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논문검색

Fruiting body development and genetic analysis of somatic hybrids by protoplast fusion in edible fungi

원문정보

식용버섯의 원형질체 융합체의 자실체 발생 및 유전분석

Young Bok Yoo, Won Sik Kong, Se Jong Oh, Chang Sung Jhune, Pyung Gyun Shin, Beom Gi Kim, Gyu Hyun Kim, Minsun Park, Byung Re Min

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초록

영어

Somatic hybrids of inter-compatible and inter-incompatible strains were obtained by protoplast fusion. The fusion products between compatible strains, Pleurotus ostreatus and P. florida, formed heterokaryons, while fusants between incompatible strains such as P. cornucopiae + P. florida , P. ostreatus + Ganoderma applanatum, P. florida + Ganoderma lucidum, and P. ostreatus + Flammulina velutipes formed synkaryons that retained genes from both parents. The heterokaryons showed the same level of basidioma development. In contrast, the synkaryons showed unique characteristics including clamp connection formation at mitosis, either partner basidioma development, and abnormal segregation and recombination compared with inter-compatible strains. Synkaryons can be classified into homokaryoyic and heterokaryotic type. A comparison of somatic hybrids with compatible and incompatible strains was made using random amplified polymorphic DNA (RAPD) analysis. The heterokaryons between compatible species showed the same level of variability and contained both parental RAPD bands. In contrast, most of the synkaryons between incompatible species showed similarity to those of either parental bands and non-parental RAPD bands. Synkaryons can be classified into microgenome insertion type and macrogenome insertion type. A tetrapolar mating system was found among monospore isolates in somatic hybrids and wild type P. ostreatus. Homokaryons from each somatic hybrid combination were paired with tester homokaryons of the initial wild type of P. ostreatus. The changed mating types were identified in progenies. The pattern of mating type switching in somatic hybrids depends on compatibility of fusion partner. There are several factors related to the mechanism of clamp connection formation and fruiting body development of synkaryons. Of these,the major factor may be associated with self-fertility and mating type switching such as homokaryotic fruiting of wild type P. ostreatus. This review will discuss these aspects.

목차

ABSTRACT
 INTRODUCTION
 DEVELOPMENT OF FRUITING BODIES
 GENETIC RECOMBINATION
 MOLECULAR GENETIC ANALYSIS WITH RAPD MARKERS
 FRUITING BODY PRODUCTION BETWEEN COMPATIBLE SPECIES
 MATING SYSTEM ANALYSIS
 CONCLUDING
 적요
 REFERENCES

저자정보

  • Young Bok Yoo 유영복. Applied Microbiology Division, National Institute of Agricultural Science and Technology, RDA
  • Won Sik Kong 공원식. Applied Microbiology Division, National Institute of Agricultural Science and Technology, RDA
  • Se Jong Oh 오세종. Applied Microbiology Division, National Institute of Agricultural Science and Technology, RDA
  • Chang Sung Jhune 전창성. Applied Microbiology Division, National Institute of Agricultural Science and Technology, RDA
  • Pyung Gyun Shin 신평균. Applied Microbiology Division, National Institute of Agricultural Science and Technology, RDA
  • Beom Gi Kim 김범기. National Institute of Agricultural Biotechnology, RDA
  • Gyu Hyun Kim 김규현. Department of Biotechnology, Yonam College of Agriculture, Sungwan, Choongnam 330-802, Korea
  • Minsun Park 박민선. Department of Biochemistry and Molecular Biology, School of Medicine, Ajou University, Suwon
  • Byung Re Min 민병례. Department of Biology, Sangmyung University, Seoul 110-743, Korea

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