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Biological Characterization of Marssonina coronaria Infecting Apple Trees in Korea

사과나무를 가해하는 한국산 갈색무늬병균의 생물학적 특성

  • Back, Chang-Gi (School of Applied Biosciences, Kyungpook National University) ;
  • Jung, Hee-Young (School of Applied Biosciences, Kyungpook National University)
  • 백창기 (경북대학교 응용생명과학부) ;
  • 정희영 (경북대학교 응용생명과학부)
  • Received : 2014.09.29
  • Accepted : 2014.09.29
  • Published : 2014.09.30

Abstract

Apple blotch is a major apple disease and recently it causes critical economic losses in apple orchards in Korea. In this review, we described the history of apple blotch researches, ecology and life cycle of Marssonina coronaria, cultural and molecular characteristics and simple isolation method as well. Furthermore, characteristic of apple blotch like symptoms, its cause still unknown, occurs frequently in cv. "Fuji" was described in detail.

사과 갈색무늬병은 최근 우리나라 사과 과수원에 심각한 경제적 피해를 입히는 질병이다. 본 총설에서는 우리나라에서의 사과 갈색무늬병 연구역사와 갈색무늬병의 발생생태, 병원균의 생활환, 그들의 형태학적, 배양학적, 유전학적 특징 및 분리배양 기법에 대해 종합적으로 기술하였다. 또한, 후지 품종에 빈번히 발생하는 원인미상의 갈색무늬병 유사증상에 대한 특징도 상술하였다.

Keywords

References

  1. Harada Y, Sawamura K, Konno K. Diplocarpon mali sp. nov., the perfect state of apple blotch fungus Marssonina coronaria. Ann Phytopathol Soc Jpn 1974;40:412-8. https://doi.org/10.3186/jjphytopath.40.412
  2. Uhm JY. 2010. Reduced fungicide spray program for major apple diseases Korea. Korea: Culture and Horticulture Press; 2010.
  3. Huang Y. Overwintering characteristics of Marssonina coronaria (Ell. et Davis) Davis. J Southwest Forestry College 1986;1:60-5.
  4. Sharma JN, Gautam DR. Studies on premature leaf fall in apple: A new problem. Indian J Plant Prot 1997;25:8-12.
  5. Davis JJ. A provisional list of parasitic fungi of Wisconsin. Transactions of the Wisconsin Academy of Sciences, Arts and Lett 1903;14:83-106.
  6. Davis JJ. Third supplementary list of parasitic fungi of Wisconsin. Transactions of the Wisconsin Academy of Sciences, Arts and Lett 1914; 14:846-984.
  7. Parmelee JA. Marssonina leafspot of apple. Can Plant Dis Surv 1971;57:91-2.
  8. Kretzschmar AA, Marodin GAB, Duarte V. Occurrence and intensity of Marssonina mali on apple cv. Eva in the central basin of Rio Grande Do Sul state. Rev Cienc Agrovet Lages 2005;4:145-7.
  9. Piepenbring M, Camarena J, Cruz D, Gomez AK, Guerrero Y, Hofmann TA, Kirschner R, de Matas M, Perez L, Rodriguez D, Ureta J, Vargas I, Williams C. New records of pathogenic fungi on cultivated plants in Panama. Mycotaxon 2011;115:534-5. https://doi.org/10.5248/111.534
  10. Tamietti G, Matta A. First report of leaf blotch caused by Marssonina coronaria on apple in Italy. Plant Dis 2003;87:1005.
  11. Persen U, Steffek R, Freiding C, Bedlan G. First report of Diplocarpon mali on Malus domestica in Austria. J fr Kulturpflanzen 2012;64:168-70.
  12. Lindner L. Die Marssonina-Blattfleckenkrankheit jetzt auch in Sdtirol Obst und Weinbau 2012;49:66-8.
  13. Oberhnsli T, Vorley T, Tamm L, Schrer HJ. Development of a quantitative PCR for improved detection of Marssonina coronaria in field samples. In: Proceeding of the 16th International Conference on Organic Fruit-Growing Conference; 2014 Feb 17-19; Hohenheim, Germany; Foerdergemeinschaft Oekologischer Obstbau e.V.; 2014. p. 187-90.
  14. Miyake I. On some fungus diseases of our useful plants. Bot Mag 1907;21:39-44. https://doi.org/10.15281/jplantres1887.21.243_39
  15. Nakatani F, Hoshi N. Effect of temperature on incidence of apple blotch disease caused by Diplocarpon mali Harada et Sawamura. Ann Rept Plant Prot North Japan 1999;50:89-91.
  16. Nakatani F, Hoshi N. Susceptibility of mature leaves of apple varieties to apple blotch disease caused by Diplocarpon mali Harada et Sawamura. Ann Rept Plant Prot North Japan 1999;50:85-8.
  17. Suzaki K, Yoshida K. Fungicide spraying during ascospore discharge by the causal fungus of apple blotch (Diplocarpon mali) suppresses development of the disease. Ann Rept Plant Prot North Japan 2002;53:115-7.
  18. Kanno E, Ogata T. Ascospore dissemination of apple blotch (Diplocarpon mali) and optimal timing of fungicide application in Fukushima prefecture. Ann Rept Plant Prot North Japan 2004;55:95-8.
  19. Tanaka S, Kamegawa N, Ito SI, Kameya-Iwaki M. Detection of thiophanate-methyl-resistant strains in Diplocarpon mali, causal fungus of apple blotch. J Gen Plant Pathol 2000;66:82-5. https://doi.org/10.1007/PL00012926
  20. Sharma JN, Sharma PK, Sharma A. Studies on epidemiology and management of Marssonina blotch, the cause of premature leaf fall in apple. In: Sharma R, Sharma JN editors. Jodhpur, India: Scientific press; 2005. p. 1-7.
  21. Kumar A, Sharma JN. Monitored control of Marssonina blotch of apple caused by Marssonina coronaria. Indian Phytopathol 2014;67:70-6.
  22. Zhao H, Huang L, Xiao CL, Liu J, Wei J, Gao X. Influence of culture media and environmental factors on mycelial growth and conidial production of Diplocarpon mali. Lett Appl Microbiol 2010;50:639-44. https://doi.org/10.1111/j.1472-765X.2010.02847.x
  23. Yin L, Zou Y, Ke X, Liang D, Du X, Zhao Y, Zhang Q, Ma F. Phenolic responses of resistant and susceptible Malus plants induced by Diplocarpon mali. Sci Hortic-Amsterdam 2013;164:17-23. https://doi.org/10.1016/j.scienta.2013.08.037
  24. Yin L, Zou Y, Li M, Ke X, Li C, Liang D, Ma F. Resistance of Malus plants to Diplocarpon mali infection is associated with the antioxidant system and defense signaling pathways. Physiol Mol Plant P 2013;84:146-52. https://doi.org/10.1016/j.pmpp.2013.10.001
  25. Li Y, Hirst PM, Wan Y, Liu Y, Zhou Q, Gao H, Guo Y, Zhao Z, Wang L, Han M. Resistance to Marssonina coronaria and Alternaria alternata apple pathotype in the major apple cultivars and rootstocks used in China. Hort Science 2012;47:1241-4.
  26. Zhao H, Han Q, Wang J, Gao X, Xiao CL, Liu J, Huang L. Cytology of infection of apple leaves by Diplocarpon mali. Eur J Plant Pathol 2013;136:41-9. https://doi.org/10.1007/s10658-012-0129-8
  27. Li M, Xu J, Qiu Z, Zhang J, Ma F, Zhang J. Screening and identification of resistance related proteins from apple leaves inoculated with Marssonina coronaria (EII. & JJ Davis). Proteome Sci 2014;12:7 https://doi.org/10.1186/1477-5956-12-7
  28. Uhm JY, Lee DH, Lee SK. Development of fungicide spray program for the apples to be exported to the United States of America. Kor J Plant Pathol 1995;11:17-29.
  29. Kim DA, Lee SW, Lee JT. Ecology of Marssonina blotch caused by Diplocarpon mali on apple tree in Kyungpook, Korea. Agric Res Bull Kyungpook Natl Univ 1998;16:84-95.
  30. Lee HT, Shin HD. Taxonomic studies on the genus Marssonina in Korea. Mycobiology 2000;28:1:39-46.
  31. Lee DH, Lee SW, Choi KH, Kim DA, Uhm JY. Survey on the occurrence of apple disease in Korea from 1992 to 2000. Plant Pathology J 2006;22:375-80. https://doi.org/10.5423/PPJ.2006.22.4.375
  32. Lee SW, Lee DH, Chio KH, Kim DA. A report on current management of major apple pests based on census data from farmers. Kor J Hortic Sci 2007;25:196-203.
  33. Lee DH, Shin HC, Cho RH, Ulm JY. Reducing fungicide spray frequency for major apple diseases by increasing the spray interval from 15 to 25 days. Plant Pathology J 2009;25:270-9. https://doi.org/10.5423/PPJ.2009.25.3.270
  34. Cho JY. Assessment of control efficacy of fungicides comprised of current spraying program for apple against Marssonina blotch [dissertation]. Kyungpook National University; 2009.
  35. Lee DH, Back CG, Win NKK, Choi KH, Kim KM, Kang IK, Choi C, Yoon TM, Uhm JY, Jung HY. Biological characterization of Marssonina coronaria associated with apple blotch disease. Mycobiology 2011;39:200-5. https://doi.org/10.5941/MYCO.2011.39.3.200
  36. Sagong DH, Kweon HJ, Song YY, Park MY, Nam JC, Kang SB, Lee SG. Influence of defoliation by Marssonina blotch on vegetative growth and fruit quality in 'Fuji'/M.9 apple tree. Kor J Hort Sci Technol 2012;29:531-8.
  37. Back CG. Biological characterization and diagnostic methods of Marssonina coronaria causing apple blotch disease in Korea [dissertation]. Kyungpook National University; 2014.
  38. Sharma JN, Sharma A, Sharma P. Out-break of Marssonina blotch in warmer climates causing premature leaf fall problem of apple and its management. Acta Hortic 2004;662:405-9.
  39. Lee CH, Lee SY, Jung HY, Kim JH. The application of optical coherence tomography in the diagnosis of Marssonina blotch in apple leaves. J Opt Soc Korea 2012;16:133-40. https://doi.org/10.3807/JOSK.2012.16.2.133
  40. Lee SY, Lee CH, Back CG, Son HJ, Kim GW, Woo H, Yoon TM, Kim JH, Jung HY. Early diagnosis method for Marssonina blotch using OCT and application at apple orchards in 2013. In: proceeding of International meeting of the federation of Korean microbiological societies; 2013 Oct 17-18; Seoul, Korea. Seoul: The Federation of Korean Microbiological Societies; 2013. p. 86.
  41. Lee HT, Shin HD. Taxonomic studies on the genus Marssonina in Korea. Mycobiology 2000;28:1:39-46.
  42. Zhu S, Cao YZ, Jiang C, Tan BY., Wang Z, Feng S, Zhou Y. Sequencing the genome of Marssonina brunnea reveals fungus-poplar co-evolution. BMC genomics 2012;13:382. https://doi.org/10.1186/1471-2164-13-382
  43. Jonkers H. Review on leaf spot and leaf drop: A physiological disorder of the 'Golden Delicious' apple. Scientia Hortic 1973;1:231-7. https://doi.org/10.1016/0304-4238(73)90035-6
  44. Ellis MA. Necrotic Leaf Blotch of Golden Delicious Apples. The Ohio State University Extension Fact Sheet HYG 2008;3204:8.
  45. Lee SY, Back CG, Kang, IK, Yoon TM, Uhm, JY, Jung HY. Differentiation of apple blotch diseased and apple blotch like symptom leaves based on outer and inner structural characteristics. In: proceeding of 2014 KSPP spring meeting; 2014 Apr 24-25; Andong, Korea. Suwon: The Korean Society of Plant Pathology; 2014. p. 67.

Cited by

  1. Occurrence and Analysis of Apple Blotch-like Symptoms on Apple Leaves vol.33, pp.3, 2015, https://doi.org/10.7235/hort.2015.14179
  2. Apple blotch disease (Marssonina coronaria (Ellis & Davis) Davis) – review and research prospects pp.1573-8469, 2019, https://doi.org/10.1007/s10658-018-1590-9