Production and regeneration of protoplasts from orchid Mycorrhizal Fungi Epulorhiza repens and Ceratorhiza sp.

Author:

Coelho Irene da Silva1,Queiroz Marisa Vieira de1,Costa Maurício Dutra1,Kasuya Maria Catarina Megumi1,Araújo Elza Fernandes de1

Affiliation:

1. Universidade Federal de Viçosa, Brasil

Abstract

The aim of this work was to study the standardization of conditions to obtain and regenerate Epulorhiza repens and Ceratorhiza sp. protoplasts. For E. repens, the largest number of protoplasts (8.0 × 10(6) protoplasts/mL) was obtained in 0.6 M KCl, using 15 mg/mL of Lysing Enzymes, and 2-day-old fungal mycelium. When 0.5 M sucrose was used as osmotic stabilizer, the highest frequency of regeneration was achieved (8.5 %); 80.0 % of protoplasts were nucleated, and 20.0 % anucleated. For Ceratorhiza sp., the largest number of protoplasts (4.0 × 10(7) protoplasts/mL) was achieved in 0.6 M NaCl, when 15 mg/mL of Lysing Enzymes and 15mg/mL of Glucanex, with 2-day-old fungal mycelium were used. The highest frequency of regeneration was 6.7 % using 0.5 M sucrose as osmotic stabilizer; 88.8 % of protoplasts were nucleated, and 11.2 % anucleated.

Publisher

FapUNIFESP (SciELO)

Subject

Multidisciplinary

Reference33 articles.

1. Optimization of protoplast formation, regeneration, and viability in Microsporum gypseum;Chadegani M.;Mycopathologia,1989

2. Seed germination of Haemaria discolor var. dawsoniana and the use of mycorrhizae;Chang D.C.N.;Symbiosis,2001

3. Protoplast preparation and regeneration from spores of biocontrol fungus Pseudozyma flocculosa;Cheng Y.;FEMS Microbiol. Lett.,2000

4. Formation and regeneration of protoplasts of Sclerotium glucanicum;Deed A.;Appl. Microbiol. Biotechnol.,1989

5. Production and regeneration of protoplasts from the mycorrhizal fungus Suillus granulatus;Dias E.S.;World. J. Microbiol. Biotechnol.,1996

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