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Strain Number:UAMH 9030
Species Name: Corynascus thermophilus
Type: Corynascus thermophilus
Synonyms: Chaetomidium thermophilum / Crassicarpon thermophilum / Thielavia thermophila
Taxonomy: FUNGI Ascomycota, Sordariomycetes, Sordariales, Chaetomiaceae
Strain History: C.L. Fergus (R46W1) -> ATCC 22066 -> UAMH
Substrate: mushroom compost
Location: USA Pennsylvania (GEO: 41.203,-77.195)
Isolator: C.L. Fergus (R46W1)
Isolation Date:
Date Received: 1997-09-16
Characters: MOLECULAR SYSTEMATICS phylogeny of thermophilic fungi - Morgenstern I, Powlowski J, Ishmael N, Darmond C et al, Fungal Biology 116:489-502, 2012 // SYSTEMATICS/ TAXONOMY mating studies - Sigler et al., Mycotaxon 68:185-192, 1998 // THERMOPHILIC optimum temperature 45C
Compounds:
Cross Reference: ATCC 22066 // CBS 405.69
Pathogenic Potential: Human: no | Animal: no | Plant: no
Biosafety Risk Group: RG1 (check the PHAC ePATHogen Risk Group Database for updates)
Regulatory Requirements: Canadian requesters must provide a CFIA Written Authorization for transfer (http://www.inspection.gc.ca/plants/plant-pests-invasive-species/directives/date/d-12-03/eng/1432656209220/1432751554580#app2) prior to shipment. International requesters must provide all legally required importation documentation prior to shipment. This strain is not available for shipment to Cuba, the Democratic People's Republic of Korea, Iran or Syria. Plant pathogenicity status may be verified by using the USDA Agricultural Research Service (ARS) Fungal Database
MycoBank ID: 312215
Sequences: >UAMH09030_HQ871731_elongation factor-1 alpha GGCCAGACCCGTGAGCATGCTCTGCTCGCCTTCACCCTGGGTGTCAAGCAGCTCATCGTCGCCATCAACAAGATGGACACGACGCAGTGGTCCGAGGCTCGCTACAACGAAATCGTCAAGGAGACCTCCAACTTCATCAAGAAGGTCGGCTACAACCCGAAGACRGTTCCCTTCGTTCCCATCTCTGGTTTCCACGGTGACAACATGCTTGAGAAAACCACCAACGCTCCTTGGTACAAGGGCTGGGAAAAGGAGACCAAGACCAAGGTGACGGGCGTGACCCTTCTCGACGCCATCGACGCCATCGACCCCCCGACGCGTCCCACTGAGAAGCCCCTCCGTCTTCCCCTTCAGGACGTGTACAAGATTGGCGGTATCGGCACCGTTCCCGTCGGCCGTATCGAGACCGGTATTCTCAAGCCCGGTATGGTCGTTACCTTCGCTCCCTCCAACATCACCACTGAAGTCAAGTCCGTCGAGATGCACCACGAGCAGCTCGCCGAGGGTCTTCCCGGCGACAACGTCGGCTTCAACGTGAAGAACGTCTCCGTCAAGGAAATCCGCCGTGGTAACGTCGCCGGTGACTCGAAGAACGACCCCCCCTCTGGTGCCGCTTCTTTCGATGCTCAGGTCATCATTCTCAACCACCCCGGTCAGGTCGGTGCTGGCTACGCCCCCGTTCTTGACTGCCACACCGCCCACATTGCTTGCAAGTTCGCGGAGAT >UAMH09030_HQ871793_LSU AGCGGAGGGATCATTACAGAGTTGCAAGACTCCCCCAAACCATCGCGAACGCTACCCCTAAACCGTTGCTTCGGCGGGCGGCGCCCCCGCGCGCCCCTGGGCCCGCACACCCGCGGGCGCCCGCCGGAGGTTGCACAGAAACTCTCTGACACCCGTTGGCCGCTCTGAGTCTTTTGTGTACCGAATAAGTCAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCCGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGCCAGATTCTCCCTGGCGGGCATGCCTGTTCGAGCGTCATTTCGCCCATCAAGCCCACGGCTTGTGTTGGGGACCTGCGGCCGCCCGCAGGCCCCGAAAACCAGTGGCGGGCTCGCTAGTCACACCGAGCGTAGTAGCAACGCGAAACCTCGCTCAG >UAMH09030_HQ871814_RNA polymerase II CTGCATCGACACCAACAAGAACTTCTCGCTGGCGCTGGGCATCAAGCACTCGACCCTCACCAACGGCCTCAAGTACTCGCTGGCCACGGGCAACTGGGGCGACCAGAAGAAGGCGATGAGCTCGACGGCCGGCGTGTCCCAGGTGCTGAACCGCTACACGTTCGCCTCGACGCTCTCGCACCTGCGGCGCACCAACACGCCCATCGGCCGCGACGGCAAGCTCGCGAAGCCGCGCCAGCTCCACAACACCCACTGGGGCTTGGTCTGCCCGGCCGAGACGCCCGAAGGCCAGGCCTGCGGTCTGGTCAAGAACCTGTCGCTCATGTGCTACGTCAGCGTGGGCACGCCCGCCGATCCGATCGTCGAGTTCATGATCGCCCGGGGCATGGAGGTGCTCGAGGAGTACGAGCCGCTCCAGTACCCCAACGCCACCAAGGTGTTCGTCAACGGCACCTGGGTCGGCGTCCACCAGGACCCAAAGAACCTCGTCAGCCTGGTACAGGGGCTGCGGCGGAAGAACGTCATCTCGTTCGAGGTCTCCCTCATCCGGGACATTCGCGATCGCGAATTCAAGATCTTCTCGGACGCCGGCCGCGTCATGAGGCCGCTGTTCACAGTGG >UAMH09030_JQ067905_SSU GTCTCAAAGATTAAGCCATGCATGTCTAAGTATAAGCAATTATACAGCGAAACTGCGAATGGCTCATTAAATCAGTTATCGTTTATTTGATAGTACCTTACTACATGGATAACCGTGGTAATTCTAGAGCTAATACATGCTAAAAATCCCGACTTCGGAAGGGATGTATTTATTAGATTAAAAACCAATGCCCTTCGGGGCTCTCTGGTGATTCATGATAACTTCTCGAATCGCACGGCCTTGCGCCGGCGATGGTTCATTCAAATTTCTGCCCTATCAACTTTCGACGGCTGGGTATTGGCCAGCCGTGGTGACAACGGGTAACGGAGGGTTAGGGCTCGACCCCGGAGAAGGAGCCTGAGAAACGGCTACTACATCCAAGGAAGGCAGCAGGCGCGCAAATTACCCAATCCCGACACGGGGAGGTAGTGACAATAAATACTGATACAGGGCTCTTTTGGGTCTTGTAATTGGAATGAGTACAATTTAAATCCCTTAACGAGGAACAATTGGAGGGCAAGTCTGGTGCCAGCAGCCGCGGTAATTCCAGCTCCAATAGCGTATATTAAAGTTGTTGAGGTTAAAAAGCTCGTAGTTGAACCTTGGGCCTAGCCGGCCGGTCCGCCTCACCGCGTGCACTGGCTCGGCTGGGTCTTTCCTTCTGGAGAACCGCATGCCCTTCACTGGGTGTGCCGGGGAACCAGGACTTTTACTCTGAACAAATTAGATCGCTTAAAGAAGGCCTATGCTCGAATACATTAGCATGGAATAATAGAATAGGACGTGTGGTTCTATTTTGTTGGTTTCTAGGACCGCCGTAATGATTAATAGGGACAGTCGGGGGCATCAGTATTCAATTGTCAGAGGTGAAATTCTTGGATTTATTGAAGACTAACTACTGCGAAAGCATTTGCCAAGGATGTTTTCATTAATCAGGAACGAAAGTTAGGGGATCGAAGACGATCAGATACCGTCGTAGTCTTAACCATAAACTATGCCGATTAGGGATCGGACGGCGTTATCTTTGACCCGTTCGGCACCTTACGATAAATCAAAATGTTTGGGCTCCTGGGGGAGTATGGTCGCAAGGCTGAAACTTAAAGAAATTGACGGAAGGGCACCACCAGGGGTGGAGCCTGCGGCTTAATTTGACTCAACACGGGGAAACTCACCAGGTCCAGACACGATGAGGATTGACAGATTGAGAGCTCTTTCTTGATTTCGTGGGTGGTGGTGCATGGCCGTTCTTAGTTGGTGGAGTGATTTGTCTGCTTAATTGCGATAACGAACGAGACCTTAACCTGCTAAATAGCCCGTATTGCCTTGGCAGTACGCCGGCTTCTTAGAGGGACTATCGGCTCAAGCCGATGGAAGTTTGAGGCAATAACAGGTCTGTGATGCCCTTAGATGTTCTGGGCCGCACGCGCGCTACACTGACAGAGCCAGCGAGTACTCCCTTGGCCGGAAGGCCCGGGTAATCTTGTTAAACTCTGTCGTGCTGGGGATAGAGCATTGCAATTATTGCTCTTCAACGAGGAATCCCTAGTAAGCGCAAGTCATCAGCTTGCGTTGATTACGTCCCTGCCCTTTGTACACACCGCCCGTCGCTACTACCGATTGAATGGCTCAGTGAGGCTTTCGGACTGGCCCAGAGAGGTCGGCAACGACCACTCAGGGCCGGAAAG >UAMH09030_JF412005_SSU-LSU GAGGGATCATTACAGAGTTGCAAGACTCCCCCAAACCATCGCGAACGCTACCCCTAAACCGTTGCTTCGGCGGGCGGCGCCCCCGCGCGCCCCTGGGCCCGCACACCCGCGGGCGCCCGCCGGAGGTTGCACAGAAACTCTCTGACACCCGTTGGCCGCTCTGAGTCTTTTGTGTACCGAATAAGTCAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCCGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGCCAGATTCTCCCTGGCGGGCATGCCTGTTCGAGCGTCATTTCGCCCATCAAGCCCACGGCTTGTGTTGGGGACCTGCGGCCGCCCGCAGGCCCCGAAAACCAGTGGCGGGCTCGCTAGTCACACCGAGCGTAGTAGCAACGCGAAACCTCGCTCAGGGCGTGCTGCGGGTTCCGGCCGTAAAACGCCAACACACCCCAAGGTTGACCTCGGAT

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