Browse > Article
http://dx.doi.org/10.1080/12298093.2019.1574372

Characterization of Three Species of Sordariomycetes Isolated from Freshwater and Soil Samples in Korea  

Lee, Seo Hee (Division of Food Technology, Biotechnology and Agrochemistry, College of Agriculture and Life Sciences, Chonnam National University)
Park, Hyo Sun (Division of Food Technology, Biotechnology and Agrochemistry, College of Agriculture and Life Sciences, Chonnam National University)
Nguyen, Thuong T.T. (Division of Food Technology, Biotechnology and Agrochemistry, College of Agriculture and Life Sciences, Chonnam National University)
Lee, Hyang Burm (Division of Food Technology, Biotechnology and Agrochemistry, College of Agriculture and Life Sciences, Chonnam National University)
Publication Information
Mycobiology / v.47, no.1, 2019 , pp. 20-30 More about this Journal
Abstract
During a survey of fungal diversity in the class Sordariomycetes, 3 fungal strains, CNUFC-KMHY6-1, CNUFC-MSW24-2-11, and CNUFC-GW2S-4 were isolated from soil and freshwater samples, respectively in Korea. The strains were analyzed both morphologically and phylogenetically on the basis of internal transcribed spacer and RNA polymerase II second largest subunit gene sequences. On the basis of their morphology and phylogeny, CNUFC-KMHY6-1, CNUFC-MSW24-2-11, and CNUFC-GW2S-4 isolates were identified as Arcopilus aureus, Memnoniella echinata, and Stachybotrys sansevieriae, respectively. To the best of our knowledge, Ar. aureus and M. echinata have not been previously recorded in Korea, and this is the first report of S. sansevieriae from freshwater niche.
Keywords
Arcopilus aureus; Memnoniella echinata; Stachybotrys sansevieriae; Sordariomycetes;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Wang Y, Hyde KD, McKenzie EHC, et al. Overview of Stachybotrys (Memnoniella) and current species status. Fungal Divers. 2015;71:17-83.   DOI
2 Smith G. Some new and interesting species of micro-fungi. III. Trans Br Mycol Soc. 1962;45:387-394.   DOI
3 Carmichael JW, Kendrick WB, Conners IL, et al. Genera of hyphomycetes. Edmonto: University Alberta Press; 1980.
4 Haugland RA, Vesper SJ, Harmon SM. Phylogenetic relationships of Memnoniella and Stachybotrys species and evaluation of morphological features for Memnoniella species identification. Mycologia. 2001;93:54-65.   DOI
5 Lombard L, Houbraken J, Decock C, et al. Generic hyper-diversity in Stachybotriaceae. Persoonia. 2016;36:156-246.   DOI
6 White TJ, Bruns T, Lee S, et al. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In: Innis MA, Gelfand DH, Sninsky JJ, White TJ, editors. PCR protocols: a guide to methods and applications. San Diego, CA: Academic Press; 1990. p. 315-322.
7 Liu YJ, Whelen S, Hall BD. Phylogenetic relationships among ascomycetes: evidence from an RNA polymerse II subunit. Mol Biol Evol. 1999;16:1799-1808.   DOI
8 Thompson JD, Gibson TJ, Plewniak F, et al. The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Res. 1997;25:4876-4882.   DOI
9 Hall TA. BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. Nucleic Acids Symp Ser. 1999;41:95-98.
10 Tamura K, Stecher G, Peterson D, et al. MEGA6: Molecular Evolutionary Genetics Analysis version 6.0. Mol Biol Evol. 2013;30:2725-2729.   DOI
11 Chivers AH. A monograph of the genera Chaetomium and Ascotricha. Mem Torrey Bot Club. 1915;14:155-240.
12 Adhikari M, Gurung SM, Bazie S, et al. Seven unrecorded fungal species from field soils in Korea. Kor J Mycol. 2018;46:9-21.   DOI
13 Dwibedi V, Saxena S. Arcopilus aureus, a resveratrol- producing endophyte from Vitis vinifera. Appl Biochem Biotechnol. 2018;186:476-495.   DOI
14 Li F, Gong Q, Dong H, et al. Resveratrol, a neuroprotective supplement for Alzheimer's disease. Curr Pharm Des. 2012;18:27-33.   DOI
15 Lange KW, Li S. Resveratrol, pterostilbene, and dementia. Biofactors. 2018;44:83-90.   DOI
16 Jie CY, Geng K, Jiang YL, et al. Stachybotrys from soil in China, identified by morphology and molecular phylogeny. Mycol Progress. 2013;12:693-698.   DOI
17 Jarvis BB. Macrocyclic trichothecenes. In: Sharma RP, Salunkhe DK, editors. Mycotoxins and phytoalexins in human and animal health. Boca Raton, FL: CRC Press; 1991. p. 361-421.
18 Roggo B, Petersen F, Sills M, et al. Novel spirodihydrobenzofuranlactams as antagonists of endothelin and as inhibitors of HIV-1 protease produced by Stachybotrys sp. I. Fermentation, isolation and biological activity. J Antibiot. 1996;49:13-19.   DOI
19 Roggo BE, Hug P, Moss S, et al. Novel spirodihydrobenzofuranlactams as antagonists of endothelin and as inhibitors of HIV-1 protease produced by Stachybotrys sp. II. Structure determination. J Antibiot. 1996;49:374-379.   DOI
20 Jarvis BB, Sorenson WG, Hintikka EL, et al. Study of toxin production by isolates of Stachybotrys chartarum and Memnoniella echinata isolated during a study of pulmonary hemosiderosis in infants. Appl Environ Microbiol. 1998;64:3620-3625.   DOI
21 Jarvis BB, Zhou Y, Wang S, et al. Toxigenic molds in water-damaged buildings: dechlorogriseofulvins from Memnoniella echinata. J Nat Prod. 1996;59:553-554.   DOI
22 Cai L, Tsui CKM, Zhang KQ, et al. Aquatic fungi from Lake Fuxian, Yunnan, China. Fungal Divers. 2002;9:57-70.
23 Lumbsch HT. Phylogeny of filamentous ascomycetes. Naturwissenschaften. 2000;87:335-342.   DOI
24 Zhang N, Castlebury LA, Miller AN, et al. An overview of the systematics of the Sordariomycetes based on a four-gene phylogeny. Mycologia. 2006; 98:1076-1087.   DOI
25 Maharachchikumbura SSN, Hyde KD, Jones EBG, et al. Towards a natural classification and backbone tree for Sordariomycetes. Fungal Divers. 2015;72:199-301.   DOI
26 Maharachchikumbura SSN, Hyde KD, Jones EBG, et al. Families of Sordariomycetes. Fungal Divers. 2016;79:1-317.   DOI
27 Ho WH, Hyde KD, Hodgkiss IJ. Fungal communities on submerged wood from streams in Brunei, Hong Kong and Malaysia. Mycol Res. 2001;105:1492-1501.   DOI
28 Jones EBG, Suetrong S, Sakayaroj J, et al. Classification of marine Ascomycota, Basidiomycota, Blastocladiomycota and Chytridiomycota. Fungal Divers. 2015;73:1-72.   DOI
29 Hyde KD, Hongsanan S, Jeewon R, et al. Fungal diversity notes 367-491: taxonomic and phylogenetic contributions to fungal taxa. Fungal Divers. 2016;80:1-270.   DOI
30 Sung GH, Hywel-Jones NL, Sung JM, et al. Phylogenetic classification of Cordyceps and the clavicipitaceous fungi. Stud Mycol. 2007;57:5-59.   DOI
31 Jaklitsch WM, Voglmayr H. Phylogenetic relationships of five genera of Xylariales and Rosasphaeria gen. nov. (Hypocreales). Fungal Divers. 2012;52:75-98.   DOI
32 PeiGui L, DoiY X, Hua W, et al. The Hypocreaceae of China III. Some fungicolous species of the genus Hypocrea. Mycosystema. 2000;19:317-327.   DOI
33 Barr ME. The ascomycetes connection. Mycologia. 1983;75:1-13.   DOI
34 Alexopoulos CJ, Mims CW, Blackwell M. Introductory mycology. New York: Wiley; 1996.
35 Barr ME. Prodromus to class Loculoascomycetes. Massachusetts: Amherst; 1987.
36 Barr ME. Prodromus to nonlichenized, pyrenomycetous members of class Hymenoascomycetes. Mycotaxon. 1990;39:43-184.
37 Eriksson O, Hawksworth DL. Outline of the Ascomycetes-1993. Syst Ascomycetum. 1993;12:1-257.
38 Hongsanan S, Maharachchikumbura SSN, Hyde KD, et al. An updated phylogeny of Sordariomycetes based on phylogenetic and molecular clock evidence. Fungal Divers. 2017;84:25-41.   DOI
39 Wang XW, Houbraken J, Groenewald JZ, et al. Diversity and taxonomy of Chaetomium and chaetomium- like fungi from indoor environments. Stud Mycol. 2016;84:145-224.   DOI
40 Pinruan U, McKenzie EHC, Jones EBG, et al. Two new species of Stachybotrys, and a key to the genus. Fungal Divers. 2004;17:145-157.