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The effects of some soil herbicides on root colonization and spore number of mycorrhizal fungi Glomus intraradices

Year 2016, Volume: 9 Issue: 2, 1 - 7, 15.08.2016

Abstract

Herbicides are the most widely used pesticide groups in the world. It is probable that such heavily used and particularly soil-applied herbicides have highly negative effects on soil microflora. One of the important groups of soil microflora is the mycorrhizal fungi which live symbiotically with plants’ roots and are known to have many benefits to plants. The study was conducted to determine the effects of most widely used soil herbicides trifluralin, linuron, acetochlor and imazethapyr on the root colonization and spore number in the soil of mycorrhizal fungi Glomus intraradices. To this aim, tomato, sunflower, corn and chickpea were inoculated with G. intraradices and grown in potting media under controlled conditions. Related herbicides were applied both in recommended and double doses for each crop plant in the period of pre-plant and pre-emergence. After four weeks incubation periods, the root colonization of mycorrhizal fungi on culture plants and spore number in soil were determined. Root colonization rates of untreated control groups were above 50%, while significant reductions were occurred in application of the recommended and double doses of herbicides. The recommended dose of acetochlor resulted largest reduction in the root colonization by 97% and it was followed by linuron by 87%. In two-fold dose imazethapyr application, mycorrhizal colonization did not occur in chickpeas roots. Again, two-fold dose acetochlor reduced the mycorhizal colonization by 98% in maize roots. It was found that, these herbicides also reduced the spore number of G. intraradices in soil significantly. Among the herbicides used in the experiment, imazethapyr took the first place by reducing the number of spores in soil respectively by 97.2% and 100% with recommended and two-fold doses. Acetochlor followed this herbicide and decreased spore numbers by 81.8% and 89.6%, respectively and thus it took second place. The results indicate that herbicides depending of herbicide group and doses, negatively affect the development and activities of the mycorrhizal fungi living symbiotically with crops. Therefore, it should be noted the selection of herbicides and herbicides which have side effects on non-target organisms must not been preferred

References

  • Allen, M. 1993. Mycorrhizal functioning: an integrative plant-fungal process. 1st Edition ISBN-10, 0412018918, Chapman and Hall. 534 pp.
  • Anil, G., Ashok, A., Chhavi, M., Aditya, K., Anju, T. 2011. Effect of herbicides fenoxaprop-p-ethyl and 2,4-D ethyl-ester on soil mycroflora including vam fungi in wheat crop. Indian Journal of Weed Science 43(1-2): 32-40
  • Anonim, 2013. Food and Agriculture Organization (FAO), www.fao.org, Erişim tarihi: 24.11.2013
  • Boldt, T.S., Jacobsen, C.S. 1998. Different toxic effects of the sulfonylurea herbicides metsulfuron methly, chlorsulfuron and thifensulfuron methyl on fluorescent pseudomonas isolated from an agricultural soil. Fems Microbiology Letters, 161, 29-35.
  • Brito, I., Carvalho, M., Goss, M.J. 2013. Soil and weed management for enhancing arbuscular mycorrhiza colonization of wheat. Soil Use and Management 29(4): 540-546
  • Changjin, D., Bin, Z. 2004a. Impact of herbicides on infection and hyphal enzyme activity of AM fungus. Acta Pedologica Sinica 41: 750-755
  • Changjin, D., Bin, Z. 2004b. Impact of herbicides on two kinds of arbuscular mycorrhizas. Acta Pedologica Sinica 34: 518-524
  • De, A., Bose, R., Kumar, A., Mozumdar, S. 2014. Target delivery of pesticides using biodegradable polymeric nanoparticles. Springer. 99 pp.
  • Druille, M., Omacini, M., Golluscio, R.A., Cabello, M.N. 2013. Arbuscular mycorrhizal fungi are directly and indirectly affected by glyphosate application. Applied Soil Ecology 72: 143-149
  • Elsen, A., Baimey, H., Swennen, R., Waele, D.D. 2003. Relative mycorrhizal dependency and mycorrhiza-nematode interaction in banana cultivars (Musa spp.) differing in nematode susceptibility. Plant and Soil, 256, 303-313.
  • Garcia-Romera, I., Miquel, J.A., Ocampo, J.A. 1988. Effect of cyanazine herbicide on VA mycorrhiza infection and growth of Pisum sativum. Pl Soil 107, 207-210.
  • Gerdemann, J.W. ve Nicholson, T.H. 1963. Spores of mycorrhizal endogene extracted from soil by wetsieving and decanting. Trans. Br. Mycol. Soc. 46:235-244.
  • Giovannetti, M. and Mosse, B. 1980. An evaluation of techniques for measuring vesicular-arbuscular mycorrhizal infection in roots. New Phytol. 84:489-500.
  • Hilderbrandt, U., Regvar, M., Bothe, H. 2007. Arbuscular mycorrhiza and heavy metal tolerance. Phytochemistry. 68: 139-146.
  • Karagiannidis, N., Bletsos F., Stavropoulos, N., 2002. Effect of Verticillium wilt (Verticillium dahliae Kleb.) and mycorrhiza (Glomus mosseae) on root colonization, growth and nutrient uptake in tomato and eggplant seedlings. Scientia Horticulturae. 94: 145-156.
  • Koske, R.E. and Gemma, J.N. 1989. A modified procedure for staining root to detect VAM. Mycological Research. 92:486-505.
  • Michalcewicz, W. 2001. Effects of selected herbicides on biomass and abundance of soil microorganisms. Rozparvy, 200, 92.
  • Mohammad, A., Mridha, M.A.U., Islam M.S., Ahmad, I. 2013. Effects of pesticides on mycorrhizal symbiosis in tea. International Journal of Tea Science 9(4): 19-24
  • Pampulha, M.E., Ferreira, M.A.S.S., Oliveira, A. 2007. Effects of phosphinothricin based herbicide on selected groups of soil microorganims. Journal of Basic Microbiology, 47, 325-331.
  • Pasaribu, A., Mohamad, R., Hashim, A., Rahman, Z., Omar, D. ve Morshed, M. 2013. Effect of herbicide on growth response and phosphorus uptake by host plant in symbiotic association with VA mycorrhiza (Glomus mosseae). Journal of Food, Agiculture & Environment 11(2): 352-357
  • Ocampo, J.A. ve Barea, J.M. 1985. Effect of carbamate herbicides on VA mycorrhiza infection and plant growth. Plant and Soil, 85, 375-383.
  • Özgönen, H. 2012. Toprak ve bitki dostu mikorizal funguslar.Tarım Günlüğü 9:28-31.
  • Sannazzaro A.I., Echeverria M, Alberto E.O., Ruiz O.A., Menendez A.B. 2007. Modulation of polyamine balance in lotus glaber by salinity and arbuscular mycorrhiza. Plant Physiology and Biochemistry. 45: 39-46.
  • Sharma, A.K., Johri, B.N., Gianinazzi, S. 1992. Vesicular-arbuscular mycorrhizae in relation to plant disease. World Journal of Microbiology and Biotechnology. 8 (6): 559-563.
  • Shirmohammadi, E., Khaje, M., Shahgholi, H., Talaei, G.H ve Goudarzifar, H. 2014. Interaction between fungi mycorrhiza and Treflan herbicide on root colonization of clover (Trifolium repens). Journal of Biodiversity and Environmental Sciences 5(2): 499-507
  • Sieverding, E. ve Leihner, D.E. 1984. Effect of herbicides on population dynamics of VA-mycorrhiza with cassava. Angewandte Botanik 58(3/4): 283-294
  • Stratton, G.W., 1984. Effects of the herbicide atrazine and its degradation products, alone and in combination, on phototrophic microorganisms. Arch. Environ. Contam. Toxicol. 13, 35-4.
  • Türktemel, İ., 2014. T.C. Gıda Tarım ve Hayvancılık Bakanlığı, Tarımsal Araştırmalar Genel Müdürlüğü, Yabancı Ot Araştırma Çalışmaları Sunusu.
  • Vigo, C., Norman, J.R., Hooker, J.E. 2000. Biocontrol of the pathogen Phytophthora parasitica by arbuscular mycorrhizal fungi is a consequence of effects on ınfection loci. Plant Pathology. 49: 509-514.
  • Whipps, J.M. 2004. Prospects and limitations for mycorrhizas in biocontrol of root pathogens. Canadian Journal of Botany. 82: 1198- 1227.

Bazı toprak herbisitlerinin mikorizal fungus Glomus intraradices’in kök kolonizasyonu ve spor sayısı üzerine olan etkileri

Year 2016, Volume: 9 Issue: 2, 1 - 7, 15.08.2016

Abstract

Dünyada en çok kullanılan pestisit grubunu herbisitler oluşturmaktadır. Bu denli yoğun kullanılan ve özellikle toprağa uygulanan herbisitlerin toprak mikroflorasına bir takım olumsuz etkilerinin olması da son derece muhtemeldir. Toprak mikroflorasını oluşturan önemli etmenlerden biri de bitki kökleriyle simbiyotik olarak yaşayan ve pek çok faydası bilinen mikorizal funguslardır. Bu çalışma, dünyada en çok kullanılan toprak herbisitlerinden olan trifluralin, linuron, acetochlor ve imazethapyrin, mikorizal fungus Glomus intraradices’in kök kolonizasyonu ve topraktaki spor sayısına etkisini belirlemek amacıyla yürütülmüştür. Bu amaçla, kontrollü koşullarda sırasıyla domates, ayçiçeği, mısır ve nohut bitkileri G. intraradices ile inokule edilmiş saksı ortamında yetiştirilmiştir. Her bitki türü için ilgili herbisitin önerilen ve iki kat dozları dikim ve çıkış öncesinde saksı toprağına uygulanmıştır. Dört haftalık inkübasyon periyodundan sonra mikorizal fungusun kültür bitkisi kökleri üzerinde ki kolonizasyon oranı ve topraktaki spor sayısı belirlenmiştir. Kök kolonizasyon oranı herbisit uygulanmayan kontrol grubunda % 50’nin üzerinde gerçekleşirken, herbisitlerin önerilen ve iki kat dozlarında çok önemli düşüşler meydana gelmiştir. Herbisitlerin önerilen dozunda kök kolonizasyonu açısından en büyük azalmaya % 97’lik oranla acetochlor sebep olmuş, bunu % 87 ile linuron takip etmiştir. İki kat doz uygulamalarında ise imazethapyr uygulanan nohutların köklerinde hiç mikorizal kolonizasyon meydana gelmemiştir. Yine acetochlorun iki kat dozunda mısır köklerindeki kolonizasyon oranı % 98 oranında azalmıştır. Söz konusu herbisitlerin, G. intraradices’in topraktaki spor sayılarını da önemli ölçüde azalttığı saptanmıştır. Denemeye alınan herbisitler içerisinde imazethapyr, topraktaki spor sayısını önerilen ve iki kat dozda sırasıyla % 97,2 ve % 100 oranında azaltarak ilk sırayı almış, bunu acetochlor takip ederek sırasıyla % 81,8 ve % 89,6 oranında spor sayısında azalmaya neden olan ikinci herbisit olmuştur. Elde edilen bu sonuçlar göstermektedir ki grubu ve dozuna da bağlı olmakla birlikte herbisitler kültür bitkileriyle simbiyotik olarak yaşayan mikorizal fungusların gelişimi ve faaliyetini olumsuz şekilde etkilemektedir. Bu nedenle herbisitlerin seçimine dikkat edilmeli ve hedef dışı organizmalara yan etkileri fazla olan herbisitler tercih edilmemelidir

References

  • Allen, M. 1993. Mycorrhizal functioning: an integrative plant-fungal process. 1st Edition ISBN-10, 0412018918, Chapman and Hall. 534 pp.
  • Anil, G., Ashok, A., Chhavi, M., Aditya, K., Anju, T. 2011. Effect of herbicides fenoxaprop-p-ethyl and 2,4-D ethyl-ester on soil mycroflora including vam fungi in wheat crop. Indian Journal of Weed Science 43(1-2): 32-40
  • Anonim, 2013. Food and Agriculture Organization (FAO), www.fao.org, Erişim tarihi: 24.11.2013
  • Boldt, T.S., Jacobsen, C.S. 1998. Different toxic effects of the sulfonylurea herbicides metsulfuron methly, chlorsulfuron and thifensulfuron methyl on fluorescent pseudomonas isolated from an agricultural soil. Fems Microbiology Letters, 161, 29-35.
  • Brito, I., Carvalho, M., Goss, M.J. 2013. Soil and weed management for enhancing arbuscular mycorrhiza colonization of wheat. Soil Use and Management 29(4): 540-546
  • Changjin, D., Bin, Z. 2004a. Impact of herbicides on infection and hyphal enzyme activity of AM fungus. Acta Pedologica Sinica 41: 750-755
  • Changjin, D., Bin, Z. 2004b. Impact of herbicides on two kinds of arbuscular mycorrhizas. Acta Pedologica Sinica 34: 518-524
  • De, A., Bose, R., Kumar, A., Mozumdar, S. 2014. Target delivery of pesticides using biodegradable polymeric nanoparticles. Springer. 99 pp.
  • Druille, M., Omacini, M., Golluscio, R.A., Cabello, M.N. 2013. Arbuscular mycorrhizal fungi are directly and indirectly affected by glyphosate application. Applied Soil Ecology 72: 143-149
  • Elsen, A., Baimey, H., Swennen, R., Waele, D.D. 2003. Relative mycorrhizal dependency and mycorrhiza-nematode interaction in banana cultivars (Musa spp.) differing in nematode susceptibility. Plant and Soil, 256, 303-313.
  • Garcia-Romera, I., Miquel, J.A., Ocampo, J.A. 1988. Effect of cyanazine herbicide on VA mycorrhiza infection and growth of Pisum sativum. Pl Soil 107, 207-210.
  • Gerdemann, J.W. ve Nicholson, T.H. 1963. Spores of mycorrhizal endogene extracted from soil by wetsieving and decanting. Trans. Br. Mycol. Soc. 46:235-244.
  • Giovannetti, M. and Mosse, B. 1980. An evaluation of techniques for measuring vesicular-arbuscular mycorrhizal infection in roots. New Phytol. 84:489-500.
  • Hilderbrandt, U., Regvar, M., Bothe, H. 2007. Arbuscular mycorrhiza and heavy metal tolerance. Phytochemistry. 68: 139-146.
  • Karagiannidis, N., Bletsos F., Stavropoulos, N., 2002. Effect of Verticillium wilt (Verticillium dahliae Kleb.) and mycorrhiza (Glomus mosseae) on root colonization, growth and nutrient uptake in tomato and eggplant seedlings. Scientia Horticulturae. 94: 145-156.
  • Koske, R.E. and Gemma, J.N. 1989. A modified procedure for staining root to detect VAM. Mycological Research. 92:486-505.
  • Michalcewicz, W. 2001. Effects of selected herbicides on biomass and abundance of soil microorganisms. Rozparvy, 200, 92.
  • Mohammad, A., Mridha, M.A.U., Islam M.S., Ahmad, I. 2013. Effects of pesticides on mycorrhizal symbiosis in tea. International Journal of Tea Science 9(4): 19-24
  • Pampulha, M.E., Ferreira, M.A.S.S., Oliveira, A. 2007. Effects of phosphinothricin based herbicide on selected groups of soil microorganims. Journal of Basic Microbiology, 47, 325-331.
  • Pasaribu, A., Mohamad, R., Hashim, A., Rahman, Z., Omar, D. ve Morshed, M. 2013. Effect of herbicide on growth response and phosphorus uptake by host plant in symbiotic association with VA mycorrhiza (Glomus mosseae). Journal of Food, Agiculture & Environment 11(2): 352-357
  • Ocampo, J.A. ve Barea, J.M. 1985. Effect of carbamate herbicides on VA mycorrhiza infection and plant growth. Plant and Soil, 85, 375-383.
  • Özgönen, H. 2012. Toprak ve bitki dostu mikorizal funguslar.Tarım Günlüğü 9:28-31.
  • Sannazzaro A.I., Echeverria M, Alberto E.O., Ruiz O.A., Menendez A.B. 2007. Modulation of polyamine balance in lotus glaber by salinity and arbuscular mycorrhiza. Plant Physiology and Biochemistry. 45: 39-46.
  • Sharma, A.K., Johri, B.N., Gianinazzi, S. 1992. Vesicular-arbuscular mycorrhizae in relation to plant disease. World Journal of Microbiology and Biotechnology. 8 (6): 559-563.
  • Shirmohammadi, E., Khaje, M., Shahgholi, H., Talaei, G.H ve Goudarzifar, H. 2014. Interaction between fungi mycorrhiza and Treflan herbicide on root colonization of clover (Trifolium repens). Journal of Biodiversity and Environmental Sciences 5(2): 499-507
  • Sieverding, E. ve Leihner, D.E. 1984. Effect of herbicides on population dynamics of VA-mycorrhiza with cassava. Angewandte Botanik 58(3/4): 283-294
  • Stratton, G.W., 1984. Effects of the herbicide atrazine and its degradation products, alone and in combination, on phototrophic microorganisms. Arch. Environ. Contam. Toxicol. 13, 35-4.
  • Türktemel, İ., 2014. T.C. Gıda Tarım ve Hayvancılık Bakanlığı, Tarımsal Araştırmalar Genel Müdürlüğü, Yabancı Ot Araştırma Çalışmaları Sunusu.
  • Vigo, C., Norman, J.R., Hooker, J.E. 2000. Biocontrol of the pathogen Phytophthora parasitica by arbuscular mycorrhizal fungi is a consequence of effects on ınfection loci. Plant Pathology. 49: 509-514.
  • Whipps, J.M. 2004. Prospects and limitations for mycorrhizas in biocontrol of root pathogens. Canadian Journal of Botany. 82: 1198- 1227.
There are 30 citations in total.

Details

Primary Language Turkish
Journal Section Research Article
Authors

Yasin Emre Kitiş

Beytullah Yazır This is me

Hülya Özgönen Özkaya This is me

Publication Date August 15, 2016
Published in Issue Year 2016 Volume: 9 Issue: 2

Cite

APA Kitiş, Y. E., Yazır, B., & Özkaya, H. Ö. (2016). Bazı toprak herbisitlerinin mikorizal fungus Glomus intraradices’in kök kolonizasyonu ve spor sayısı üzerine olan etkileri. Biological Diversity and Conservation, 9(2), 1-7.

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❖ Biological Diversity and Conservation/ Biyolojik Çeşitlilik ve Koruma
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