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Evaluation on Red Pepper Germplasm lines (Capsicum spp.) for Resistance to Anthracnose Caused by Colletotrichum acutaum

  • Kim, Jeong-Soon (National Agrobiodiversity Center, National Academy of Agricultural Science and Technology, Rural Development Administration) ;
  • Jee, Hyeong-Jin (Organic Farming Technology Division, National Academy of Agricultural Science and Technology, Rural Development Administration) ;
  • Gwag, Jae-Gyun (National Agrobiodiversity Center, National Academy of Agricultural Science and Technology, Rural Development Administration) ;
  • Kim, Chung-Kon (National Agrobiodiversity Center, National Academy of Agricultural Science and Technology, Rural Development Administration) ;
  • Shim, Chang-Ki (National Agrobiodiversity Center, National Academy of Agricultural Science and Technology, Rural Development Administration)
  • 투고 : 2010.01.31
  • 심사 : 2010.06.29
  • 발행 : 2010.09.01

초록

We evaluated 209 Capsicum accessions from the National Agrobiodiversity of RDA, for their reaction against of anthracnose disease caused by Colletotrichum acutatum. Two hundred nine accessions of Capsicum were almost composed with Capsicum annuum var. annuum originated from 37 countries. The percentage of infection due to C. acutatum ranged from 11.1% to 100% on immature and matured pepper fruits at 21 days after inoculation. On immature fruits of pepper, one hundred seventy three accessions of tested pepper were found infected with C. acutatum. Out of the 173 accessions, eighty five accessions were susceptible to anthracnose with dark brown to black lesions and slowly increased in size at 21 days after inoculation. Only thirty six accessions showed resistance against C. acutatum. On mature fruits of pepper, one hundred ninety eight accessions were infected with C. acutatum at 21 days after inoculation. Twenty one accessions showed a resistance reaction against C. acutatum. The results of this work indicated that all of resistance accessions to C. acutatum were have a genetic potential for the resources of resistance can be further used in pepper breeding programme against anthracnose and also demand more detailed investigation in this.

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참고문헌

  1. Andrews, J. 1995. Peppers: The domesticated Capsicums, new,ed., University of Texas Press. Austin, USA. 186 p.
  2. Andrews, J. 1999. The Pepper Trail: History and recipes fromaround the world. University of North Texas Press. Texas,USA. 261 p.
  3. Barla, J. B. and Bosland, P. W. 2004. Unraveling the speciesdilemma in Capsicum frutescens and C. Chinense (Solanaceae):A multiple evidence approach using morphology.Molecular analysis and sexual compatibility. J. American Soc.Hor. Sci. 129:826-832.
  4. Berstein, B., Zehr, E. I., Dean, R. A. and Shabi, E. 1995. Characteristicsof Colletotrichum from peach, apple, pecan, and otherhosts. Plant Dis. 79:478-482. https://doi.org/10.1094/PD-79-0478
  5. Bosland, P. W. 1994. Chiles: history, cultivation, and uses. pp.347-366. In: G. Charalambous, ed., Spices, herbs, and ediblefungi. Elsevier Publ., New York.
  6. Bosland, P. W. 1996. Capsicums: Innovative uses of an ancientcrop. pp. 479-487. In: J. Janick, ed., Spices, herbs, and ediblefungi. Elsevier Publ., New York.
  7. Bosland, P. W. and Votava, E. J. 2000. Peppers: Vegetable and spice Capsicums. Crop Production Science in Horticulture 12. CAB. International Publishing, Wallingford, England, UK. 204p.
  8. Chae, Y., Shieh, J. C., Park, J. B. and Engle, L. M. 2003. Morphologicalevaluation of Capsicum germplasm using statistic analysis.Kor. J. Hort. Sci. Technol. 21(Suppl. II):63.
  9. Cheema, D. S., Singh, D. P., Eawal, R. D. and Deshpande, A. A.1984. Inheritance of resistance to anthracnose disease in chillies.Capsicum Newsletter 3, 44 p
  10. Choi, K. S. and Pae, D. H. 1987. Studies on the breeding of resistantvarieties of pepper 3. Study on the inoculation methodsfor resistant varieties of pepper to anthracnose. Rural Dev.Administration (Hort.) 29:16-23.
  11. Collins, M. D., Mayer-Wasmund, L. and Bosland, P. W. 1995.Improved method for quantifying capsaicinoids in Capsicumusing high performance liquid chromatography. HortScience30:137-139.
  12. Cronin, J. R. 2002. The Chili peppers pungent principle: Capsaicindelivers diverse health benefits. Alternative and ComplementaryTherapies 8:110-113. https://doi.org/10.1089/10762800252909865
  13. Eshbaugh, W. H. 1993. Peppers: History and exploitation of a serendipitousnew crop discovery. In J. Jack and J. E. Simon eds,New Crops, pp. 132-139. John Wiley & Sons, New York,USA.
  14. Freeman, S. and Katan, T. 1997. Identification of Colletotrichumspecies responsible for anthracnose and root necrosis of strawberryin Israel. Phytopathology 87:516-521. https://doi.org/10.1094/PHYTO.1997.87.5.516
  15. Freeman, S., Katan, T. and Shabi, E. 1998. Characteristics of Colletotrichumspecies responsible for anthracnose disease of variousfruits. Plant Dis. 82:596-605. https://doi.org/10.1094/PDIS.1998.82.6.596
  16. Hadden, J. F. and Black, L. L. 1988. Anthracnose of peppercaused by Colletotrichum spp. pp. 189-199. In: Tomato andPepper production in Tropics. S. K. Green, ed., AVRDC,Shanhua, Taiwan.
  17. Heiser, Jr. C. B. 1976. Peppers: Capsicum (Solanaceae). In: N. W.Simmonds, ed., Evolution of Crop plants, pp. 265-268. Longman,London, UK.
  18. Heiser, Jr. C. B. 1985. Ethnobotany of the naranjilla (Solanumquitoense) and its relatives. Economic Botany 39:4-11 https://doi.org/10.1007/BF02861168
  19. Heiser, Jr. C. B. and Pickersgill, B. 1969. Names for the cultivatedCapsicum species (Solanaceae). Taxon 18:277-283. https://doi.org/10.2307/1218828
  20. Heiser, Jr. C. B. and Smith P. C. 1953. The cultivated Capsicumpeppers. Eco. Bot. 1:214-227.
  21. Hoffman, P. G., Lego, M. C. and Galetto, W. G. 1983. Separationand quantitation of red pepper major heat principles byreverse-phase high pressure liquid chromatography. J. Agr.Food Chem. 31:1326-1330. https://doi.org/10.1021/jf00120a044
  22. Hong, J. K. and Hwang, B. K. 1998. Influence of inoculums density,wetness duration, plant age, inoculation method, and cultivarresistance on infection of pepper plants by Colletotrichumcocodes. Plant Dis. 82:1079-1083. https://doi.org/10.1094/PDIS.1998.82.10.1079
  23. IBPGR. 1983. Genetic resources of Capsicum. In: Board for plantGenetic Resources, Rome.
  24. Idu, M. and Ogbe, T. M. 1997. Studies on the morphology ofCapsicum species. J. Plant Anatomy and Morphology 7:114-123.
  25. Jarret, R. L. and Dang, P. 2004. Revisiting the waxy locus and theCapsicum annuum L. complex. Georgia. J. of Science 62:117-133.
  26. Kim D. H., Jeon, Y. A., Go, S. J., Lee, J. K. and Hong, S. B. 2006.Reidentification of Colletotrichum gloeosporioides and C.acutatum isolates stored in Korean Agricultural Culture Collection(KACC). Res. Plant Dis. 12:168-177. https://doi.org/10.5423/RPD.2006.12.3.168
  27. Kim, C. H. and Park, K. S. 1998. A predictive model of diseaseprogression of red-pepper anthracnose. Korean J. PlantPathol. 4:325-331.
  28. Kim, H. G. and Nam, M. H. 1999. Anthracnose of strawberry inKorea. Plant Dis. Agric. 5:8-13.
  29. Kim, J. T., Park, S. Y., Choi, W. B., Lee, Y. H. and Kim, H. T.2008. Characterization of Colletotrichum isolates causinganthracnose of pepper in Korea. Plant Pathol. J. 24:17-23. https://doi.org/10.5423/PPJ.2008.24.1.017
  30. Kim, K. K., Yoon, J. B., Park, H. G., Park, E. W. and Kim, Y. H.2004. Structural modifications and programmed cell death ofchili pepper fruits related to resistance responses to Colletotrichumgloeosporioides infection. Genetics and Resistance.94:1295-1304.
  31. Kim, S. T., Yoon, J. B., J. W. and Park, H. G. 2008. A major recessivegene associated with anthracnose resistance to Colletotrichumcapsici in chili pepper (Capsicum annuum L.). BreedingScience 58:137-141. https://doi.org/10.1270/jsbbs.58.137
  32. Kim, W. G., Cho, E. G. and Lee, E. J. 1986. Two strains of Colletotrichumgloeosporioides Prnz. causing anthracnose of pepperfruits. Kor. J. Plant Pathol. 2:107-113.
  33. Kim, Y. S., Min, J. Y., Kang, B. K., Bach, N. V., Choi, W. B.,Park, E. W. and Kim, H. T. 2007. Analysis of the less benzimidazole-sensitivity of the isolates of Colletotrichum spp. causingthe anthracnose in Pepper and Strawberry. Plant Pathol. J.23:187-192. https://doi.org/10.5423/PPJ.2007.23.3.187
  34. Kwon, T. R., Pae, D. H., Shin, Y. A., Oh, D. G. and Lee, J. M.2006. Capsicum Peppers: A Vital Crop for Korea. ChronicaHorticulturae 46:16-19.
  35. Krishna De, A. 2003. Capsicum: The genus Capsicum. Medicinaland aromatic plants-industrial profiles Vo. 33. Taylor & Francis,London and New York, 275 p.
  36. Lin, Q., Kanchana-udomkarn, C., Jaunet, T. and Mongkolporn, O.2002. Genetic analysis of resistance to pepper anthracnosecaused by Colletotrichum capsici. Thai J. Agricultural Sci.35:259-264.
  37. Manandhar, J. B., Hartman, G. L. and Wang, T. C. 1995. Anthracnosedevelopment on pepper fruits inoculated with Colletotrichumgloeosporioides. Plant Dis. 79:380-383. https://doi.org/10.1094/PD-79-0380
  38. Marin, A., Ferreres, F. F., Tomaa Barberan, F. A. and Gil, M.2004. Characterization and quantitation of antioxidant constituentsof sweet pepper (Cpasicum annuum L.). J. Agr. FoodChemistry 52:3861-3869. https://doi.org/10.1021/jf0497915
  39. Ministry of Food, Agriculture, Forestry and Fisheries. 2008. Agriculturaland Forestry Statistical Yearbook.
  40. Oh, I. S., In, M. S., Woo, I. S., Lee, S. K. and Yu, S. H. 1988.Anthracnose of Pepper seedling caused by Colletotrichumcoccodes (Wallr.) Hughes. Kor. J. Mycol. 16:151-156.
  41. Osuna-Garcia, J. A., Wall, M. W. and Waddell, C. A. 1998. Endogenouslevels of tocopherols and ascorbic acid during fruit ripeningof New Mexican-typing Chile (Cpasicum annuum L.)cultivars. J. Agr. Food Chemistry 46:5093-5096. https://doi.org/10.1021/jf980588h
  42. Pae, D. H., Chae, Y. T., Wang, C. and Engle, L. M. 2003. Selectionof new breeding materials with resistant to anthracnose inCapsicum annuum. Kor. J. Hort. Sci. Technol. 21 (Supp. II):63.
  43. Pae, K. S., Yoon, J. Y. and Lee, J. M. 1998. Screening for resistanceto Colletotrichum gloeosporioides using detached fruitsin pepper (Capsicum annuum) by high-pressure spray. J. Kor.Soc. Hort. Sci. 39:690-692.
  44. Pakdeevaraporn, P., Wasee, S., Taylor, P. W. J. and Mongkolporn,O. 2005. Inheritance of resistance to anthracnose caused byColletotrichum capsici in Capsicum. Plant Breeding. 124:206-208. https://doi.org/10.1111/j.1439-0523.2004.01065.x
  45. Park, H. K., Kim, B. S. and Lee, W. S. 1990. Inheritance of resistanceto anthracnose (Colletotrichum spp) in pepper (Capsicumannuum L.) II. Genetic analysis of resistance to Colletotrichumdematium. J. Kor. Soc. Hort. Sci. 31:207-212.
  46. Park, K. S. and Kim, C. H. 1991. Five fungal species associatedwith anthracnose of red pepper in Korea. Phytopathology81:1135.
  47. Park, K. S. and Kim, C. H. 1992. Identification, distribution andetiological characteristics of anthracnose fungi of red pepperin Korea. Korean J. Plant Pathol. 8:61-69.
  48. Park, W. M., Kim, S. H. and Ko, Y. H. 1989. Susceptibilization ofa red pepper (Capsicum annuum) to Colletotrichum gloeosporioidesPenz. in relation to the ripening of fruits. Kor. J. PlantPathol. 5:262-270.
  49. Park, Y. K., Kim, B. D., Kim, B. S., Armstrang, K. C. and Kim, N.S. 1999. Keryotyping of the chromosome and physical mapping of the 5S rRNA and 18S-26S rRNA gene families in fivedifferent species in Capsicum. Genus & Genetic systems.72:149-157.
  50. Pickersgill, B. 1988. The genus Capsicum: A multidisciplinaryapproach to the taxonomy of cultivated and wild plants. BiologischesZentralblant 107:381-389.
  51. Poonpolgul, S. and Kumphai, S. 2007. Chilli Pepper anthracnosein Thailand. Country report. In: Oh, D. G and Kim, K. T. eds.,p. 23. The first international symposium on Chilli Anthracnose.National Horticultural Research Institute, Rural DevelopmentAdministration, Korea.
  52. Prince, J. P., Lackney, V. K., Angeles, C., Blauth, J. R. and Kyle,M. M. 1995. A survey of DNA polymorphism within thegenus Capsicum and the fingerprinting of Pepper cultivars.Genome 38:224-231. https://doi.org/10.1139/g95-027
  53. Redondo, J. E. 1979. Busqueda de genotipos de chile resistance alhange Phytophthora capsici Leonion. Proc. Tropical Region.A. S. H. S. 23:220-224.
  54. Ribeiro, C. S., Boiteux, L. S., Amaro, G. B. and Reifschneider, F.J. B. 2008. Capsicum breeding at Embrapa vegetable crops,Brasilia, Brazil. In: Proceedings of the 19th International PepperConference, Sep. 7-10, Atlantic City, NJ, USA.
  55. Ryzhova, N. N. and Kochieva, E. Z. 2004. Analysis of microsatelliteloci of the chloroplast genome in the genus Capsicum(Pepper). Russian J. Genetics 40:892-896. https://doi.org/10.1023/B:RUGE.0000039723.90902.b0
  56. SAGARPA. 2002. Programa agricola de los ciclos 0.1. 2001/2002. pv. 2002/2003. Servicio de Informacion estadistica Agroalinentaria presquera (SIAP). Secretaria de Agricultura Ganaderia, Desarrollo Rural, Pesca Alimentacion. Pagina web: www.sagarpa.gob.mx
  57. Shin, H. J., Chen, Z. J., Hwang, J. M. and Lee, S. G. 1999. Comparisonof pepper anthracnose pathogens from Korea andChina. Plant Pathol. J. 15:323-329.
  58. Smith, P. G. and Heiser, C. B. 1957. Taxonomy of Capsicum sinenseJacq. and the geographic distribution of the cultivatedCapsicum species. Bul. Torrey Bot. Club 84:413-420. https://doi.org/10.2307/2482971
  59. Tong, N. and Bosland, P. W. 1999. Capsicum tovarii, a new memberof the Capsicum baccatum complex. Euphytica 109:71-77. https://doi.org/10.1023/A:1003421217077
  60. Um, K. H. 1998. Conidia germination and appressorium formationof colletotrichum spp. isolate pepper fruits. MS Diss.,Seoul National University. p. 93.
  61. Verma, M. L. 1973. Comparative studies on virulence of isolatesof species of Colletotrichum parasitic on Chillies. Indian Phytopathology26:28-31.
  62. Wall, M. M. and Bosland, P. W. 1993. The shelf-life of Chiles andChile containing products. p. 487-500. In: G. Charalambous,ed., Shelf life studies of foods and bebverages, chemical, biological,and nutritional aspects. Elsevier Publishing, NewYork.
  63. Walsh B. H. and Hoot, S. B. 2001. Phylogenetic relationship ofCapsicum (Solanaceae) using DNA sequences from two noncodingregions: The chloroplast atpB-rbc1 spacer region andnuclear waxy introns. Int. J. Plant Sci. 162:1409-1418. https://doi.org/10.1086/323273
  64. Walter, J. M. 1992. Colletotrichum diseases of perennial and othercash crops. In: Colletotrichum-Biology, Pathology, and Control.J. A. Bailey and M. J. Jeger, ed., pp. 167-185. CAB Intl.,Wallingford, United Kingdom.
  65. Wei, X., Jeon, H. S., Han, K. S., Koh, Y. J. and Hur, J. S. 2008.Antifungal activity of lichen-forming fungi against Colletotrichumacutatum on Hot Pepper. Plant Pathol. J. 24:202-206. https://doi.org/10.5423/PPJ.2008.24.2.202
  66. Woodbury, J. E. 1980. Determination of Capsicum pungency byhigh pressure liquid chromatography and spectrofluorometricdetection. J. Assn. Offic. Anal. Chem. 63:556-558.
  67. Yoon, J. B. and Park, H. G. 2001. Screening method for resistanceto pepper fruit anthracnose; Pathogen sporulation, inoculationmethods related to inoculums concentrations, and post-inoculationenvironments. J. Kor. Sco. Hort. Sci. 42:389-393.
  68. Yoon, J. B., Do, J. W., Yang, D. C. and Park, H. G. 2004. Interspecificcross compatibility among five domesticated species ofCapsicum genus. J. Korean Soc. Hort. Sci. 45:324-329.

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