Browse > Article
http://dx.doi.org/10.4489/KJM.20190025

First Report of Albifimbria verrucaria and Deconica coprophila (Syn: Psylocybe coprophila) from Field Soil in Korea  

Gurung, Sun Kumar (Division of Biological Resource Sciences, Kangwon National University)
Adhikari, Mahesh (Division of Biological Resource Sciences, Kangwon National University)
Kim, Sang Woo (Division of Biological Resource Sciences, Kangwon National University)
Lee, Hyun Goo (Division of Biological Resource Sciences, Kangwon National University)
Jun, Ju Han (Division of Biological Resource Sciences, Kangwon National University)
Gwon, Byeong Heon (Division of Biological Resource Sciences, Kangwon National University)
Lee, Hyang Burm (Divison of Food Technology, Biotechnology and Agrochemistry, College of Agriculture and Life Sciences, Chonnam National University)
Lee, Youn Su (Division of Biological Resource Sciences, Kangwon National University)
Publication Information
The Korean Journal of Mycology / v.47, no.3, 2019 , pp. 209-218 More about this Journal
Abstract
During a survey of fungal diversity in Korea, two fungal strains, KNU17-1 and KNU17-199, were isolated from paddy field soil in Yangpyeong and Sancheong, respectively, in Korea. These fungal isolates were analyzed based on their morphological characteristics and the molecular phylogenetic analysis of the internal transcribed spacer (ITS) rDNA sequences. On the basis of their morphology and phylogeny, KNU17-1 and KNU17-199 isolates were identified as Albifimbria verrucaria and Deconica coprophila, respectively. To the best of our knowledge, A. verrucaria and D. coprophila have not yet been reported in Korea. Thus, this is the first report of these species in Korea.
Keywords
Albifimbria verrucaria; Deconica coprophila; Morphology;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Tulloch M. The genus Myrothecium Tode ex Fr. Mycol Papers 1972;130:1-42.
2 Lombard L, Houbraken J, Decock C, Samson RA, Meijer M, Reblova M, Groenewald JZ, Crous PW. Generic diversity in Stachybotriaceae. Personia 2016;36:156-246.   DOI
3 Lee SH, Park HS, Nguyen TTT, Lee HB. Characterization of three species of Sordariomycetes isolated from freshwater and soil samples in Korea. Mycobiology 2019;47:20-30.   DOI
4 Mortimer PH, Campbell J, Di Menna ME. Experimental myrotheciotoxicosis and poisoning in ruminants by verrucarin A and roridin A. Res Vet Sci 1971;12:508-15.   DOI
5 Martinovich D, Mortimer PH, Di Menna ME. Similarities between so called kikuyu poisoning of cattle and two experimental mycotoxicoses. NZ Vet J 1972;20:57-8.   DOI
6 Trapp SC, Hohn TM, McCormick S, Jarvis BB. Characterization of the gene cluster for biosynthesis of macrocyclic trichothecens in Myrothecium roridum. Mol Gen Genet 1998;257:421-32.   DOI
7 Boyette CD, Hoagland RE, Weaver MA. Interaction of the bioherbicide Myrothecium verrucaria and glyphosphate for Kudzu control. Am J Plant Sci 2014;5:3943-56.   DOI
8 Abbas HK, Johnson BB, Shier WT. Phytotoxicity and mammalian cytotoxicity of macrocyclic trichothecene mycotoxins from Myrothecium verrucaria. Phytochemistry 2002;59:309-13.   DOI
9 Yang SM, Jong SC. Factors influencing pathogenicity of Myrothecium verrucaria isolated from Eurphorbia esula and species of Euphorbia. Plant Dis 1995;79:1036-8.   DOI
10 Boyette CD, Hoagland RE, Stelina KC. Biological control of the weed hemp sesbania (Sesbania exaltata) in rice (Oryza stativa) by the fungus Myrothecium verrucaria. Agronomy 2014;4:74-89.   DOI
11 Weaver MA, Boyette CD, Hoagland RE. Management of kudzu by the bio herbicide, Myrothecium verrucaria, herbicides and integrated control programs. Biocontrol Sci Techn 2016;26:136-40.   DOI
12 Silva PS, Cortez VG, Silveira RMB. Synopsis of the Strophariaceae (Basidomycota, Agaricales) from Floresta Nacional de Sao Francisco de Paula, Rio Grande do State, Brazil. Hoehnea 2012;39:479-87.   DOI
13 Guzman G. The genus Psilocybe. Beih Nova Hedw 1983;74:1-439.
14 Davet P, Rouxel F. Detection and Isolation of soil fungi. Enfield: Science Publishers; 2000.
15 Silva PS, Guzman DL, Silveira RMB. Cultural studies of Psilocybe sensu lato species (Agaricales, Strophariaceae). Mycosphere 2016;7:531-44.   DOI
16 White TJ, Bruns T, Lee S, Taylor J. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics, In: Innis MA, Gelfand DH, Snisky JJ, White TJ, editors. PCR protocols: a guide to methods and applications. San Diego: Academic Press; 1990. p. 315-22.
17 Gilgado F, Cano J, Gene J, Guarro. Molecular phylogeny of the Pseudaleesheria boyddii species complex: proposal of two new species. J Clin Microbiol 2005;43:4930-42.   DOI
18 Thompson JD, Higgins DG, Gibson TJ. CLUSTA W: improving the sensitivity of progressive multiple sequence alignment through weighing, position-specific gap penalties and weight matrix choice. Nucleic Acids Res 1994;22:4673-80.   DOI
19 Kimura M. A simple method for estimating evolutionary rate of base substitution through comparative studies of nucleotide sequences. J Mol Evol 1980;16:111-20.   DOI
20 Kumar S, Stecher G, Tamura K. MEGA7: Molecular evolutionary genetics analysis version 7.0 for bigger datasets. Mol Biol Evol 2016;33:1870-4.   DOI
21 Kummer P. Der Fuhrer in die Pilzkunde. Zerbst; 1871. p. 71.