Fusarium graminearum Schwabe 拉丁名
ATCC
MYA-4620
編號
Strain Designations 菌株別名 FGSC 9075 [NRRL 31084, PH-1]
Alternate State Gibberella zeae (Schweinitz) Petch, teleomorph
Frozen 冷凍物 : -80°C or colder
Freeze-Dried 凍干物 : 2°C to 8°C
Live Culture: See Propagation Section
Type Strain 模式菌株 no
Preceptrol
no
Genome Sequenced
Strain
Yes
Comments
Plant pathogen causes head blight (scab) in wheat and barley.
Genome sequencing strain (International Gibberella zeae Genomics Consortium / Broad Institute, USA).
Medium ATCC
Medium 28: Emmons' modification of Sabouraud's agar
ATCC
培養(yǎng)基 Medium 200: YM agar or YM broth
ATCC
Medium 325: Malt extract agar (Blakeslee's formula)
ATCC
Medium 336: Potato dextrose agar (PDA)
Growth Conditions 生長條件
Temperature 培養(yǎng)溫度 : 24°C to 26°C
Atmosphere 需氧情況 : Typical aerobic
Sequenced Data
18S ribosomal RNA gene, partial sequence; internal transcribed spacer 1, 5.8S ribosomal RNA gene, and internal transcribed spacer 2, complete sequence; and 28S ribosomal RNA gene, partial sequence
AGGGATCATTACCGAGTTTACAACTCCCAAACCCCTGTGAACATACCTTATGTTGCCTCGGCGGATCAGCCCGCGCCCCGTAAAAAGGGACGGCCCGCCGCAGGAACCCTAAACTCTGTTTTTAGTGGAACTTCTGAGTATAAAAAACAAATAAATCAAAACTTTCAACAACGGATCTCTTGGTTCTGGCATCGATGAAGAACGCAGCAAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACATTGCGCCCGCCAGTATTCTGGCGGGCATGCCTGTTCGAGCGTCATTTCAACCCTCAAGCCCAGCTTGGTGTTGGGAGCTGCAGTCCTGCTGCACTCCCCAAATACATTGGCGGTCACGTCGAGCTTCCATAGCGTAGTAATTTACACATCGTTMCTGGTAATCGTCGCGGCCACGCCGTTAAACCCCAACTTCTGAATG
D1D2 region of the 28S ribosomal RNA gene
CATATCAATAAGCGGAGGAAAAGAAACCAACAGGGATTGCCCTAGTAACGGCGAGTGAAGCGGCAACAGCTCAAATTTGAAATCTGGCTTTCGGGCCCGAGTTGTAATTTGTAGAGGATGATTTTGATGCGGTGCCTTCCGAGTTCCCTGGAACGGGACGCCATAGAGGGTGAGAGCCCCGTCTGGTTGGATGCCAAATCTCTGTAAATCTCCTTCGACGAGTCGAGTAGTTTGGGAATGCTGCTCTAAATGGGAGGTATATGTCTTCTAAAGCTAAATACCGGCCAGAGACCGATAGCGCACAAGTAGAGTGATCGAAAGATGAAAAGCACTTTGAAAAGAGAGTTAAAAAGTACGTGAAATTGTTGAAAGGGAAGCGTTTATGACCAGACTTGGGCTTGGTTAATCATCTGGGGTTCTCTCCAGTGCACTTTTCCAGTCCAGGCCAGCATCAGTTTTCGCCGGGGGATAAAGGCTTCGGGAATGTGGCTCCCCTCGGGGAGTGTTATAGCCCGTTGTGTAATACCCTGGTGGGGACTGAGGTTCGCGCTTCTGCAAGGATGCTGGCGTAATGGTCATCAACGA
Name of Depositor 寄存人 FGSC
Special Collection ATCC
Chain of Custody 來源國家 ATCC <-- FGSC
Isolation 分離基物
Wheat kernels, Michigan, USA.
Cross References
Nucleotide (GenBank) : GU327636 ITS including 5.8S rRNA gene
Nucleotide (GenBank) : AACM00000000 Fusarium graminearum PH-1, whole genome shotgun sequencing project
References 參考文獻
Wang H, et al. A fungal phylogeny based on 82 complete genomes using the composition vector method. BMC Evol. Biol. 9: 195, 2009. PubMed: 19664262
Cuomo CA, et al. The Fusarium graminearum genome reveals a link between localized polymorphism and pathogen specialization. Science 317: 1400-1402, 2007. PubMed: 17823352
Trail F, et al. Physiological and environmental aspects of ascospore discharge in Gibberella zeae (anamorph Fusarium graminearum). Mycologia 94: 181-189, 2002.
Son H, et al. AbaA regulates conidiogenesis in the Ascomycete fungus Fusarium graminearum. PLoS One 8: e72915, 2013. PubMed: 24039821
O'Donnell K, et al. Phylogenetic analyses of RPB1 and RPB2 support a middle Cretaceous origin for a clade comprising all agriculturally and medically important fusaria. Fungal Genet Biol 52: 20-31, 2013. PubMed: 23357352
Al-Reedy RM, et al. Comparative analysis of Fusarium mitochondrial genomes reveals a highly variable region that encodes an exceptionally large open reading frame. Fungal Genet Biol 49: 2-14, 2012. PubMed: 22178648
Merhej J, Richard-Forget F, Barreau C. The pH regulatory factor Pac1 regulates Tri gene expression and trichothecene production in Fusarium graminearum. Fungal Genet Biol 48: 275-284, 2011. PubMed: 21126599
Yli-Mattila T, et al. Fusarium sibiricum sp. nov, a novel type A trichothecene-producing Fusarium from northern Asia closely related to F. sporotrichioides and F. langsethiae. Int J Food Microbiol 147: 58-68, 2011. PubMed: 21459470
Glenn AE, et al. Comparative genomic and phylogenetic investigation of the xenobiotic metabolizing arylamine N-acetyltransferase enzyme family. FEBS Lett 584: 3158-3164, 2010. PubMed: 20621844
Magliano P, et al. Characterization of the Aspergillus nidulans biotin biosynthetic gene cluster and use of the bioDA gene as a new transformation marker. Fungal Genet Biol 48: 20713166, 2010. PubMed: 20713166
Aparecido Cordeiro F, Bertechini Faria C, Parra Barbosa-Tessmann I. Identification of new galactose oxidase genes in Fusarium spp. J Basic Microbiol 50: 527-537, 2010. PubMed: 21077113
Flipphi M, et al. Biodiversity and evolution of primary carbon metabolism in Aspergillus nidulans and other Aspergillus spp. Fungal Genet Biol 46: S19-S44, 2009. PubMed: 19610199