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Effects of Seed Treatment with Trichoderma harzianum (TRIC8) on Seedling Growth and, Root and Crown Rot Disease in Wheat Caused by Fusarium culmorum

Year 2022, Volume: 51 Issue: 1, 11 - 19, 29.04.2022

Abstract

The effects of seed treatment with Trichoderma harzianum isolate (TRIC8) on seedling development, pre-emergence damping-off, root and crown rot caused by Fusarium culmorum in wheat were determined in this study. The all tests were carried out under controlled conditions and F. culmorum was inoculated to the sterilized soil. Seeds treated with TRIC8 were sown in inoculated soil with pathogen at different periods (at the same time as the pathogen inoculation, 3 and 5 days after inoculation). The sensitive wheat cultivar Flamura 85, a virulent F. culmorum isolate FC14 and a fungicide with active ingredient of Pyraclostrobin + Triticonazole were used through the experiments. TRIC8 had not any negative effect on seedling development when it was used alone as seed treatment. The highest increases in length, fresh and dry weight of shoots were obtained in plants developed from TRIC8 treated seeds at 3 days after inoculation. The pre-emergence damping-off was inhibited at the rate of 54.55% and 53.73% in this treatment and simultaneous treatment as the pathogen, respectively, and the rate of root and crown rot was similar to that of fungicide treated seeds. The results show that TRIC8 can be use in the soils where the pathogen was at low density.

Supporting Institution

Yak

Project Number

Yok

References

  • Akgül, D.S. 2008. Çukurova Bölgesi buğday ekim alanlarında kök, kök boğazı ve sap çürüklüğü hastalığının durumu, bazı buğday çeşitlerinin hastalığa karşı reaksiyonları, farklı gübreleme pratikleri ve fungisit uygulamalarının hastalık gelişimine etkileri. Doktora Tezi. Çukurova Üniversitesi, Fen Bilimleri Enstitüsü, Adana.
  • Aktaş, A., Bolat, N., Keser, M. and İnce, T. 2000. Eskişehir ili hububat ekim alanlarında hububat kök boğazı çürüklüğü hastalık etmenlerinin saptanması, buğday ve arpada Dreschlera sorokiniana (Sacc.) Subram. and Jain’ya karşı genitör çeşit ve hatların belirlenmesi. Bitki Koruma Bülteni, 40: 71-83.
  • Al-Ani, L.K.T. and Albaayit, S.F.A. 2018. Antagonistic of some Trichoderma against Fusarium oxysporum sp. f. cubense tropical race 4 (FocTR4). Eurasia Proc. Sci. Eng. Math. 2: 35-38.
  • AOSA, 2004. Seedling Evaluation Handbook. Contribution No: 35 to the handbook on seed testing. Association of Official Seed Analysts, p 78-80.
  • Arslan, Ü. and Baykal, N. 2002. Kök ve kökboğazı fungal patojenlerine karşı bazı buğday çeşitlerinin reaksiyonları ve tohum koruyucu fungisitlerin Fusarium culmorum (W.G. Sm.) Sacc.’a Etkisi. Uludağ Üniversitesi Ziraat Fakültesi Dergisi, 16: 69-76.
  • Beccari, G., Covarelli, L. and Nicholson, P. 2011. Infection processes and soft wheat response to root rot and crown rot caused by Fusarium culmorum. Plant Pathol. 60: 671–684.
  • Boukaya, N., Goudjal, Y., Zamoum, M., Chaabane-Chaouch, F., Sabaou, N., Mathieu, F. and Zitouni, A. 2018. Biocontrol and plant-growth-promoting capacities of actinobacterial strains from the Algerian Sahara and characterisation of Streptosporangium becharense SG1 as a promising biocontrol agent. Biocont. Sci. Technol. 28: 858-873.
  • Bouanaka, H., Bellil, I, Harrat, W., Boussaha, S., Benbelkacem, A. and Khelifi, D. 2021. On the biocontrol by Trichoderma afroharzianum against Fusarium culmorum responsible of Fusarium head blight and crown rot of wheat in Algeria. Egypt. J. Biol. Pest Control, 31: 68 https://doi.org/10.1186/s41938-021-00416-3
  • Çiftçigil, T.H., Özer, N. and Şabudak, T. 2016. A preliminary study on control of sunflower downy mildew (Plasmopara halstedii) with culture filtrates of antagonistic fungi. Proceedings 19th International Sunflower Conference, Edirne 2016, 1106.
  • Czaban, J., Ksiezniak, A. and Perzynski, A. 2004. An attempt to protect winter wheat against Fusarium culmorum by the use of rhizobacteria Pseudomonas fluorescens and Bacillus mycoides. Pol. J. Microbiol, 53: 175-182.
  • Davanlou, M., Madsen, A.M., Madsen, C.H. and Hockenhull, J. 1999. Parasitism of macroconidia, chlamydospores and hyphae of Fusarium culmorum by mycoparasitic Pythium species. Plant Pathol. 48: 352–359.
  • Demirci, F. 2003. Bazı buğday çeşitlerinin önemli kök ve kök boğazı hastalık etmenleri (Fusarium spp., Bipolaris sorokiniana)’ne karşı reaksiyonlarının belirlenmesi. Tarım Bilim Derg. 9: 450-466.
  • Dubos, T., Pasquali, M., Pogoda, F., Hoffmann, L and Beyer, M. 2011. Evidence for natural resistance towards trifloxystrobin in Fusarium graminearum. Eur. J. Plant Pathol. 130: 239–248.
  • Dubos, T., Pasquali, M., Pogoda, F., Hoffmann, L and Beyer, M. 2013. Differences between the succinate dehydrogenase sequences of isopyrazam sensitive Zymoseptoria tritici and in sensitive Fusarium graminearum strains. Pestic. Biochem. Phys. 105: 28-35.
  • Erdurmuş, D. and Katırcıoğlu, Y. 2008. Buğdayda önemli kök ve kök boğazı hastalık etmenlerine karşı Trichoderma harzianum’un etkinliğinin araştırılması. Bitki Koruma Bül. 48: 37-48.
  • Etheridge, V.J. 1997. Biological control of seedling blight of winter wheat caused by Fusarium culmorum and Microdochium nivale. Open University, Harper Adams Agricultural College, Ph.D. Thesis, 330 pp.
  • FAO, 2019. Wheat Production. Food and Agriculture Organization of the United Nations. (Web page: http://www.fao.org/faostat/en/#data/QC), (Date accessed: June 2021.
  • Grosu, A.I., Sicuia, O.A., Dobre, A., Voaideş, C. and Cornea, C.P. 2015. Evaluation of some Bacillus spp. strains for the biocontrol of Fusarium graminearum and F. culmorum in wheat. Agric. Agric Sci. Procedia, 6: 559-566.
  • Hazarhun, G. and Özer, N. 2016. Control of sunflower downy mildew Plasmopara halstedii with antagonistic fungi, Commun. Agric. Appl. Biol. Sci. 81: 91-97.
  • Hekimhan, H. 2010. Trakya Bölgesinde buğdaylarda kök ve kök boğazı çürüklüğüne neden olan fungal etmenler ve patojenisitelerini etkileyen bazı faktörler üzerine araştırmalar. Doktora Tezi. Selcuk Üniversitesi Fen Bilimleri Enstitüsü, Konya.
  • Hellin, P., Scauflaire, J., Van Hese, V., Munaut, F. and Legrève, A. 2017. Sensitivity of Fusarium culmorum to Triazoles: Impact of Trichothecene chemotypes, oxidative stress response and genetic diversity. Pest Manag. Sci. 73: 1244-1252.
  • Hermosa, R., Belén Rubio, M., Cardoza, R.E., Nicolás, C., Monte, E. and Gutiérrez, S. 2013. The contribution of Trichoderma to balancing the costs of plant growth and defense. Int. J. Microbiol. 16: 69-80.
  • Jaber, L.R. 2018. Seed inoculation with endophytic fungal entomopathogens promotes plant growth and reduces crown and root rot (CRR) caused by Fusarium culmorum in wheat. Planta, 248: 1525-1535.
  • Jensen, B., Knudsen, I.M. and Jensen, D.F. 2000. Biological seed treatment of cereals with fresh and long-term stored formulations of Clonostachys rosea: Biocontrol efficacy against Fusarium culmorum. Eur. J. Plant Pathol. 106: 233-242.
  • Johansson, P.M., Johnsson, L. and Gerhardson, B. 2003. Supression of wheat-seedling diseases caused by Fusarium culmorum and Microdochium nivale using bacterial seed treatment. Plant Pathol. 52: 219–227.
  • Karman, M. 1971. Bitki Koruma Araştırmalarında Genel Bilgiler. Denemelerin Kuruluşu ve Değerlendirme Esasları. Gıda Tarım ve Hayvancılık Bakanlığı, Zirai Mücadele ve Zirai Karantina Genel Müdürlüğü Yayınları, Mesleki Kitaplar Serisi, 278 s.
  • Keyser, C.A., Jensen, B. and Meyling, N.V. 2016. Dual effects of Metarhizium spp. and Clonostachys rosea against an insect and a seed‐borne pathogen in wheat. Pest Manag. Sci. 72: 517-526.
  • Khezri, M., Ahmadzadeh, M., Jouzani, G.S., Behboudi, K., Ahangaran, A., Mousivand, M. and Rahimian, H. 2011. Characterization of some biofilm-forming Bacillus subtilis strains and evaluation of their biocontrol potential against Fusarium culmorum. J. Plant Pathol. 93: 373-382.
  • Kılınç, A.T., Yorgancılar, A., Şahin, E., Yıldırım, A.F., Erginbaş, G., Nicol, J.M., Bolat, N. and Yorgancılar, Ö. 2008. Buğdayda kök ve kök boğazı çürüklüğü etmenine (Fusarium culmorum) karşı dayanıklılık kaynaklarının belirlenmesi üzerine araştırmalar. Ülkesel Tahıl Sempozyumu, Konya, 2008.
  • Knudsen, I.M.B., Hockenhull, J. and Jensen, D.F. 1995. Biocontrol of seedling diseases of barley and wheat caused by Fusarium culmorum and Bipolaris sorakiniana : effects of selected fungal antagonists on growth and yield components. Plant Pathol. 44: 467–477.
  • Köycü, N.D. and Özer, N. 2019. Trakya Bölgesi'nde bazı buğday çeşitlerinin Fusarium spp. izolatlarına karşı dayanıklılığın tespit edilmesi. KSÜ Tar. Doga Derg. 22: 498-505.
  • Kthiri, Z., Jabeur, J., Machraoui, M., Gargoun, S., Hiba, K. and Hamada, W. 2020. Coating seeds with Trichoderma strains promotes plant growth and enhance the systemic resistance against Fusarium crown rot in durum wheat. Egypt. J. Biol. Pest Control. 30: 139. https://doi.org/10.1186/s41938-020-00338-6
  • Li, N., Alfiky, A., Wang, W., Islam, M.D., Nourollahi, K., Liu, X. and Kang, S. 2018. Volatile compound-mediated recognition and inhibition between Trichoderma biocontrol agents and Fusarium oxysporum. Front. Microbiol. 9: Article 2614. https://doi.org/10.3389/fmicb.2018.02614
  • Li, Y., Sun, R., Yu, J., Saravanakumar, K. and Chen, J., 2016. Antagonistic and biocontrol potential of Trichoderma asperellum ZJSX5003 against the maize stalk rot pathogen Fusarium graminearum. Indian J. Microbiol. 56: 318-327.
  • Lounaci, L., Guemouri-Athmani, S., Boureghda, H., Achouak, W. and Heulin, T. 2016. Suppression of crown and root rot of wheat by the rhizobacterium Paenibacillus polymyxa. Phytopathol. Mediterr. 55: 355-365.
  • Mayo, S., Gutiérrez, S., Malmierca, M.G., Lorenzana, A., Campelo, M.P., Hermosa, R. and Casquero, P.A. 2015. Influence of Rhizoctonia solani and Trichoderma spp. in growth of bean (Phaseolus vulgaris L.) and in the induction of plant defense-related genes. Front. Plant Sci. Article 685. https://doi.org/10.3389/fpls.2015.00685.
  • Moya-Elizondo, E.A. and Jacobsen, B.J. 2016. Integrated management of Fusarium crown rot of wheat using fungicide seed treatment, cultivar resistance, and induction of systemic acquired resistance (SAR). Biol. Cont. 92: 153-163.
  • Meral, R. and Saydan, G. 2012. Tahıllardan etanol üretimi. Iğdır Üniv. Fen Bilim. Enst. Derg. 2: 61-68.
  • Mnasri, N., Chennaoui, C., Gargouri, S., Mhamdi, R., Hessini, K., Elkahoui, S. and Djébali, N. 2017. Efficacy of some rhizospheric and endophytic bacteria in vitro and as seed coating for the control of Fusarium culmorum infecting durum wheat in Tunisia. Eur. J. Plant Pathol. 147: 501-515.
  • Moradi, M., Dehne, H.W., Steiner, V. and Oorke, E.C. 2017. Improved procedure for mass inoculum production of Fusarium species in a short period of time. Appl Entomol. Phytopathol. 84: 21-31.
  • Navazio, L., Baldan, B., Moscatiello, R., Zuppini, A., Woo, S.L., Mariani, P. and Lorito, M., 2007. Calcium-mediated perception and defense responses activated in plant cells by metabolite mixtures secreted by the biocontrol fungus Trichoderma atroviride. BMC Plant Biol. 7:41. https://doi.org/10.1186/1471-2229-7-41.
  • Özer, N. 2011. Screening for fungal antagonists to control black mold disease and to induce the accumulation of antifungal compounds in onion after seed treatment, Biocontrol, 56: 237-247.
  • Özer, N. and Arın, L. 2014. Evaluation of fungal antagonists to control black mold disease under field conditions and to induce the accumulation of antifungal compounds in onion following seed and set treatment. Crop Protect. 65: 21-28.
  • Özer, N., Coşkuntuna, A. and Şabudak, T., 2021. Trichoderma harzianum-induced defense in sunflower (Helianthus annuus L.) against Plasmopara halstedii with changes in metabolite profiling of roots. Biocontrol Sci. And Technol. (Kabul edilmiş makale) https://doi.org/10.1080/09583157.2021.1963417.
  • Özer, N., Koç, M. and Der, B. 2009. The sensitivity of Aspergillus niger and Fusarium oxysporum f sp cepae to fungistasis in onion growing soils. J. Plant Pathol. 91: 401-410.
  • Özer, N., Şabudak, T., Çiftçigil, T.H., Evci, G. and Yılmaz, M.I. 2017. Induction of potential antifungal root metabolites by biological control against sunflower downy mildew under field conditions. Proceedings Ecology 2017 Congress, Kayseri 2017, 634.
  • Sherm, B., Balmas, V., Spanu, F., Pani, G., Delogu, G., Pasquali, M. and Migheli, Q. 2013. Fusarium culmorum: causal agent of foot and root rot and head blight on wheat. Mol. Plant Pathol. 14: 323-341.
  • Sukut, F. and Köycü, N.D. 2019a. Effects of Triazole and Strobilurin-based fungicides on Fusarium culmorum on wheat. J. Agric. Sci. 11: 16-22.
  • Sukut, F. and Köycü, N.D. 2019b. Effect of fungicide application on the sensitivity of Fusarium culmorum. Fresenius Environ. Bull. 28: 1471-1479.
  • Teperi, E., Keskinen, M., Ketoja, E. and Tahvonen, R. 1998. Screening for fungal antagonists of seed-borne Fusarium culmorum on wheat using in vivo tests. Eur. J. Plant Pathol. 104: 243-251.
  • Tunalı, B., Nicol, J.M., Hadson, D., Uçkun, Z., Büyük, O., Erdurmuş, D., Hekimhan, H., Aktaş, H., Akbudak, M.A. and Bağcı, S.A. 2008. Root and crown rot fungi associated with spring facultative and winter wheat in Turkey. Plant Dis. 92: 1299-1306.
  • Vinale, F., Ghisalberti, E.L., Sivasithamparam, K., Marra, R., Ritieni, A., Ferracane, R., Woo, S. and Lorito, M. 2009. Factors affecting the production of Trichoderma harzianum secondary metabolites during the interaction with different plant pathogens. Lett. Appl. Microbiol. 48: 705-711.
  • Vinale, F., Sivasithamparam, K., Ghisalberti, E.L., Woo, S.L., Nigro, M., Marra, R., Lombardi, N., Pascale, A., Ruocco, M., Lanzuise, S., Manganiello, G. and Lorito, M., 2014. Trichoderma secondary metabolites active on plants and fungal pathogens. Open Mycol. J. 8: 127-139.
  • Wachowska, U. and Borowska, J. 2014. Antagonistic yeasts competes for iron with winter wheat stem base pathogens. Gesunde Pflanz. 66: 141-148.
  • Yorgancılar, A., Yılmaz, B., Yorgancılar, Ö., Sirel, Z., Belen, S. and Özkeskin, E. 2017. Bazı buğday genotiplerinin kök ve kök boğazı çürüklüğü etmenine (Fusarium culmorum) karşı reaksiyonlarının belirlenmesi. 12. Tarla Bitkileri Kongresi, Kahramanmaraş 2017.
  • Zalila-Kolsi, I. and Jamoussi, K. 2016. Antagonistic effects of Bacillus spp. Strains against Fusarium graminearum for protection durum wheat (Triticum turgidum L. Subsp. Durum). Microbial. Res. 192: 148-158.

Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri

Year 2022, Volume: 51 Issue: 1, 11 - 19, 29.04.2022

Abstract

Bu çalışmada Trichoderma harzianum izolatı (TRIC8) ile tohum uygulamasının buğdayda fide gelişimine, Fusarium culmorum’un neden olduğu çıkış öncesi çökerten, kök ve kök boğazı çürüklüğüne etkileri belirlenmiştir. Tüm testler kontrollü koşullarda gerçekleştirilmiş, Fusarium culmorum steril edilmiş toprağa inokule edilmiştir. TRIC8 ile uygulama yapılmış tohumlar farklı zaman dilimlerinde (inokulasyonla aynı zamanda, inokulasyondan 3 ve 5 gün sonra) patojenle bulaşık toprağa ekilmişlerdir. Denemelerde hassas çeşit Flamura 85, virülent F. culmorum izolatı (FC14) ve karşılaştırmak amacıyla Pyraclostrobin + Triticonazole etkili maddeli fungisit kullanılmıştır. TRIC8 tek başına uygulandığında fide gelişimi üzerine negatif bir etkisi olmamıştır. Her ne kadar fide çıkışı düşük oranda azalsa da sürgün uzunluğu, sürgün yaş ve kuru ağırlığındaki en yüksek artışlar, patojenin inokulasyonundan 3 gün sonra TRIC8 uygulanmış tohumlardan gelişen bitkilerde elde edilmiştir. Bu uygulamada ve patojenle eş zamanlı uygulamada, çıkış öncesi çökerten sırasıyla %54.55 ve %53.73 oranında engellenmiş, kök ve kök boğazı çürüklük oranı fungisit uygulanan tohumlardan gelişen bitkilere benzerlik göstermiştir. Elde edilen sonuçlar, TRIC8’in patojenin düşük yoğunlukta olduğu topraklarda kullanılabileceğini göstermektedir.

Project Number

Yok

References

  • Akgül, D.S. 2008. Çukurova Bölgesi buğday ekim alanlarında kök, kök boğazı ve sap çürüklüğü hastalığının durumu, bazı buğday çeşitlerinin hastalığa karşı reaksiyonları, farklı gübreleme pratikleri ve fungisit uygulamalarının hastalık gelişimine etkileri. Doktora Tezi. Çukurova Üniversitesi, Fen Bilimleri Enstitüsü, Adana.
  • Aktaş, A., Bolat, N., Keser, M. and İnce, T. 2000. Eskişehir ili hububat ekim alanlarında hububat kök boğazı çürüklüğü hastalık etmenlerinin saptanması, buğday ve arpada Dreschlera sorokiniana (Sacc.) Subram. and Jain’ya karşı genitör çeşit ve hatların belirlenmesi. Bitki Koruma Bülteni, 40: 71-83.
  • Al-Ani, L.K.T. and Albaayit, S.F.A. 2018. Antagonistic of some Trichoderma against Fusarium oxysporum sp. f. cubense tropical race 4 (FocTR4). Eurasia Proc. Sci. Eng. Math. 2: 35-38.
  • AOSA, 2004. Seedling Evaluation Handbook. Contribution No: 35 to the handbook on seed testing. Association of Official Seed Analysts, p 78-80.
  • Arslan, Ü. and Baykal, N. 2002. Kök ve kökboğazı fungal patojenlerine karşı bazı buğday çeşitlerinin reaksiyonları ve tohum koruyucu fungisitlerin Fusarium culmorum (W.G. Sm.) Sacc.’a Etkisi. Uludağ Üniversitesi Ziraat Fakültesi Dergisi, 16: 69-76.
  • Beccari, G., Covarelli, L. and Nicholson, P. 2011. Infection processes and soft wheat response to root rot and crown rot caused by Fusarium culmorum. Plant Pathol. 60: 671–684.
  • Boukaya, N., Goudjal, Y., Zamoum, M., Chaabane-Chaouch, F., Sabaou, N., Mathieu, F. and Zitouni, A. 2018. Biocontrol and plant-growth-promoting capacities of actinobacterial strains from the Algerian Sahara and characterisation of Streptosporangium becharense SG1 as a promising biocontrol agent. Biocont. Sci. Technol. 28: 858-873.
  • Bouanaka, H., Bellil, I, Harrat, W., Boussaha, S., Benbelkacem, A. and Khelifi, D. 2021. On the biocontrol by Trichoderma afroharzianum against Fusarium culmorum responsible of Fusarium head blight and crown rot of wheat in Algeria. Egypt. J. Biol. Pest Control, 31: 68 https://doi.org/10.1186/s41938-021-00416-3
  • Çiftçigil, T.H., Özer, N. and Şabudak, T. 2016. A preliminary study on control of sunflower downy mildew (Plasmopara halstedii) with culture filtrates of antagonistic fungi. Proceedings 19th International Sunflower Conference, Edirne 2016, 1106.
  • Czaban, J., Ksiezniak, A. and Perzynski, A. 2004. An attempt to protect winter wheat against Fusarium culmorum by the use of rhizobacteria Pseudomonas fluorescens and Bacillus mycoides. Pol. J. Microbiol, 53: 175-182.
  • Davanlou, M., Madsen, A.M., Madsen, C.H. and Hockenhull, J. 1999. Parasitism of macroconidia, chlamydospores and hyphae of Fusarium culmorum by mycoparasitic Pythium species. Plant Pathol. 48: 352–359.
  • Demirci, F. 2003. Bazı buğday çeşitlerinin önemli kök ve kök boğazı hastalık etmenleri (Fusarium spp., Bipolaris sorokiniana)’ne karşı reaksiyonlarının belirlenmesi. Tarım Bilim Derg. 9: 450-466.
  • Dubos, T., Pasquali, M., Pogoda, F., Hoffmann, L and Beyer, M. 2011. Evidence for natural resistance towards trifloxystrobin in Fusarium graminearum. Eur. J. Plant Pathol. 130: 239–248.
  • Dubos, T., Pasquali, M., Pogoda, F., Hoffmann, L and Beyer, M. 2013. Differences between the succinate dehydrogenase sequences of isopyrazam sensitive Zymoseptoria tritici and in sensitive Fusarium graminearum strains. Pestic. Biochem. Phys. 105: 28-35.
  • Erdurmuş, D. and Katırcıoğlu, Y. 2008. Buğdayda önemli kök ve kök boğazı hastalık etmenlerine karşı Trichoderma harzianum’un etkinliğinin araştırılması. Bitki Koruma Bül. 48: 37-48.
  • Etheridge, V.J. 1997. Biological control of seedling blight of winter wheat caused by Fusarium culmorum and Microdochium nivale. Open University, Harper Adams Agricultural College, Ph.D. Thesis, 330 pp.
  • FAO, 2019. Wheat Production. Food and Agriculture Organization of the United Nations. (Web page: http://www.fao.org/faostat/en/#data/QC), (Date accessed: June 2021.
  • Grosu, A.I., Sicuia, O.A., Dobre, A., Voaideş, C. and Cornea, C.P. 2015. Evaluation of some Bacillus spp. strains for the biocontrol of Fusarium graminearum and F. culmorum in wheat. Agric. Agric Sci. Procedia, 6: 559-566.
  • Hazarhun, G. and Özer, N. 2016. Control of sunflower downy mildew Plasmopara halstedii with antagonistic fungi, Commun. Agric. Appl. Biol. Sci. 81: 91-97.
  • Hekimhan, H. 2010. Trakya Bölgesinde buğdaylarda kök ve kök boğazı çürüklüğüne neden olan fungal etmenler ve patojenisitelerini etkileyen bazı faktörler üzerine araştırmalar. Doktora Tezi. Selcuk Üniversitesi Fen Bilimleri Enstitüsü, Konya.
  • Hellin, P., Scauflaire, J., Van Hese, V., Munaut, F. and Legrève, A. 2017. Sensitivity of Fusarium culmorum to Triazoles: Impact of Trichothecene chemotypes, oxidative stress response and genetic diversity. Pest Manag. Sci. 73: 1244-1252.
  • Hermosa, R., Belén Rubio, M., Cardoza, R.E., Nicolás, C., Monte, E. and Gutiérrez, S. 2013. The contribution of Trichoderma to balancing the costs of plant growth and defense. Int. J. Microbiol. 16: 69-80.
  • Jaber, L.R. 2018. Seed inoculation with endophytic fungal entomopathogens promotes plant growth and reduces crown and root rot (CRR) caused by Fusarium culmorum in wheat. Planta, 248: 1525-1535.
  • Jensen, B., Knudsen, I.M. and Jensen, D.F. 2000. Biological seed treatment of cereals with fresh and long-term stored formulations of Clonostachys rosea: Biocontrol efficacy against Fusarium culmorum. Eur. J. Plant Pathol. 106: 233-242.
  • Johansson, P.M., Johnsson, L. and Gerhardson, B. 2003. Supression of wheat-seedling diseases caused by Fusarium culmorum and Microdochium nivale using bacterial seed treatment. Plant Pathol. 52: 219–227.
  • Karman, M. 1971. Bitki Koruma Araştırmalarında Genel Bilgiler. Denemelerin Kuruluşu ve Değerlendirme Esasları. Gıda Tarım ve Hayvancılık Bakanlığı, Zirai Mücadele ve Zirai Karantina Genel Müdürlüğü Yayınları, Mesleki Kitaplar Serisi, 278 s.
  • Keyser, C.A., Jensen, B. and Meyling, N.V. 2016. Dual effects of Metarhizium spp. and Clonostachys rosea against an insect and a seed‐borne pathogen in wheat. Pest Manag. Sci. 72: 517-526.
  • Khezri, M., Ahmadzadeh, M., Jouzani, G.S., Behboudi, K., Ahangaran, A., Mousivand, M. and Rahimian, H. 2011. Characterization of some biofilm-forming Bacillus subtilis strains and evaluation of their biocontrol potential against Fusarium culmorum. J. Plant Pathol. 93: 373-382.
  • Kılınç, A.T., Yorgancılar, A., Şahin, E., Yıldırım, A.F., Erginbaş, G., Nicol, J.M., Bolat, N. and Yorgancılar, Ö. 2008. Buğdayda kök ve kök boğazı çürüklüğü etmenine (Fusarium culmorum) karşı dayanıklılık kaynaklarının belirlenmesi üzerine araştırmalar. Ülkesel Tahıl Sempozyumu, Konya, 2008.
  • Knudsen, I.M.B., Hockenhull, J. and Jensen, D.F. 1995. Biocontrol of seedling diseases of barley and wheat caused by Fusarium culmorum and Bipolaris sorakiniana : effects of selected fungal antagonists on growth and yield components. Plant Pathol. 44: 467–477.
  • Köycü, N.D. and Özer, N. 2019. Trakya Bölgesi'nde bazı buğday çeşitlerinin Fusarium spp. izolatlarına karşı dayanıklılığın tespit edilmesi. KSÜ Tar. Doga Derg. 22: 498-505.
  • Kthiri, Z., Jabeur, J., Machraoui, M., Gargoun, S., Hiba, K. and Hamada, W. 2020. Coating seeds with Trichoderma strains promotes plant growth and enhance the systemic resistance against Fusarium crown rot in durum wheat. Egypt. J. Biol. Pest Control. 30: 139. https://doi.org/10.1186/s41938-020-00338-6
  • Li, N., Alfiky, A., Wang, W., Islam, M.D., Nourollahi, K., Liu, X. and Kang, S. 2018. Volatile compound-mediated recognition and inhibition between Trichoderma biocontrol agents and Fusarium oxysporum. Front. Microbiol. 9: Article 2614. https://doi.org/10.3389/fmicb.2018.02614
  • Li, Y., Sun, R., Yu, J., Saravanakumar, K. and Chen, J., 2016. Antagonistic and biocontrol potential of Trichoderma asperellum ZJSX5003 against the maize stalk rot pathogen Fusarium graminearum. Indian J. Microbiol. 56: 318-327.
  • Lounaci, L., Guemouri-Athmani, S., Boureghda, H., Achouak, W. and Heulin, T. 2016. Suppression of crown and root rot of wheat by the rhizobacterium Paenibacillus polymyxa. Phytopathol. Mediterr. 55: 355-365.
  • Mayo, S., Gutiérrez, S., Malmierca, M.G., Lorenzana, A., Campelo, M.P., Hermosa, R. and Casquero, P.A. 2015. Influence of Rhizoctonia solani and Trichoderma spp. in growth of bean (Phaseolus vulgaris L.) and in the induction of plant defense-related genes. Front. Plant Sci. Article 685. https://doi.org/10.3389/fpls.2015.00685.
  • Moya-Elizondo, E.A. and Jacobsen, B.J. 2016. Integrated management of Fusarium crown rot of wheat using fungicide seed treatment, cultivar resistance, and induction of systemic acquired resistance (SAR). Biol. Cont. 92: 153-163.
  • Meral, R. and Saydan, G. 2012. Tahıllardan etanol üretimi. Iğdır Üniv. Fen Bilim. Enst. Derg. 2: 61-68.
  • Mnasri, N., Chennaoui, C., Gargouri, S., Mhamdi, R., Hessini, K., Elkahoui, S. and Djébali, N. 2017. Efficacy of some rhizospheric and endophytic bacteria in vitro and as seed coating for the control of Fusarium culmorum infecting durum wheat in Tunisia. Eur. J. Plant Pathol. 147: 501-515.
  • Moradi, M., Dehne, H.W., Steiner, V. and Oorke, E.C. 2017. Improved procedure for mass inoculum production of Fusarium species in a short period of time. Appl Entomol. Phytopathol. 84: 21-31.
  • Navazio, L., Baldan, B., Moscatiello, R., Zuppini, A., Woo, S.L., Mariani, P. and Lorito, M., 2007. Calcium-mediated perception and defense responses activated in plant cells by metabolite mixtures secreted by the biocontrol fungus Trichoderma atroviride. BMC Plant Biol. 7:41. https://doi.org/10.1186/1471-2229-7-41.
  • Özer, N. 2011. Screening for fungal antagonists to control black mold disease and to induce the accumulation of antifungal compounds in onion after seed treatment, Biocontrol, 56: 237-247.
  • Özer, N. and Arın, L. 2014. Evaluation of fungal antagonists to control black mold disease under field conditions and to induce the accumulation of antifungal compounds in onion following seed and set treatment. Crop Protect. 65: 21-28.
  • Özer, N., Coşkuntuna, A. and Şabudak, T., 2021. Trichoderma harzianum-induced defense in sunflower (Helianthus annuus L.) against Plasmopara halstedii with changes in metabolite profiling of roots. Biocontrol Sci. And Technol. (Kabul edilmiş makale) https://doi.org/10.1080/09583157.2021.1963417.
  • Özer, N., Koç, M. and Der, B. 2009. The sensitivity of Aspergillus niger and Fusarium oxysporum f sp cepae to fungistasis in onion growing soils. J. Plant Pathol. 91: 401-410.
  • Özer, N., Şabudak, T., Çiftçigil, T.H., Evci, G. and Yılmaz, M.I. 2017. Induction of potential antifungal root metabolites by biological control against sunflower downy mildew under field conditions. Proceedings Ecology 2017 Congress, Kayseri 2017, 634.
  • Sherm, B., Balmas, V., Spanu, F., Pani, G., Delogu, G., Pasquali, M. and Migheli, Q. 2013. Fusarium culmorum: causal agent of foot and root rot and head blight on wheat. Mol. Plant Pathol. 14: 323-341.
  • Sukut, F. and Köycü, N.D. 2019a. Effects of Triazole and Strobilurin-based fungicides on Fusarium culmorum on wheat. J. Agric. Sci. 11: 16-22.
  • Sukut, F. and Köycü, N.D. 2019b. Effect of fungicide application on the sensitivity of Fusarium culmorum. Fresenius Environ. Bull. 28: 1471-1479.
  • Teperi, E., Keskinen, M., Ketoja, E. and Tahvonen, R. 1998. Screening for fungal antagonists of seed-borne Fusarium culmorum on wheat using in vivo tests. Eur. J. Plant Pathol. 104: 243-251.
  • Tunalı, B., Nicol, J.M., Hadson, D., Uçkun, Z., Büyük, O., Erdurmuş, D., Hekimhan, H., Aktaş, H., Akbudak, M.A. and Bağcı, S.A. 2008. Root and crown rot fungi associated with spring facultative and winter wheat in Turkey. Plant Dis. 92: 1299-1306.
  • Vinale, F., Ghisalberti, E.L., Sivasithamparam, K., Marra, R., Ritieni, A., Ferracane, R., Woo, S. and Lorito, M. 2009. Factors affecting the production of Trichoderma harzianum secondary metabolites during the interaction with different plant pathogens. Lett. Appl. Microbiol. 48: 705-711.
  • Vinale, F., Sivasithamparam, K., Ghisalberti, E.L., Woo, S.L., Nigro, M., Marra, R., Lombardi, N., Pascale, A., Ruocco, M., Lanzuise, S., Manganiello, G. and Lorito, M., 2014. Trichoderma secondary metabolites active on plants and fungal pathogens. Open Mycol. J. 8: 127-139.
  • Wachowska, U. and Borowska, J. 2014. Antagonistic yeasts competes for iron with winter wheat stem base pathogens. Gesunde Pflanz. 66: 141-148.
  • Yorgancılar, A., Yılmaz, B., Yorgancılar, Ö., Sirel, Z., Belen, S. and Özkeskin, E. 2017. Bazı buğday genotiplerinin kök ve kök boğazı çürüklüğü etmenine (Fusarium culmorum) karşı reaksiyonlarının belirlenmesi. 12. Tarla Bitkileri Kongresi, Kahramanmaraş 2017.
  • Zalila-Kolsi, I. and Jamoussi, K. 2016. Antagonistic effects of Bacillus spp. Strains against Fusarium graminearum for protection durum wheat (Triticum turgidum L. Subsp. Durum). Microbial. Res. 192: 148-158.
There are 56 citations in total.

Details

Primary Language Turkish
Journal Section Articles
Authors

Berkcan Özdamar This is me 0000-0003-2379-1311

Nuray Özer 0000-0001-6876-7580

Project Number Yok
Publication Date April 29, 2022
Published in Issue Year 2022 Volume: 51 Issue: 1

Cite

APA Özdamar, B., & Özer, N. (2022). Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri. The Journal of Turkish Phytopathology, 51(1), 11-19.
AMA Özdamar B, Özer N. Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri. The Journal of Turkish Phytopathology. April 2022;51(1):11-19.
Chicago Özdamar, Berkcan, and Nuray Özer. “Trichoderma Harzianum (TRIC8) Ile Tohum Uygulamasının Buğdayda Fide Gelişimi Ve Fusarium Culmorum Tarafından Oluşturulan Kök Ve Kök Boğazı Çürüklüğü Hastalığına Etkileri”. The Journal of Turkish Phytopathology 51, no. 1 (April 2022): 11-19.
EndNote Özdamar B, Özer N (April 1, 2022) Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri. The Journal of Turkish Phytopathology 51 1 11–19.
IEEE B. Özdamar and N. Özer, “Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri”, The Journal of Turkish Phytopathology, vol. 51, no. 1, pp. 11–19, 2022.
ISNAD Özdamar, Berkcan - Özer, Nuray. “Trichoderma Harzianum (TRIC8) Ile Tohum Uygulamasının Buğdayda Fide Gelişimi Ve Fusarium Culmorum Tarafından Oluşturulan Kök Ve Kök Boğazı Çürüklüğü Hastalığına Etkileri”. The Journal of Turkish Phytopathology 51/1 (April 2022), 11-19.
JAMA Özdamar B, Özer N. Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri. The Journal of Turkish Phytopathology. 2022;51:11–19.
MLA Özdamar, Berkcan and Nuray Özer. “Trichoderma Harzianum (TRIC8) Ile Tohum Uygulamasının Buğdayda Fide Gelişimi Ve Fusarium Culmorum Tarafından Oluşturulan Kök Ve Kök Boğazı Çürüklüğü Hastalığına Etkileri”. The Journal of Turkish Phytopathology, vol. 51, no. 1, 2022, pp. 11-19.
Vancouver Özdamar B, Özer N. Trichoderma harzianum (TRIC8) ile Tohum Uygulamasının Buğdayda Fide Gelişimi ve Fusarium culmorum Tarafından Oluşturulan Kök ve Kök Boğazı Çürüklüğü Hastalığına Etkileri. The Journal of Turkish Phytopathology. 2022;51(1):11-9.
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