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Molecular Detection of Phellinus linteus and P. baumii by PCR Specific Primer

  • Nam, Byung-Hyouk (Department of Microbiology, College of Natural Sciences, Pusan National University) ;
  • Kim, Gi-Young (Department of Microbiology, College of Natural Sciences, Pusan National University) ;
  • Park, Hyung-Sik (Department of Microbiology, College of Natural Sciences, Pusan National University) ;
  • Lee, Sang-Joon (Department of Microbiology, College of Natural Sciences, Pusan National University) ;
  • Lee, Jae-Dong (Department of Microbiology, College of Natural Sciences, Pusan National University)
  • Published : 2002.12.31

Abstract

Specific primer sets based on ribosomal DNA(rDNA) internal transcribed specer(ITS) sequences were designed for rapid detection of Phellinus linteus and P. baumii. Polymerase chain reaction(PCR) with these primers produced unique bands for each Phellinus species. The annealing temperature range is from $40^{\circ}C\;to\;55^{\circ}C$. The length of PCR products(P. linteus and P. baumii) using designed combinative primer sets of PL1F, PL2R, PB1F, PB2R, ITS5F and ITS4R, were from 520 by to 730 bp. Fifteen strains of Phellinus species including P. linteus, P. baumii, P. weirianus, P. johnsonianus, P. rhabarberinus, P. pini, P. gilvus, P. igniarius, P. nigricans and P. laevigatus were examined in this study. Five strains, including two isolated strains of P. linteus(MPNU 7001 and MPNU 7002), and two isolated strains of P. baumii(MPNU 7004 and MPNU 7005) were shown to have about 520 bp (PL1F-PL2R), 700 bp (TTS5F-PL2R) and 600 bp (PB1F-ITS4R) -sized PCR single bands respectively. This molecular genetic technique provided a useful method for rapid detection and identification of P. linteus and P. baumii.

Keywords

References

  1. Bruns. T. D., White, T. J. and Taylor, J. W. 1991. Fungal molecular systematics, Annual Rev. Ecol. Syst. 22: 525-564 https://doi.org/10.1146/annurev.es.22.110191.002521
  2. Chi, J. H., Ha, T. M. and Kim, Y. H. 1998. Mycelial growth of Phellinus linteus with various sawdusts. Kor. J. Mycol. 26(1):56-59
  3. Choi, K. H. 1999. Development of a new synthetic medium composition for the submerged culture of Phellinus linteus. Kor. J. Biotechnol. Bioeng. 14(2): 167-173
  4. Gragam, G. C, Mayer, S. P. and Henry, R. 1. 1994. Amplified method for the preparation of fungal genomic DNA for PCR and RAPD analysis. Biotechniques 16: 487-495
  5. Han, S. B., Lee, C. W., Jeon, Y. J., Hong, N. D., Yoo, I. D., Yang, K. H. and Kim, H. M. 1999. The inhibitory effect of polysaccharides isolated from Phellinus linteus on tumor growth and metastasis. Immunopharmacologv 41(2): 157-164 https://doi.org/10.1016/S0162-3109(98)00063-0
  6. Hibbett, D. S. 1992. Ribosomal RNA and fungal systematics. Trans. Mycol. Soc. Japan. 33: 533-556
  7. Hugues, B. M., Linda, E. T., Elaine, R. I. and Walter, G. T. 1998. Ectomycorrhizae establishment on Douglas-fir seedlings following chloropicrin treatment to control laminated-root rot disease: Assessment 4 and 5 years after outplanting. Appl. Soil Ecolog, 10(1-2): 117-125
  8. Jung, J. W., Kim, G. Y., Ha, M. G., Lee, T. H. and Lee, J. D. 1999. Phylogenetic analysis of the genus Phellinus by comparing the sequences of internal transcribed spacers and 5.8S rDNA. Kor. J. Mycol. 27(2): 124-131
  9. Kim, G. Y., Park, J. E., Park, H. S., Nam, B. H., An, W. G., Lee, T. H. and Lee, J. D. 2001. Phylogenetic Analysis of Phellinus linteus and Related Species Comparing the Sequences of rDNA Internal Transcribed Spacers. J. Life Sci. 11(2): 126-134
  10. Lee, J. H., Cho, S. M., Song, K. S., Hong, N. D. and Yoo, I. D. 1996. Characterization of carbohydrate-peptide linkage of acidic heteroglycopeptide with immune-stimulating activity from mycelium of Phellinus linteus. Chemical and Pharmaceutical Bulletin 44(5): 1093-1095 https://doi.org/10.1248/cpb.44.1093
  11. Nei, M. and Li W. H. 1979. Mathematical model for studying genetic variation in terms of restriction endonuclease. PNAS USA 76: 5269-5273 https://doi.org/10.1073/pnas.76.10.5269
  12. Rho, Y. D. 1996. Studies on the main factors affecting the mycelial growth of Phellinus linteus. Kor. J. Mycol. 24: 214-222
  13. Shon, Y. H. and Nam, K. S. 2001. Antimutagenicity and induction of anticarcinogenic phase II enzymes by basidiomycetes. J. Ethnopharmacology 77(1): 103-109 https://doi.org/10.1016/S0378-8741(01)00276-8
  14. Song, C. H., Moon, H. Y. and Ryu, C. H. 1997. Artificial cultivation of Phellinus linteus. Kor. J. Mycol. 25(2): 130-132
  15. Song, K. S., Cho, S. M., Lee, J. H., Kim, H. M., Han, S. B., Ko, K. S. and Yoo, I. D. 1995. B-Iymphocyte-stimulating polysaccharide from mushroom Phellinus linteus. Chemical & Pharmaceutical Bulletin. 43(12): 2105-2108 https://doi.org/10.1248/cpb.43.2105
  16. Taylor, J., Bruns, T. and White, T. 1990. Can amount of molecular divergence define species and genera: comparison of Sordariales and Agaricales? In: Fourth International Mycological Congress Abstracts. (Ed. by Reisinger, A. and A. Bresinsky). Botanical Institute. Univ. of Regensbyrg. Germany 343. (abstr.)
  17. Ying, J. Z., Mao, X. L., Ma, Q. M., Zong, S. C. and Win, H. A. 1987. Illustrations of Chinese medicinal fungi. Science Press. Beijing. 579. (In Chinese)
  18. Zhu, H., Qu, F. and Zhu L. H. 1993. Isolation of genomic DNAs from plants, fungi and bacteria using benzyl chloride. Nucl. Acids Res. 21: 5279-5280 https://doi.org/10.1093/nar/21.22.5279

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