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Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune

Yıl 2015, Cilt: 24 Sayı: 1, 75 - 78, 25.07.2015
https://doi.org/10.21566/tbmaed.48629

Öz

Barley scald caused by Rhynchosporium commune is an important disease of barley (Hordeum vulgare). Barley mutants could be used for enhancing genetic diversity in barley. In this study, barley cultivar Tokak 157/37 was subjected to gamma irradiation using Cobalt- 60 as the radiation source and mutant barleys were obtained. Under greenhouse conditions, twenty-five advanced mutant barley lines (M8 generation) and two barley cultivars (Tokak 157/37 and Bülbül 89) were tested for their resistance status to 3 Rhynchosporium commune single spore isolates obtained from Gaziantep, Eskişehir and Manisa provinces of Turkey. For evaluation of the lines and cultivars a 0-4 scale was used. Response of lines to isolates ranged between highly resistant and highly susceptible. Isolate obtained from Gaziantep was the most virulent followed by isolates obtained from Manisa and Eskişehir. Mutant barley line # 20 showed a resistant reaction to Gaziantep isolate. Mutant barley lines # 7, 13, 20, 21, 23 and 25 showed a highly resistant reaction to Eskişehir isolateand line #16 showed a resistant reaction to this isolate. Lines # 7 and 25 exhibited resistant and intermediate reactions to Manisa isolate, respectively. The other mutant barley lines showed susceptible and highly susceptile reactions to isolates. Barley cultivars Tokak 157/37 and Bülbül 89 exhibited highly susceptible reactions to all 3 isolates.

Kaynakça

  • Ali S. M. and Boyd J. R. (1974). Host range and physiologic specialization in Rhynchosporium secalis. Aust. J. Agric. Res. 25: 21–31.
  • Arabi M.I.E, Jawhar M., and Al-Shehadah E. 2008. Molecular and pathogenic variation identified among isolates of Rhynchosporium secalis from Syria. Journal of Plant Pathology 90: 179-184.
  • Araz A. and Maden S, 2006. Pathogenic variation among isolates of Rhynchosporium secalis from cultivated barley growing in Central Anatolia, Turkey. Plant Pathology Journal 5: 244-247.
  • Avora A. and Knogge W. 2012. Rhynchosporium commune : a persistent threat to barley cultivation. Molecular Plant Pathology 13: 986-997.
  • Aydın G., Akan, K., Çetin L., Mert, Z., Peşkircioğlu, H. 2014. Bazı mutant arpa hatlarının arpa yaprak lekesi hastalığına (Rhynchosporium secalis) karşı reaksiyonlarının sera koşullarında belirlenmesi. Uluslararası Mezopotamya Tarım Kongresi 22-25 Eylül 2014. Diyarbakır.
  • Chauhan S.V.S., Kumar R., and Kindoshita T. 1985. Protein and malt quality in some gamma rays induced high yielding mutants in barley ( Hordeum vulgare). Wht. Barl. Trit. Abst, 2: 356.
  • Düşünceli F., Çetin L, Albustan S, Mert Z, Akan K, and Karakaya A. 2008. Determination of the reactions of some barley cultivars and genotypes to scald under greenhouse and field conditions. Tarım Bilimleri Dergisi 14: 46-50.
  • El-Ahmed A. M. (1981). Seedling Reaction of the 7th IBON to R. secalis in the greenhouse and source of Resistance. Barley Diseases and Associated Breeding Methodology Workshop. 19–23 April, 1981, Rabat, Morocco.
  • Garg O. K., Misra B. C., and Singh B. P. 1972. Effects of pre- sowing exposure of seeds to gamma- radiation on the drought resistance behavior of barley plants ( Hordeum vulgare L.). Plant and Soil, 36: 39-45.
  • Jawher M. and Arabi M. I. E. 1997. The effects of low doses ( gamma rays) on the susceptibility of some barley cultivars to Rhynchosporium secalis. Syrian Arab Republic Atomic Energy Commission (AECS). Report on Scientific Laboratory Study. Department of Radiation Agriculture. AECS-A/RSS 193.
  • Mert Z. and Karakaya A. 2004. Assessment of the seedling reactions of Turkish barley cultivars to scald. Journal of Phytopathology 152: 190-192.
  • Robbertse B., Lennox C. L., Van Jaarsveld A. B., Crous P. W., and Van der Rijst M. 2000. Pathogenicity of the Rhynchosporium secalis population in the Western Cape province of South Africa. Euphytica 115: 75- 82.
  • Sheikh Jabbari J. 2008. Molecular characterisation of differentially expressed genes in the interaction of barley and Rhynchosporium secalis. Ph. D. Thesis. University of Adelaide, Australia. 165 pp.
  • Shipton W. A., Boyd W. J. R., and Ali S. M. 1974. Scald of barley. Review of Plant Pathology 53: 839- 861
  • Siddiqu S. H., Iqbal M., Muhammad T., and Jan M. T. 1985. Variation in genetic parameter of barley and triticale after seed irradiation. Sarhad J. Agric. 1: 339- 345.
  • Tekauz A. 1991. Pathogenic variation in Rhynchosporium secalis on barley in Canada. Canadian Journal of Plant Pathology 13: 298-304.
  • Whittall A. P. 2004. Leaf exudates of barley involved in the defence against Rhynchosporium secalis. Thesis. University of Adelaide, Australia. 152 pp.
  • Xue G. and Hall R. 1992. Effects of surface wetness duration, temprature, and inoculum concentration on infection of winter barley by Rhynchosporium secalis. Phytoprotection 73: 61- 68.
  • Zaffarano P. L., McDonald B. A., and Linde C. C. 2011. Two new species of Rhynchosporium. Mycologia 103: 195- 202.
  • Zhang Q., Webster R. K., Crandall B. A., Jackson L. F., and Saghai Maroof M. A. 1992. Race composition and pathogenicity associations of Rhynchosporium secalis in California. Phytopathology 82: 798- 803.

İki Arpa Çeşidinin ve Gamma Işınlaması ile Elde Edilmiş İleri Kademe Arpa Hatlarının Rhynchosporium commune’ a Fide Dönemi Tepkileri

Yıl 2015, Cilt: 24 Sayı: 1, 75 - 78, 25.07.2015
https://doi.org/10.21566/tbmaed.48629

Öz

Rhynchosporium commune tarafından meydana getirilen arpa yaprak lekesi hastalığı arpa (Hordeum vulgare) bitkilerinin önemli bir hastalığıdır. Arpa mutantları arpada genetik çeşitliliği zenginleştirmek için kullanılabilir. Bu çalışmada Tokak 157/37 arpa çeşidinin Kobalt-60 kaynağında gamma ışınlarıyla ışınlanması sonucu geliştirilen M8 generasyon kademesindeki 25 mutant arpa hattının ve iki arpa çeşidinin (Tokak 157/37 ve Bülbül 89) Gaziantep, Eskişehir ve Manisa’dan elde edilen 3 Rhynchosporium commune tek spor izolatına sera koşullarında dayanıklılık durumları incelenmiştir. Çeşit ve hatların değerlendirilmesi için 0-4 ıskalası kullanılmıştır. Hatların izolatlara tepkileri yüksek derecede dayanıklı ile yüksek derecede hassas arasında değişmiştir. Gaziantep’den elde edilen izolat en virülent izolat olarak bulunmuş ve bu izolatı Manisa ve Eskişehir izolatları takip etmiştir. Yirmi numaralı mutant arpa hattı Gaziantep izolatına dayanıklı tepki vermiştir. Yedi, 13, 20, 21, 23 ve 25 numaralı mutant arpa hatları Eskişehir izolatına yüksek derecede dayanıklı tepki verirken 16 numaralı hat dayanıklı tepki vermiştir. Yedi numaralı mutant arpa hattı Manisa izolatına dayanıklı tepki verirken 25 numaralı hat Manisa izolatına orta derecede dayanıklı tepki vermiştir. Diğer mutant arpa hatları izolatlara hassas ile yüksek derecede hassas tepkiler vermişlerdir. Tokak 157/37 ve Bülbül 89 çeşitleri 3 izolata da yüksek derecede hassas tepki vermişlerdir.

Kaynakça

  • Ali S. M. and Boyd J. R. (1974). Host range and physiologic specialization in Rhynchosporium secalis. Aust. J. Agric. Res. 25: 21–31.
  • Arabi M.I.E, Jawhar M., and Al-Shehadah E. 2008. Molecular and pathogenic variation identified among isolates of Rhynchosporium secalis from Syria. Journal of Plant Pathology 90: 179-184.
  • Araz A. and Maden S, 2006. Pathogenic variation among isolates of Rhynchosporium secalis from cultivated barley growing in Central Anatolia, Turkey. Plant Pathology Journal 5: 244-247.
  • Avora A. and Knogge W. 2012. Rhynchosporium commune : a persistent threat to barley cultivation. Molecular Plant Pathology 13: 986-997.
  • Aydın G., Akan, K., Çetin L., Mert, Z., Peşkircioğlu, H. 2014. Bazı mutant arpa hatlarının arpa yaprak lekesi hastalığına (Rhynchosporium secalis) karşı reaksiyonlarının sera koşullarında belirlenmesi. Uluslararası Mezopotamya Tarım Kongresi 22-25 Eylül 2014. Diyarbakır.
  • Chauhan S.V.S., Kumar R., and Kindoshita T. 1985. Protein and malt quality in some gamma rays induced high yielding mutants in barley ( Hordeum vulgare). Wht. Barl. Trit. Abst, 2: 356.
  • Düşünceli F., Çetin L, Albustan S, Mert Z, Akan K, and Karakaya A. 2008. Determination of the reactions of some barley cultivars and genotypes to scald under greenhouse and field conditions. Tarım Bilimleri Dergisi 14: 46-50.
  • El-Ahmed A. M. (1981). Seedling Reaction of the 7th IBON to R. secalis in the greenhouse and source of Resistance. Barley Diseases and Associated Breeding Methodology Workshop. 19–23 April, 1981, Rabat, Morocco.
  • Garg O. K., Misra B. C., and Singh B. P. 1972. Effects of pre- sowing exposure of seeds to gamma- radiation on the drought resistance behavior of barley plants ( Hordeum vulgare L.). Plant and Soil, 36: 39-45.
  • Jawher M. and Arabi M. I. E. 1997. The effects of low doses ( gamma rays) on the susceptibility of some barley cultivars to Rhynchosporium secalis. Syrian Arab Republic Atomic Energy Commission (AECS). Report on Scientific Laboratory Study. Department of Radiation Agriculture. AECS-A/RSS 193.
  • Mert Z. and Karakaya A. 2004. Assessment of the seedling reactions of Turkish barley cultivars to scald. Journal of Phytopathology 152: 190-192.
  • Robbertse B., Lennox C. L., Van Jaarsveld A. B., Crous P. W., and Van der Rijst M. 2000. Pathogenicity of the Rhynchosporium secalis population in the Western Cape province of South Africa. Euphytica 115: 75- 82.
  • Sheikh Jabbari J. 2008. Molecular characterisation of differentially expressed genes in the interaction of barley and Rhynchosporium secalis. Ph. D. Thesis. University of Adelaide, Australia. 165 pp.
  • Shipton W. A., Boyd W. J. R., and Ali S. M. 1974. Scald of barley. Review of Plant Pathology 53: 839- 861
  • Siddiqu S. H., Iqbal M., Muhammad T., and Jan M. T. 1985. Variation in genetic parameter of barley and triticale after seed irradiation. Sarhad J. Agric. 1: 339- 345.
  • Tekauz A. 1991. Pathogenic variation in Rhynchosporium secalis on barley in Canada. Canadian Journal of Plant Pathology 13: 298-304.
  • Whittall A. P. 2004. Leaf exudates of barley involved in the defence against Rhynchosporium secalis. Thesis. University of Adelaide, Australia. 152 pp.
  • Xue G. and Hall R. 1992. Effects of surface wetness duration, temprature, and inoculum concentration on infection of winter barley by Rhynchosporium secalis. Phytoprotection 73: 61- 68.
  • Zaffarano P. L., McDonald B. A., and Linde C. C. 2011. Two new species of Rhynchosporium. Mycologia 103: 195- 202.
  • Zhang Q., Webster R. K., Crandall B. A., Jackson L. F., and Saghai Maroof M. A. 1992. Race composition and pathogenicity associations of Rhynchosporium secalis in California. Phytopathology 82: 798- 803.
Toplam 20 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Makaleler
Yazarlar

Mohammad Azamparsa Bu kişi benim

Aziz Karakaya Bu kişi benim

Zafer Mert Bu kişi benim

Gülizar Aydın Bu kişi benim

Hayrettin Peşkircioğlu Bu kişi benim

Emine Seçer Bu kişi benim

Dilan Özmen Bu kişi benim

İhsan Tutluer Bu kişi benim

Zafer Sağel Bu kişi benim

Yayımlanma Tarihi 25 Temmuz 2015
Yayımlandığı Sayı Yıl 2015 Cilt: 24 Sayı: 1

Kaynak Göster

APA Azamparsa, M., Karakaya, A., Mert, Z., Aydın, G., vd. (2015). Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi, 24(1), 75-78. https://doi.org/10.21566/tbmaed.48629
AMA Azamparsa M, Karakaya A, Mert Z, Aydın G, Peşkircioğlu H, Seçer E, Özmen D, Tutluer İ, Sağel Z. Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi. Temmuz 2015;24(1):75-78. doi:10.21566/tbmaed.48629
Chicago Azamparsa, Mohammad, Aziz Karakaya, Zafer Mert, Gülizar Aydın, Hayrettin Peşkircioğlu, Emine Seçer, Dilan Özmen, İhsan Tutluer, ve Zafer Sağel. “Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium Commune”. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi 24, sy. 1 (Temmuz 2015): 75-78. https://doi.org/10.21566/tbmaed.48629.
EndNote Azamparsa M, Karakaya A, Mert Z, Aydın G, Peşkircioğlu H, Seçer E, Özmen D, Tutluer İ, Sağel Z (01 Temmuz 2015) Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi 24 1 75–78.
IEEE M. Azamparsa, “Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune”, Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi, c. 24, sy. 1, ss. 75–78, 2015, doi: 10.21566/tbmaed.48629.
ISNAD Azamparsa, Mohammad vd. “Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium Commune”. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi 24/1 (Temmuz 2015), 75-78. https://doi.org/10.21566/tbmaed.48629.
JAMA Azamparsa M, Karakaya A, Mert Z, Aydın G, Peşkircioğlu H, Seçer E, Özmen D, Tutluer İ, Sağel Z. Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi. 2015;24:75–78.
MLA Azamparsa, Mohammad vd. “Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium Commune”. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi, c. 24, sy. 1, 2015, ss. 75-78, doi:10.21566/tbmaed.48629.
Vancouver Azamparsa M, Karakaya A, Mert Z, Aydın G, Peşkircioğlu H, Seçer E, Özmen D, Tutluer İ, Sağel Z. Seedling Response of Two Barley Cultivars and Gamma Ray-Induced Advanced Barley Lines to Rhynchosporium commune. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi. 2015;24(1):75-8.