2329

Furkan Ulaş 0009-0002-3052-4457

Mustafa Imren 0000-0002-7217-9092

Erken Görünüm Tarihi 5 Nisan 2025
Yayımlanma Tarihi
Gönderilme Tarihi 16 Ocak 2025
Kabul Tarihi 4 Nisan 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 49 Sayı: 1

Kaynak Göster

APA Yılmaz, İ., Ulaş, F., & Imren, M. (2025). The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants. Turkish Journal of Entomology, 49(1), 19-26. https://doi.org/10.16970/entoted.1621229
AMA Yılmaz İ, Ulaş F, Imren M. The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants. TED. Nisan 2025;49(1):19-26. doi:10.16970/entoted.1621229
Chicago Yılmaz, İbrahim, Furkan Ulaş, ve Mustafa Imren. “The Effect of Some Biopesticides on the Root-Knot Nematode, Meloidogyne Incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) Damaging Tomato Plants”. Turkish Journal of Entomology 49, sy. 1 (Nisan 2025): 19-26. https://doi.org/10.16970/entoted.1621229.
EndNote Yılmaz İ, Ulaş F, Imren M (01 Nisan 2025) The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants. Turkish Journal of Entomology 49 1 19–26.
IEEE İ. Yılmaz, F. Ulaş, ve M. Imren, “The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants”, TED, c. 49, sy. 1, ss. 19–26, 2025, doi: 10.16970/entoted.1621229.
ISNAD Yılmaz, İbrahim vd. “The Effect of Some Biopesticides on the Root-Knot Nematode, Meloidogyne Incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) Damaging Tomato Plants”. Turkish Journal of Entomology 49/1 (Nisan 2025), 19-26. https://doi.org/10.16970/entoted.1621229.
JAMA Yılmaz İ, Ulaş F, Imren M. The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants. TED. 2025;49:19–26.
MLA Yılmaz, İbrahim vd. “The Effect of Some Biopesticides on the Root-Knot Nematode, Meloidogyne Incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) Damaging Tomato Plants”. Turkish Journal of Entomology, c. 49, sy. 1, 2025, ss. 19-26, doi:10.16970/entoted.1621229.
Vancouver Yılmaz İ, Ulaş F, Imren M. The effect of some biopesticides on the root-knot nematode, Meloidogyne incognita (Kofoid & White, 1919) Chitwood, 1949 (Tylenchida: Meloidogynidae) damaging tomato plants. TED. 2025;49(1):19-26.