Research Article
BibTex RIS Cite

Tekirdağ, Türkiye'deki Mısır Tarlalarında Nematodların Görülme Sıklığı ve Popülasyon Yoğunluğu

Year 2025, Volume: 35 Issue: 1, 51 - 61, 30.06.2025
https://doi.org/10.18615/anadolu.1594826

Abstract

Tekirdağ’da (Türkiye) mısır (Zea mays L.) yetiştirme alanlarında nematod biyoçeşitliliğini belirlemek amacıyla bir çalışma yapılmıştır. Bu amaçla Malkara, Şarköy, Süleymanpaşa ve Hayrabolu'daki mısır tarlaları incelenmiş ve 0-60 cm toprak derinliğinden toplam 62 tarladan toprak örneği alınmıştır. Nematodlar, 475 g/L şeker çözeltisi kullanılarak yapılan santrifüj flotasyon yöntemiyle izole edilmiştir. Nematodların teşhisi teşhis anahtarları kullanılarak yapılmıştır. Çalışmada 30 nematod cinsi tespit edilmiş olup, bu cinsler arasında 11’i bitki paraziti, 3’ü fungus ile beslenen, 9’u bakteri ile beslenen, 5’i omnivor ve 2’si predatör olarak belirlenmiştir. Çalışmada teşhis edilen bazı bitki paraziti türler arasında Ditylenchus dipsaci, Helicotylenchus digonicus, H. varicaudatus, Pratylenchus penetrans, P. thornei, P. neglectus, Paratylenchus nainianus, Rotylenchus cypriensis ve Tylenchorhynchus annulatus yer almıştır. Aphelenchus (Aphelenchida: Aphelenchidae), Cephalobus (Rhabditida: Cephalobidae), Filenchus (Tylenchida: Tylenchidae), ve Geocenamus (Tylenchida: Merliniidae) en yoğun ve yaygın cinsler olup, XLSTAT ile oluşturulan yoğunluk haritası nematod bolluğunu temsil etmektedir. Bu çalışma Tekirdağ ilindeki mısır tarlalarındaki nematod çeşitliliği üzerine yapılan en güncel taksonomik çalışmadır.

References

  • Abolafia, J. and R. Peña-Santiago. 1996. Nematodes of the order Dorylaimida from Andalucia Oriental, Spain. The genus Mesodorylaimus Andrassy, 1959. I. Two short-tailed new species. Russian Journal of Nematology 4: 173-180.
  • Anderson, R.V. 1979. A supplemental key to species Helicotylenchus Steiner, 1945 (Nematoda: Hoplolaimidae) described since 1972 and a description of H. oscephalus n. sp. Canadian Journal of Zoology 57: 337–342.
  • Barker, K. R., G. A. Pederson, G. L. Windham 1998.American Society of Agronomy, Crop Science Society of America, & Soil Science Society of America. Plant and nematode interactions. American Society of Agronomy: Crop Science Society of America: Soil Science Society of America. https://doi.org/10.2134/agronmonogr36
  • Bernard, E. C. 1980 Identification, Distribution, and Plant Associations of Plant-Parasitic Nematodes in Tennessee. Bulletins. https://trace.tennessee.edu/utk_agbulletin/408
  • Bongers, R. 1990. The maturity index: An ecological measure of environmental disturbance based on nematode species composition. Oecologia 83: 14-19.
  • Bora, T., İ. Karaca. 1970. Kültür Bitkilerinde Hastalığın ve Zararın Ölçülmesi. Ege Üniversitesi Zir. Fak. Yardımcı Ders Kitabı. No: 167.
  • Čerevková, A., D. Miklisová, M. Szoboszlay, C. C. Tebbe, and Ľ. Cagáň. 2018. The responses of soil nematode communities to Bt maize cultivation at four field sites across Europe. Soil Biology and Biochemistry 119: 194-202.
  • Choudhary, M. and S. M. Jairajpuri. 1984. Six new species of the genus Alaimus de Man, 1880 (Nernatoda : Alaimidae) frorn India. Revue Nématologie 7(2): 287-300.
  • De Man, J.G. 1876. Onderzoekingen over vrij in de aarde levende Nematoden. Tijdschrift Nederlandsche voor de Dierkunde Vereen 2:78-196.
  • FAO. 2022. GAEZ v. 4 Data Portal. In: FAO [https://gaez.fao.org]. Rome. https://gaez.fao.org/pages/crop-summary
  • Ferris, H., R. C. Venette, and B. S. Sipes 2001. Nematode community structure as an indicator of soil health. In: Soil Health and Land Use Management 185-207.
  • Geraert, E., and D. J. Raski. 1987. A reappraisal of Tylenchina (Nemata). Revue Nematologia 10(2): 143–161.
  • Govaerts, B., M. Fuentes, M. Mezzalama, J. Nicol, J.Deckers, J. Etchevers, B. Figueroa, and K. Sayre. 2007. Infiltration, soil moisture, root rot and nematode populations after 12 years of different tillage, residue and crop rotation managements. Soil and Tillage Research 94: 209-219. 10.1016/j.still.2006.07.013.
  • Gök, İ., and M. Şahin 2024. Econometric Analysis of Corn Production in Türkiye. Journal of Agricultural Faculty of Gaziosmanpaşa University (JAFAG) 41(2): 33-39. https://doi.org/10.55507/gopzfd.1288261
  • Hafez, S. L., P. Sundararaj, Z. A. Handoo, and R. M. Siddiqi. 2010. Occurrence and distribution of nematodes in Idaho crops. International Journal of Nematology 20: 91-98.
  • Han, J., A. L. Colgrove, N. D. Bowman, N. E. Schroeder, and N. M. Kleczewski. 2021. A survey of plant-parasitic nematodes in Illinois corn fields, 2018 and 2020. Plant Health Progress 22(4): 560-564.
  • Handoo, Z. A., A. Khan, and S. Islam 2007. A key and diagnostic compendium to the species of the genus Merlinius Siddiqi, 1970 (Nematoda: Tylenchida) with description of Merlinius khuzdarensis n. sp. associated with date palm. Nematology 9: 251-260. DOI: 10.1163/156854107780739045.
  • Handoo, Z.A. and A.M. Golden. 1989. A key and diagnostic compendium to the species of the genus Pratylenchus Filipjev, 1936 (lesion nematodes). Journal of Nematology 21: 202–218.
  • Indarti, S., R. Maharani, T. Taryono, D. W. Dirk. 2023. Detection of the stunt nematode Tylenchorhynchus annulatus in the rhizosphere of rice and corn in Indonesia. Australasian Plant Disease Notes 18 (1):1. https://doi.org/10.1007/s13314-023-00488-0
  • Ingham, R. E., J. A. Trofymow, E. R. Ingham, and D. C. Coleman. 1985. Interactions of bacteria, fungi, and their nematode grazers: Effects on nutrient cycling and plant growth. Ecological Monographs 55(1): 119-140.
  • Jenkins, W. R. 1964. Rapid centrifugal-flotation technique for separating nematodes from soil. Plant Dis. Rep., 48:692.
  • Karadeniz, E., 2019. The Status of Corn Silage in Turkey and Its Importance in Animal Nutrition. ISPEC Journal of Agricultural Sciences 3(1): 170–175.
  • Khan, A., S. S. Shaukat, B. Nawab, K. A. Khanzada, and M. S. Solangi. 2009. Management of nematodes associated with maize (Zea mays L.) using organic and inorganic amendments. Pakistan J. Agric. Res. 22(3 – 4): 165 – 167.
  • Loof, P. A. A. and M. Luc. 1990. A revised polytomous key for the identification of species of the genus Xiphinema Cobb,1913 (Nematoda: Longidoridae) with exclusion of the X. americanum-group.Systematic Parasitology, 16: 36–66.
  • Loof, P. A. A., and M. S. Jairajpuri. 1968. Taxonomic studies on the genus Tylencholaimus de Man, 1876 (Dorylaimoidea) with a key to the species Nematologica 14 (3). pp.
  • Maina, S., H. Karuri, and R. N. Ng'endo. 2021 Free-living nematode assemblages associated with maize residues and their ecological significance. J Nematol. 1: 53:e2021-38. doi: 10.21307/jofnem-2021-038. PMID: 33860265; PMCID: PMC8040138.
  • Maina, S., H. Karuri, and R.N. Ng’endo. 2019. Nematode soil food webs in maize agroecosystems and their implication on plant-parasitic nematodes. Phytoparasitica 47: 743–758. https://doi.org/10.1007/s12600-019-00769-4
  • Okada, H., and H. Harada. 2007. Effects of tillage and fertilizer on nematode communities in a Japanese soybean field. Appl. Soil Ecol. 35: 582 – 598
  • Okada, H., H. Harada, and I. Kadota. 2005. Fungal-feeding habits of six nematode isolates in the genus Filenchus. Soil Biology and Biochemistry. 37(6): 1113-1120. https://doi.org/10.1016/j.soilbio.2004.11.010
  • Perper, T., and R. Petriello. 1977. Population growth patterns of four species of aphelenchoides on fungi. J Nematol. 9(4): 301-6. PMID: 19305612; PMCID: PMC2620260.
  • Scholze, V.S., and W. Sudhaus. 2011. A pictorial key to current genus groups of 'Rhabditidae'. Journal of nematode morphology and systematics 14: 105-112.
  • Seinhorst, J. W. 1959. A rapid method for the transfer of nematodes from fixative to anhydrous glycerin. Nematologica 4: 67–69.
  • Siddiqi, M. R. 2000. Tylenchida: parasites of plants and insects. CAB International, Wallingford, UK. p. 833.
  • Sikandar, A., T. A. Khanum, and Y. Wang. 2021. Biodiversity and community analysis of plant-parasitic and free-living nematodes associated with maize and other rotational crops from Punjab, Pakistan. Life (Basel). 11(12): 1426. doi: 10.3390/life11121426. PMID: 34947957; PMCID: PMC8706526.
  • Simon, A. C. M., H. D. Lopez-Nicora, T. L. Niblack, E. A. Dayton, D. Tomashefski, and P. A. Paul. 2018. Cropping practices and soil properties associated with plant-parasitic nematodes in corn fields in Ohio. Plant disease 102(12), 2519-2530.
  • Simon, A. C. M., H. D. Lopez-Nicora, T. I. Ralston, E. A. Richer, T. L. Niblack, P. A. Paul. 2020. First report of stunt nematode (Tylenchorhynchus annulatus) on corn in Ohio. Plant disease 12(1): 104 :2527. doi: 10.1094/PDIS-02-20-0429-PDN.
  • Singh, R. 2015. Plant parasitic nematodes: The hidden enemies of farmers. 10.13140/RG.2.1.2994.7763.
  • Smiley, R. W., R. G. Whittaker, J. A. Gourlie, and S. A. Easle. 2006. Geocenamus brevidens associated with reduced yield of no-till annual spring wheat in Oregon. Plant Dis. 90:885-890.
  • Taher, I. E., S. N. Ami, R. A. Haleem, and B. Shareef 2017. First record of mycetophagous nematode Aphelenchus avenae in Iraq with description and testing their propagatıon on different fungus culture. Bulletin of The Iraq Natural History Museum 14: 251-259. 10.26842/binhm.7.2017.14.3.0251.
  • Thapa, S., E. Darling, E. Cole, K. Poley, and M. Quintanilla. 2023. Distribution of plant-parasitic nematodes in michigan corn fields. J Nematol. 55(1):20230015. doi: 10.2478/jofnem-2023-0015.
  • Todd, T.C. 2016. Diseases caused by nematodes. pp. 117–129. In: Munkvold, G.P. and White, D.G. (eds) Compendiumof maize diseases, Fourth Edition. The American Phytopathological Society, Eagan, Minnesota, USA.
  • Tran, V. D., V. L. Vu, H. T. Nguyen, and Q. P. Trinh. 2024. An updated species list of the genus Rotylenchus (Nematoda: Hoplolaimidae) and a browser-based interactive key for species identification. Australasian Plant Pathol. 53: 79–88. https://doi.org/10.1007/s13313-023-00962-4
  • TURKSTAT. 2023. Turkish Statistical Institute. URL: https://biruni.tuik.gov.tr/medas/?locale=tr (accessed: October 11, 2024).
  • USDA-ERS. 2021. International Baseline Data. International Long-Term Projections to 2030. Available from: https://www.ers.usda.gov/data-products/international-baseline-
  • Wang, J., X. Hu. 2021. Research on corn production efficiency and influencing factors of typical farms: Based on data from 12 corn-producing countries from 2012 to 2019. PLoS One 16(7):e0254423. doi: 10.1371/journal.pone.0254423. PMID: 34242362; PMCID: PMC8270196.
  • Wood, F.H. 1973. Nematode feeding relationships: Feeding relationships of soil-dwelling nematodes. Soil Riol. Biochem. 5: 593-601.
  • Wu, W.J., L. Yan, C.Xu, K. Wang, S. Y. Jin, and J. Xie. 2016. A new species of the genus Discolaimus Cobb, 1913 (Nematoda: Dorylaimida: Qudsianematidae) from Qinghai, China. Zootaxa 4088: 129. 10.11646/zootaxa.4088.1.6.
  • Xia, Y.H., Y.K. Liu, P.H. Hao, H.X. Yuan, K. Wang, H.L. Li, Y. Li. 2021. Molecular and morphological characterization of the root-lesion nematode, Pratylenchus neglectus, on corn from Henan province of China. Helminthologia 58(4):385-393. doi: 10.2478/helm-2021-0044. PMID: 35095314; PMCID: PMC8776298.
  • Yadav, S., J. Patil, and R. Kanwar. 2018. The role of free-living nematode population in the organic matter recycling. International Journal of Current Microbiology and Applied Sciences 7: 2726-2734. 10.20546/ijcmas.2018.706.321.
  • Yeates, G. W., T. Bongers, R. G. M. De Goede, D. W. Freckman, and S. S. Georgieva. 1993. Feeding habits in soil nematode families and genera—An outline for soil ecologists. Journal of Nematology 25: 315-331.
  • Yıldız, E., U. Gözel. 2022. Determination of plant parasitic nematode species ın corn cultivation areas of Canakkale Province. MAS Journal of Applied Sciences 7(3): 763–768. https://doi.org/10.5281/zenodo.6952680

Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye

Year 2025, Volume: 35 Issue: 1, 51 - 61, 30.06.2025
https://doi.org/10.18615/anadolu.1594826

Abstract

This study was conducted to determine the nematode biodiversity in corn (Zea mays L.) growing areas in Tekirdağ, Türkiye. For this purpose, corn fields in Malkara, Şarköy, Süleymanpaşa, and Hayrabolu were surveyed, and a total of 62 soil samples were collected from a soil depth of 0-60 cm. Nematodes were isolated by centrifugal flotation using 475 g/L sugar solution. Nematode identifications were made using polytomous keys. In the study, 30 nematode genera were identified, and among these genera, 11 were plant parasites, three were fungal feeders, nine were bacterial feeders, five were omnivores, and two were predators. Some of the plant parasitic species identified in the study included Ditylenchus dipsaci, Helicotylenchus digonicus, H. varicaudatus, Pratylenchus penetrans, P. thornei, P. neglectus, Paratylenchus nainianus, Rotylenchus cypriensis, and Tylenchorhynchus annulatus. Among all Aphelenchus (Aphelenchida: Aphelenchidae), Cephalobus (Rhabditida: Cephalobidae), Filenchus (Tylenchida: Tylenchidae), and Geocenamus (Tylenchida: Merliniidae) were the most abundant and common genera and the heat map generated with XLSTAT represents the nematode abundance. To the best of our knowledge, this is the most recent taxonomic study on nematode diversity in corn fields in Tekirdağ province.

References

  • Abolafia, J. and R. Peña-Santiago. 1996. Nematodes of the order Dorylaimida from Andalucia Oriental, Spain. The genus Mesodorylaimus Andrassy, 1959. I. Two short-tailed new species. Russian Journal of Nematology 4: 173-180.
  • Anderson, R.V. 1979. A supplemental key to species Helicotylenchus Steiner, 1945 (Nematoda: Hoplolaimidae) described since 1972 and a description of H. oscephalus n. sp. Canadian Journal of Zoology 57: 337–342.
  • Barker, K. R., G. A. Pederson, G. L. Windham 1998.American Society of Agronomy, Crop Science Society of America, & Soil Science Society of America. Plant and nematode interactions. American Society of Agronomy: Crop Science Society of America: Soil Science Society of America. https://doi.org/10.2134/agronmonogr36
  • Bernard, E. C. 1980 Identification, Distribution, and Plant Associations of Plant-Parasitic Nematodes in Tennessee. Bulletins. https://trace.tennessee.edu/utk_agbulletin/408
  • Bongers, R. 1990. The maturity index: An ecological measure of environmental disturbance based on nematode species composition. Oecologia 83: 14-19.
  • Bora, T., İ. Karaca. 1970. Kültür Bitkilerinde Hastalığın ve Zararın Ölçülmesi. Ege Üniversitesi Zir. Fak. Yardımcı Ders Kitabı. No: 167.
  • Čerevková, A., D. Miklisová, M. Szoboszlay, C. C. Tebbe, and Ľ. Cagáň. 2018. The responses of soil nematode communities to Bt maize cultivation at four field sites across Europe. Soil Biology and Biochemistry 119: 194-202.
  • Choudhary, M. and S. M. Jairajpuri. 1984. Six new species of the genus Alaimus de Man, 1880 (Nernatoda : Alaimidae) frorn India. Revue Nématologie 7(2): 287-300.
  • De Man, J.G. 1876. Onderzoekingen over vrij in de aarde levende Nematoden. Tijdschrift Nederlandsche voor de Dierkunde Vereen 2:78-196.
  • FAO. 2022. GAEZ v. 4 Data Portal. In: FAO [https://gaez.fao.org]. Rome. https://gaez.fao.org/pages/crop-summary
  • Ferris, H., R. C. Venette, and B. S. Sipes 2001. Nematode community structure as an indicator of soil health. In: Soil Health and Land Use Management 185-207.
  • Geraert, E., and D. J. Raski. 1987. A reappraisal of Tylenchina (Nemata). Revue Nematologia 10(2): 143–161.
  • Govaerts, B., M. Fuentes, M. Mezzalama, J. Nicol, J.Deckers, J. Etchevers, B. Figueroa, and K. Sayre. 2007. Infiltration, soil moisture, root rot and nematode populations after 12 years of different tillage, residue and crop rotation managements. Soil and Tillage Research 94: 209-219. 10.1016/j.still.2006.07.013.
  • Gök, İ., and M. Şahin 2024. Econometric Analysis of Corn Production in Türkiye. Journal of Agricultural Faculty of Gaziosmanpaşa University (JAFAG) 41(2): 33-39. https://doi.org/10.55507/gopzfd.1288261
  • Hafez, S. L., P. Sundararaj, Z. A. Handoo, and R. M. Siddiqi. 2010. Occurrence and distribution of nematodes in Idaho crops. International Journal of Nematology 20: 91-98.
  • Han, J., A. L. Colgrove, N. D. Bowman, N. E. Schroeder, and N. M. Kleczewski. 2021. A survey of plant-parasitic nematodes in Illinois corn fields, 2018 and 2020. Plant Health Progress 22(4): 560-564.
  • Handoo, Z. A., A. Khan, and S. Islam 2007. A key and diagnostic compendium to the species of the genus Merlinius Siddiqi, 1970 (Nematoda: Tylenchida) with description of Merlinius khuzdarensis n. sp. associated with date palm. Nematology 9: 251-260. DOI: 10.1163/156854107780739045.
  • Handoo, Z.A. and A.M. Golden. 1989. A key and diagnostic compendium to the species of the genus Pratylenchus Filipjev, 1936 (lesion nematodes). Journal of Nematology 21: 202–218.
  • Indarti, S., R. Maharani, T. Taryono, D. W. Dirk. 2023. Detection of the stunt nematode Tylenchorhynchus annulatus in the rhizosphere of rice and corn in Indonesia. Australasian Plant Disease Notes 18 (1):1. https://doi.org/10.1007/s13314-023-00488-0
  • Ingham, R. E., J. A. Trofymow, E. R. Ingham, and D. C. Coleman. 1985. Interactions of bacteria, fungi, and their nematode grazers: Effects on nutrient cycling and plant growth. Ecological Monographs 55(1): 119-140.
  • Jenkins, W. R. 1964. Rapid centrifugal-flotation technique for separating nematodes from soil. Plant Dis. Rep., 48:692.
  • Karadeniz, E., 2019. The Status of Corn Silage in Turkey and Its Importance in Animal Nutrition. ISPEC Journal of Agricultural Sciences 3(1): 170–175.
  • Khan, A., S. S. Shaukat, B. Nawab, K. A. Khanzada, and M. S. Solangi. 2009. Management of nematodes associated with maize (Zea mays L.) using organic and inorganic amendments. Pakistan J. Agric. Res. 22(3 – 4): 165 – 167.
  • Loof, P. A. A. and M. Luc. 1990. A revised polytomous key for the identification of species of the genus Xiphinema Cobb,1913 (Nematoda: Longidoridae) with exclusion of the X. americanum-group.Systematic Parasitology, 16: 36–66.
  • Loof, P. A. A., and M. S. Jairajpuri. 1968. Taxonomic studies on the genus Tylencholaimus de Man, 1876 (Dorylaimoidea) with a key to the species Nematologica 14 (3). pp.
  • Maina, S., H. Karuri, and R. N. Ng'endo. 2021 Free-living nematode assemblages associated with maize residues and their ecological significance. J Nematol. 1: 53:e2021-38. doi: 10.21307/jofnem-2021-038. PMID: 33860265; PMCID: PMC8040138.
  • Maina, S., H. Karuri, and R.N. Ng’endo. 2019. Nematode soil food webs in maize agroecosystems and their implication on plant-parasitic nematodes. Phytoparasitica 47: 743–758. https://doi.org/10.1007/s12600-019-00769-4
  • Okada, H., and H. Harada. 2007. Effects of tillage and fertilizer on nematode communities in a Japanese soybean field. Appl. Soil Ecol. 35: 582 – 598
  • Okada, H., H. Harada, and I. Kadota. 2005. Fungal-feeding habits of six nematode isolates in the genus Filenchus. Soil Biology and Biochemistry. 37(6): 1113-1120. https://doi.org/10.1016/j.soilbio.2004.11.010
  • Perper, T., and R. Petriello. 1977. Population growth patterns of four species of aphelenchoides on fungi. J Nematol. 9(4): 301-6. PMID: 19305612; PMCID: PMC2620260.
  • Scholze, V.S., and W. Sudhaus. 2011. A pictorial key to current genus groups of 'Rhabditidae'. Journal of nematode morphology and systematics 14: 105-112.
  • Seinhorst, J. W. 1959. A rapid method for the transfer of nematodes from fixative to anhydrous glycerin. Nematologica 4: 67–69.
  • Siddiqi, M. R. 2000. Tylenchida: parasites of plants and insects. CAB International, Wallingford, UK. p. 833.
  • Sikandar, A., T. A. Khanum, and Y. Wang. 2021. Biodiversity and community analysis of plant-parasitic and free-living nematodes associated with maize and other rotational crops from Punjab, Pakistan. Life (Basel). 11(12): 1426. doi: 10.3390/life11121426. PMID: 34947957; PMCID: PMC8706526.
  • Simon, A. C. M., H. D. Lopez-Nicora, T. L. Niblack, E. A. Dayton, D. Tomashefski, and P. A. Paul. 2018. Cropping practices and soil properties associated with plant-parasitic nematodes in corn fields in Ohio. Plant disease 102(12), 2519-2530.
  • Simon, A. C. M., H. D. Lopez-Nicora, T. I. Ralston, E. A. Richer, T. L. Niblack, P. A. Paul. 2020. First report of stunt nematode (Tylenchorhynchus annulatus) on corn in Ohio. Plant disease 12(1): 104 :2527. doi: 10.1094/PDIS-02-20-0429-PDN.
  • Singh, R. 2015. Plant parasitic nematodes: The hidden enemies of farmers. 10.13140/RG.2.1.2994.7763.
  • Smiley, R. W., R. G. Whittaker, J. A. Gourlie, and S. A. Easle. 2006. Geocenamus brevidens associated with reduced yield of no-till annual spring wheat in Oregon. Plant Dis. 90:885-890.
  • Taher, I. E., S. N. Ami, R. A. Haleem, and B. Shareef 2017. First record of mycetophagous nematode Aphelenchus avenae in Iraq with description and testing their propagatıon on different fungus culture. Bulletin of The Iraq Natural History Museum 14: 251-259. 10.26842/binhm.7.2017.14.3.0251.
  • Thapa, S., E. Darling, E. Cole, K. Poley, and M. Quintanilla. 2023. Distribution of plant-parasitic nematodes in michigan corn fields. J Nematol. 55(1):20230015. doi: 10.2478/jofnem-2023-0015.
  • Todd, T.C. 2016. Diseases caused by nematodes. pp. 117–129. In: Munkvold, G.P. and White, D.G. (eds) Compendiumof maize diseases, Fourth Edition. The American Phytopathological Society, Eagan, Minnesota, USA.
  • Tran, V. D., V. L. Vu, H. T. Nguyen, and Q. P. Trinh. 2024. An updated species list of the genus Rotylenchus (Nematoda: Hoplolaimidae) and a browser-based interactive key for species identification. Australasian Plant Pathol. 53: 79–88. https://doi.org/10.1007/s13313-023-00962-4
  • TURKSTAT. 2023. Turkish Statistical Institute. URL: https://biruni.tuik.gov.tr/medas/?locale=tr (accessed: October 11, 2024).
  • USDA-ERS. 2021. International Baseline Data. International Long-Term Projections to 2030. Available from: https://www.ers.usda.gov/data-products/international-baseline-
  • Wang, J., X. Hu. 2021. Research on corn production efficiency and influencing factors of typical farms: Based on data from 12 corn-producing countries from 2012 to 2019. PLoS One 16(7):e0254423. doi: 10.1371/journal.pone.0254423. PMID: 34242362; PMCID: PMC8270196.
  • Wood, F.H. 1973. Nematode feeding relationships: Feeding relationships of soil-dwelling nematodes. Soil Riol. Biochem. 5: 593-601.
  • Wu, W.J., L. Yan, C.Xu, K. Wang, S. Y. Jin, and J. Xie. 2016. A new species of the genus Discolaimus Cobb, 1913 (Nematoda: Dorylaimida: Qudsianematidae) from Qinghai, China. Zootaxa 4088: 129. 10.11646/zootaxa.4088.1.6.
  • Xia, Y.H., Y.K. Liu, P.H. Hao, H.X. Yuan, K. Wang, H.L. Li, Y. Li. 2021. Molecular and morphological characterization of the root-lesion nematode, Pratylenchus neglectus, on corn from Henan province of China. Helminthologia 58(4):385-393. doi: 10.2478/helm-2021-0044. PMID: 35095314; PMCID: PMC8776298.
  • Yadav, S., J. Patil, and R. Kanwar. 2018. The role of free-living nematode population in the organic matter recycling. International Journal of Current Microbiology and Applied Sciences 7: 2726-2734. 10.20546/ijcmas.2018.706.321.
  • Yeates, G. W., T. Bongers, R. G. M. De Goede, D. W. Freckman, and S. S. Georgieva. 1993. Feeding habits in soil nematode families and genera—An outline for soil ecologists. Journal of Nematology 25: 315-331.
  • Yıldız, E., U. Gözel. 2022. Determination of plant parasitic nematode species ın corn cultivation areas of Canakkale Province. MAS Journal of Applied Sciences 7(3): 763–768. https://doi.org/10.5281/zenodo.6952680
There are 51 citations in total.

Details

Primary Language English
Subjects Nematology
Journal Section Research Articles
Authors

Lerzan Öztürk 0000-0003-2199-6807

Gürkan Güvenç Avcı 0000-0002-2760-0773

İbrahim Halil Elekcioğlu 0000-0002-1707-7392

Publication Date June 30, 2025
Submission Date December 2, 2024
Acceptance Date February 10, 2025
Published in Issue Year 2025 Volume: 35 Issue: 1

Cite

APA Öztürk, L., Avcı, G. G., & Elekcioğlu, İ. H. (2025). Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye. ANADOLU Journal of Aegean Agricultural Research Institute, 35(1), 51-61. https://doi.org/10.18615/anadolu.1594826
AMA Öztürk L, Avcı GG, Elekcioğlu İH. Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye. ANADOLU. June 2025;35(1):51-61. doi:10.18615/anadolu.1594826
Chicago Öztürk, Lerzan, Gürkan Güvenç Avcı, and İbrahim Halil Elekcioğlu. “Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye”. ANADOLU Journal of Aegean Agricultural Research Institute 35, no. 1 (June 2025): 51-61. https://doi.org/10.18615/anadolu.1594826.
EndNote Öztürk L, Avcı GG, Elekcioğlu İH (June 1, 2025) Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye. ANADOLU Journal of Aegean Agricultural Research Institute 35 1 51–61.
IEEE L. Öztürk, G. G. Avcı, and İ. H. Elekcioğlu, “Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye”, ANADOLU, vol. 35, no. 1, pp. 51–61, 2025, doi: 10.18615/anadolu.1594826.
ISNAD Öztürk, Lerzan et al. “Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye”. ANADOLU Journal of Aegean Agricultural Research Institute 35/1 (June2025), 51-61. https://doi.org/10.18615/anadolu.1594826.
JAMA Öztürk L, Avcı GG, Elekcioğlu İH. Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye. ANADOLU. 2025;35:51–61.
MLA Öztürk, Lerzan et al. “Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye”. ANADOLU Journal of Aegean Agricultural Research Institute, vol. 35, no. 1, 2025, pp. 51-61, doi:10.18615/anadolu.1594826.
Vancouver Öztürk L, Avcı GG, Elekcioğlu İH. Incidence and Population Density of Nematodes in Corn Fields in Tekirdağ, Türkiye. ANADOLU. 2025;35(1):51-6.