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Isolation of Wild Yeasts from Freshwaters and Soils in Nonsan Stream and Sapgyoho in Chungcheongnam-do, Korea, and Microbiological Characteristics of the Unrecorded Wild Yeasts

충남 논산천과 삽교호로부터 야생효모의 분리 및 국내 미기록 효모들의 균학적 특성

  • Jang, Ji-Eun (Faculty of Biomedicine and Biotechnology, Paichai University) ;
  • Park, Seon-Jeong (Faculty of Biomedicine and Biotechnology, Paichai University) ;
  • Moon, Jeong-Su (Faculty of Biomedicine and Biotechnology, Paichai University) ;
  • Lee, Hyang Burm (Department of Agricultural Biological Chemistry, Chonnam National University) ;
  • Lee, Jong-Soo (Faculty of Biomedicine and Biotechnology, Paichai University)
  • 장지은 (배재대학교 바이오의약학부) ;
  • 박선정 (배재대학교 바이오의약학부) ;
  • 문정수 (배재대학교 바이오의약학부) ;
  • 이향범 (전남대학교 농생명화학과) ;
  • 이종수 (배재대학교 바이오의약학부)
  • Received : 2021.09.02
  • Accepted : 2021.09.23
  • Published : 2021.09.30

Abstract

This study aimed to isolate wild yeasts from water and soil sample of the Nonsan stream and Sapgyoho (lake) in Chungcheonnam-do, Korea, and to further characterize previously unrecorded wild yeast strains. In total, 102 strains, representing 55 different species of wild yeast were isolated from 95 samples collected from the Jangseoncheon and Ipchoncheon of Nonsan stream in Jellabuk-do and Chungcheonnam-do. Among these, 33 strains were isolated from alkalophilic yeast extract-peptone-dextrose (YPD) medium (pH 9.0), and 9 strains were isolated concurrently on general YPD medium (pH 6.5) and alkalophilic medium. Seventeen strains of Cryptococcus laurentii were predominantly isolated. Additionally, 65 strains, representing 27 different species of wild yeast were isolated from 58 samples obtained from Sapgyoho (lake). Among the 82 isolated wild yeast strains, 8 strains, including Candida fructus JSC 72-1(JSL-GGU 015), had not previously been recorded. All 8 previously unrecorded yeasts were oval in shape except C. fructus JSC72-1(JSL-GGU-015), and only the Filobasidium chernovii JSC39-1(JSL-GGU-013) strain formed spores. All strains except Pseudosydowia eucalypti JSC23-6(JSL-GGU-012) grew well in yeast extract-peptone-dextrose (YPD) and yeast extract-malt extract media and grew in vitamin-free medium. Four strains, including P.eucalypti JSC23-6(JSL-GGU-012) grew well in 15% NaCl-containing YPD medium. F.chernovii JSC39-1(JSL-GGU-013) and Sirobasidium intermedium JSC7-3(JSL-GGU-014) assimilated lactose, and five strains, including F. chernovii JSC39-1(JSL-GGU-013) also assimilated starch. All strains were resistant to 800 ppm of Ca, Cu, Li, and Mg ions.

본 연구는 금강 하류 지천으로 전북 완주와 충남 논산으로 이어지는 논산천과 충남 아산만의 인공 담수호인 삽교호 주변 환경의 야생 효모들의 효모 종 분포 특성을 조사하고 국내 미발표된 효모들을 선별하여 이들의 균학적 특성들을 알아보고자 실시되었다. 전북 완주군의 장선천과 충남 논산의 입촌천 주변 물과 토양 95점에서 101균주의 야생 효모들을 분리, 동정하였고, 이들 중 C. panamericana JSC6-3 (JSL-GGU-011), P. eucalypti JSC23-6 (JSL-GGU-012), F. chernovii JSC39-1 (JSL-GGU-013), Sir. intermedium JSC7-3 (JSL-GGU-014), C. fructus JSC72-1 (JSL-GGU-015), C. stauntonica JSC20-1 (JSL-GGU-016)등 6균주들을 국내 미기록 야생효모들로 선별하였다. 또한, 삽교호 주변 환경에서 채취한 시료 58점으로부터C. tritomae SG 55M-3등 65균주의 야생 효모들을 분리, 동정하였고 이들 중C. tritomae SG 55M-3 (JSL-KSS-003) 균주와K. mangrovensis ASG 21W-2 (JSL-KSS-004) 균주들이 국내 미기록 야생 효모들로 최종 선별되었다. 이들 미기록 효모들은 C. fructus JSC72-1외에 모두 난형이었고F. chernovii JSC39-1 균주만이 포자를 형성하였으며 모든 균주들이 의균사를 형성하지 않았다. P. eucalypti JSC23-6 균주만이 vitamin-free배지에서 생육하지 못했고C. panamericana JSC6-3등 3균주들은 15% NaCl을 함유한 YPD배지에서도 생육하는 호염성 균들이었다. 선별된 미기록 효모들은 Ca, Cu, Li, Mg 이온들에 대하여 800 ppm까지 내성을 보였고 모두 포도당과 fructose, sucrose들을 자화시켰으며 특히 F. chernovii JSC39-1등 3균주들은 lactose를, C. panamericana JSC6-3 등 5균주들은 전분을 자화시켰다.

Keywords

Acknowledgement

This work was supported by a grant from the Nakdonggang National Institute of Biological Resources (NNIBR, project No: NNIBR20212001), funded by the Ministry of Environment (MOE) of the Republic of Korea.

References

  1. Lee JS, Choi YJ, Kwon SJ, Yoo JY, Chung DH. Screening and characterization of osmotolerant and gas-producing yeasts from traditional Doenjang and Kochujang. Food Biotechnol 1996;5:54-8.
  2. Lee JS, Lee SH, Kwon SJ, Ahn C, Yoo JY. Enzyme activities and physiological functionality of yeasts from traditional Meju. Kor J Appl Microbiol Biotechnol 1997;25:448-53.
  3. Kim JH, Kim NM, Lee JS. Physiological characteristics and ethanol fermentation of thermotolerant yeast Saccharomyces cerevisiae OE from traditional meju. Kor J Food Nutr 1999;12:490-5.
  4. Ryu HY. Advanced technologies and mechanisms for yeast evolutionary engineering. Mycobiol 2020;48:423-8. https://doi.org/10.1080/12298093.2020.1794215
  5. Lee DH, Lee DH, Lee JS. Characterization of a new antidementia β-secretase inhibitory peptide from Saccharomyces cerevisiae. Enzyme and Microbiol Technol 2007;42:83-8. https://doi.org/10.1016/j.enzmictec.2007.08.003
  6. Jeong SC, Lee DH, Lee JS. Production and characterization of an anti-angiogenic agent from Saccharomyces cerevisiae K-7. J Microbiol Biotechnol 2006;16:1904-11.
  7. Han SM, Lee JS. Production and its anti-hyperglycemia effects of gamma-aminobutylic acid from the wild yeast strain Pichia silvicola UL6-1 and Sporobolomyces carnicolor 402-JB-1. Mycobiol 2017;45:199-203. https://doi.org/10.5941/MYCO.2017.45.3.199
  8. Kim JY, Lee SY, Han SM, Lee JS. Production of anti-dementia acetylcholinesterase from the wild yeasts Saccharomyces cerevisiae WJSL0113 and Wickerhamomyces anomalus JSF0128. Kor J Mycol 2018;46:447-57. https://doi.org/10.4489/KJM.20180049
  9. Moon JE, Heo W, Lee SH, Lee SH, Lee HG, Lee JH, Kim YJ. Trehalose protects the probiotic yeast Saccharomyces boulardii against oxidative stress-induced cell death. J Microbiol Biotechnol 2020;30:54-61. https://doi.org/10.4014/jmb.1906.06041
  10. Kim JS, Lee M, Kim JY, Heo J, Kwon SW, Yun BS, Kim SJ. Distribution and species diversity of wild yeasts isolated from flowers in Korea. Kor J Mycol 2020;48:475-84. https://doi.org/10.4489/KJM.20200045
  11. Min JH, Ryu JJ, Kim HK, Lee JS. Isolation and identification of yeasts from wild flowers in Gyejoksan, Oseosan and Baekamsan of Korea. Kor J Mycol 2013;41:47-51. https://doi.org/10.4489/KJM.2013.41.1.47
  12. Hyun SH, Mun HY, Lee HB, Kim HK, Lee JS. Isolation of yeasts from wild flowers in Gyonggi-do province and Jeju island in Korea and the production of anti-gout xanthine oxidase inhibitor. Kor J Microbiol Biotechnol 2013;41:383-90. https://doi.org/10.4014/kjmb.1309.09002
  13. Hyun SH, Lee JK, Park WJ, Kim HK, Lee JS. Isolation and diversity of yeasts from fruits and flowers of orchard in Sinam-myeon of Yesan-gun, Chungcheongnam-do, Korea. Kor J Mycol 2014;42:21-7. https://doi.org/10.4489/KJM.2014.42.1.21
  14. Hyun SH, Min JH, Lee HB, Kim HK, Lee JS. Isolation and diversity of yeasts from wild flowers in Ulleungdo and Yokjido, Korea. Kor J Mycol 2014;42:28-33. https://doi.org/10.4489/KJM.2014.42.1.28
  15. Hyun SH, Min JH, Kim SA, Lee JS, Kim HK. Yeasts associated with fruits and blossoms collected from Hanbat arboretum, Daejeon, Korea. Kor J Mycol 2014;42:178-82. https://doi.org/10.4489/KJM.2014.42.2.178
  16. Hyun SH, Han SM, Lee JS. Isolation and physiological functionality of yeasts from wild flowers in Seonyudo of Gogunsanyeoldo, Jeollabuk-do, Korea. Kor J Mycol 2014;42:201-6. https://doi.org/10.4489/KJM.2014.42.3.201
  17. Han SM, Hyun SH, Lee JS. Isolation and identification of yeasts from wild flowers in Deogyu mountain and their physiological functionalities. Kor J Mycol 2015;43:47-52. https://doi.org/10.4489/KJM.2015.43.1.47
  18. Han SM, Hyun SH, Lee HB, Lee HW, Kim HK, Lee JS. Isolation and identification of yeasts from wild flowers collected around Jangseong lake in Jeollanam-do, Republic of Korea, and characterization of the unrecorded yeast Bullera coprosmaensis. Mycobiol 2015;43:266-71. https://doi.org/10.5941/MYCO.2015.43.3.266
  19. Han SM, Han JW, Bae SM, Park WJ, Lee JS. Isolation and identification of wild yeasts from soils of paddy fields in Daejeon metropolitan city and Chungcheongnam-do, Korea. Kor J Mycol 2016;44:1-7. https://doi.org/10.4489/KJM.2016.44.1.1
  20. Han SM, Lee JS. Isolation and identification of wild yeasts from soils of an herb park in Seoul metropolitan city and characteristics of unrecorded yeasts. Kor J Mycol 2016;44:108-12. https://doi.org/10.4489/KJM.2016.44.2.108
  21. Han SM, Lee SY, Kim HK, Lee JS. Characterization of wild yeasts Isolated from leaves obtained from Mt. Daedun and Mt. Chilgap, Korea. Kor J Mycol 2017;45:31-42. https://doi.org/10.4489/KJM.20170004
  22. Han SM, Kim HK, Lee HB, Lee JS. Isolation and identification of wild yeasts from freshwaters and soils of Nakdong and Yeongsan river, Korea, with characterization of two unrecorded yeasts. Kor J Mycol 2016;44:350-4. https://doi.org/10.4489/KJM.2016.44.4.350
  23. Han SM, Lee SY, Kim HK, Lee JS. Isolation and diversity of wild yeasts from the waters and bank soils of Daejeoncheon, Gapcheon, and Yedeungcheon in Daejeon Metropolitan city, Korea. Kor J Mycol 2017;45:259-69. https://doi.org/10.4489/KJM.20170034
  24. Han SM, Kim JY, Lee HB, Kim HK, Lee JS. Isolation and characterization of wild yeasts from water and riverside soils of Geumgang midstream in Gongju City, Korea. Kor J Mycol 2018;46:98-104. https://doi.org/10.4489/KJM.20180013
  25. Han SM, Park DJ, Kim JY, Lim HJ, Lee HB, Lee JS. Isolation of wild yeasts obtained from waters and soils of riversides in Sangjubo of Nakdong river and Daechung dam of Geumgang midstream, Korea and characterization of unrecorded wild yeasts. Kor J Mycol 2020;48:237-49. https://doi.org/10.4489/KJM.20200025
  26. Jeon YJ, Park S, Hwang H, Park YH, Cheon W, Goh J, Chung N, Mun HY. Seven yeast strains isolated from freshwaters for the first record in Korea. Kor J Mycol 2020;48:523-31. https://doi.org/10.4489/KJM.20200052
  27. Park SJ, Jang JE, Lee HB, Lee JS. Isolation of wild yeasts from riversides in Geumgang upstream, Taean and Suncheonman seashores and microbiological characteristics of the unrecorded wild yeasts. Kor J Mycol 2021;49:67-79. https://doi.org/10.4489/KJM.20210007
  28. Han SM, Lee JS. Characterization of unrecorded yeasts Isolated from leaves of trees of Oknyeobong peak and Yeonjasan mountain in Daejeon, Korea. Kor J Mycol 2017;45;23-30. https://doi.org/10.4489/KJM.20170003
  29. Han SM, Kim JY, Kim CM, Lee JS. Characteristics of unrecorded wild yeasts obtained from the soil of spices plant fields and its physiological functionality. Kor J Mycol 2019;47:75-81. https://doi.org/10.4489/KJM.20190009
  30. Kim HK, Kim JY, Han SM, Kim CM, Lee JS. Microbiological characteristics and physiological functionalities of unrecorded wild yeast strains in the soils of Hajodae and Gyungpodae beaches in Korea. Kor J Mycol 2019;47:249-58. https://doi.org/10.4489/KJM.20190029
  31. Kim JY, Han SM, Park SJ, Jang JE, Lee JS. Isolation and characterization of unrecorded wild yeasts obtained from soils of spice fields and mountains. Kor J Mycol 2020;48:151-60. https://doi.org/10.4489/KJM.20200016
  32. Park SW. Geometric element relationships for alluvial streams in the Changsun river basins. J Korean Soc Agric Eng 1985;27:49-53.
  33. Lee HG, Choi JK. The distribution characteristics of fish community by habitat type in the Nonsan stream. J Wetlands Res. 2014;16:303-13.
  34. Suh SO, McHugh JV, Blackwell M. Expansion of the Candida tanzawaensis yeast clade: 16 novel Candida species from basidiocarp-feeding beetles. Int J Syst Evol Microbiol 2004;54:2409-29. https://doi.org/10.1099/ijs.0.63246-0
  35. Suh SO, Nguyen NH, Blackwell M. A yeast clade near Candida kruisii uncovered: nine novel Candida species associated with basidioma-feeding beetles. Mycol Res 2006;1101:1379-94.
  36. Khan Z, Mokaddas E, Ahmad S, Burhamah MH. Isolation of Cryptococcus magnus and Cryptococcus chernovii from nasal cavities of pediatric patients with acute lymphoblastic leukemia. Med Mycol 2011;49:439-43. https://doi.org/10.3109/13693786.2010.530696
  37. Prior BA, Kilian SG, Du Preez JC. Fermentation of smallcap˜ D-xylose by the yeasts Candida shehatae and Pichia stipitis. Proc Biochem 1989; 24:21-32.
  38. El-Gendy NS, Abidin ZZ, Amr SSA, Nassar HN. Statistical optimization of alginate immobilization process of Candida stauntonica strain MY1 for bioethanol production. Int J Curr Microbiol App Sci 2015;4:397-420.