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Screening of heterozygous DNA markers in shiitake (Lentinula edodes) using de-dikaryotization via preparation of protoplasts and isolation of four meiotic monokaryons from one basidium
Authors:Kazuhiro Miyazaki  Hajime Maeda  Masahide Sunagawa  Yutaka Tamai  Susumu Shiraishi
Institution:(1) Kyushu Research Center, Forestry and Forest Products Research Institute, 860-0862 Kumamoto, Japan;(2) Faculty of Agriculture, Kyushu University, 812-8581 Fukuoka, Japan;(3) Forestry and Forest Products Research Institute, Kukisaki, 305-8687 Ibaraki, Japan;(4) Faculty of Agriculture, Hokkaido University, Sapporo, 060-8589 Hokkaido, Japan
Abstract:A suitable screening method for heterozygous DNA markers in shiitake,Lentinula edodes (Berk.) Pegler, is reported. Monokaryons were derived from a dikaryon by de-dikaryotization via protoplast formation. Compatibility of the monokaryons was determined by pairwise culture on agar plates. We selected the primers to amplify polymorphic fragments among the original strain (Hokken600ratioH600) and two monokaryons (H600PP-39 and H600PP-67) showing compatibility. A total of 135 fragments were selected as specific random amplified polymorphic DNAs (RAPDs) resulting from 56 primers of the 147 primers tested. Furthermore, we tested whether the polymorphic fragments segregated into 2ratio2 among four strains isolated from a basidium. Most of the polymorphic fragments (about 97.8%) showed 2ratio2 segregation among the four strains. We concluded that the polymorphic fragments were heterozygous if they were detected in either of the monokaryons (H600PP-39 and H600PP-67) and segregated to 2ratio2 among four meiotic strains (H600B-1,-2, -3, and -4). A total of 132 heterozygous DNA markers were therefore selected from a dikaryon of shiitake (Hokken600ratioH600).Part of this report was presented at the 8th Annual Meeting of Mushroom Science and Biotechnology and the 47th Annual Meeting of the Japan Wood Research Society, Kochi, 1997
Keywords:Lentinula edodes  Heterozygous DNA marker  RAPD  de-dikaryotization  Protoplast
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