亚日韩在线中文字幕亚洲,国产在线播放鲁啊鲁视频,张柏芝手扒性器全部图片,亚洲成无码电影在线观看

A1M R265
    A1M R265
  • 平臺(tái)編號(hào):bio-105124
  • 國(guó)際編號(hào):ATCC MYA-4093
  • 拉丁屬名: Cryptococcus gattii
  • 規(guī)格:frozen
  • 用途:ATCC原裝進(jìn)口
  • 服務(wù)費(fèi)用:
    加載中……
  • 訂購(gòu)
  • 注意事項(xiàng):僅用于科學(xué)研究或者工業(yè)應(yīng)用等非醫(yī)療目的不可用于人類(lèi)或動(dòng)物的臨床診斷或治療,非藥用,非食用(產(chǎn)品信息以出庫(kù)為準(zhǔn))

Cryptococcus gattii (Vanbreuseghem et Takashio) Kwon-Chung et Boekhout 拉丁名

ATCC MYA-4093 編號(hào)
Deposited As Cryptococcus bacillisporus
Strain Designations 菌種別名 A1M R265 [CBS 10514]
Alternate State Filobasidiella bacillispora Kwon-Chung, teleomorph
Application 用途
Multigene phylogeny and phenotypic characterization.
Biomedical Research and Development Material
Biosafety Level 安全等級(jí) 2
Biosafety classification is based on U.S. Public Health Service Guidelines, it is the responsibility of the customer to ensure that their facilities comply with biosafety regulations for their own country.
Product Format 提供形式 frozen
Storage Conditions 培養(yǎng)條件
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
Antigenic Properties Serotype B
Genotype VGIIa, AFLP6A
Preceptrol no
Genome Sequenced Strain 
Yes
Mating Type alpha
Comments 注釋
Genome sequencing strain (Broad Institute, USA)
Cause cryptococcosis
Represents one of the two genotypes causing an outbreak in Vancouver Island
Multigene phylogeny and phenotypic characterization
Designated as type strain of Cryptococcus deuterogattii Hagen & Boekhout by Hagen et al. (2015)
Medium 培養(yǎng)基 ATCC Medium 28: Emmons' modification of Sabouraud's agar
ATCC Medium 200: YM agar or YM broth
ATCC Medium 1245: YEPD
Growth Conditions 生長(zhǎng)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 26S ribosomal RNA gene, partial sequence
GGTTTCCGTAGGTGAACCTGCGGAAGGATCAGTAGAGAATACTGGACTTCGGTCCATTTATCTACCCATCTACACCTGTGAACTGTTTATGTGCTTCGGCACGTTTTACACAAACTTCTAAATGTAATGAATGTAATCTTATTATAACAATAATAAAACTTTCAACAACGGATCTCTTGGCTTCCACATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAGTCTTTGAACGCAACTTGCGCCCTTTGGTATTCCGAAGGGCATGCCTGTTTGAGAGTCATGAAAATCTCAATCCCTCAGGTTTTATTACCTGTTGGACTTGGATTTGGGTGTTTGCCGCGACCTGCAAAGGACGTCGGCTCGCCTTAAATGTGTTAGTGGGAAGGTGATTACCTGTCAGCCCGGCGTAATAAGTTTCGCTGGGCCTATGGGGTAGTCTTCGGCTTGCTGATAACAACCATCTCTTTTTGTTTGACCTCAAATCAGGTAGGGCTACCCGCTGAACTTAAGCATATCAATAA
D1D2 region of the 26S ribosomal RNA gene
ATATCAATAAGCGGAGGAAAAGAAACTAACAAGGATTCCCTTAGTAACGGCGAGTGAACCGGGAAGAGCTCAAATTTGAAATCTGGCGTCCTCCGGGCGTCCGAGTTGTAATCTACAGAAACGTTTTCCGTGCTGGACCGTGTCTAAGTCCCTTGGAATAGGGTATCAAAGAGGGTGACAATCCCGTACTTGACACGATCACCAGTGCTCTGTGATACGTTTTCTACGAGTCGCGTTACTTGGGAGTGTAGCGCAAAATGGGTGGTAAACTCCATCTAAAGCTAAATATTGGTGGAAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGCACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGTTGAAAGGGAAACGATTGAAGTCAGTCGTGTCTATTGGGTTCAGCCAGTTCTGCTGGTGTATTCCCTTTAGACGGGTCAACATCAGTTCTGATCGGTGGATAAGGGCTGGAGGAATGTGGCACTCTTCGGGGTGTGTTATAGCCTCCTGTCGCATACACTGGTTGGGACTGAGGAATGCAGCTCGCCTTTATGGCCGGGGTTCGCCCACGTTCGAGCTTAGGATGTTGACAAAATGGCTTTAAACGAC
26S ribosomal RNA gene and intergenic spacer (IGS), partial sequence
ATGGGAACGGGGTGCTGTAAGTGGTAGAGTAGCCTTGTTGCTACGATCCACTGAGGCTAAGCCCTTGTTCTATAGATTTGTCTCTAATATGTTAGGTCTCGGGGGGCTTCCTCTAGAGACTTGGATGTAAGAGGCTTTGCTTTTTTTTATGACGATGACTTGTCAAAGTGTGGATGACTCCAGGAGAGAGGTCGGGCTGGTAATTAGTAATATCAGTCAGTCATTTCAGCTGGCGCCATCGATACTTTATAAGTCAAACTTAACCATTTCACTGTGTAGTAAGTAGTAGGCTCTGAATTACTAGAGACACTTGCCAGGTTATCGCAAGTTGGCAGGCAGGCAGGACACACATACTATTGATTTCACGGTCATGGGGGACTTGGCTGCTGGTGCTTGAGTTGCATAATAGAGAGAGTATATGCATGTCGCGGGGGGGGGACTTGGCTAAGATGCGTTATGCGGCAAGCAAGGTAAGTAGTATTTGTATTAAAGTATTTAGTTACTTTTCCAGTCATGGGGGACTTTGATAGTGGTTGTGAGCCGGAATGAAAAATGGGTAAATGTGGTATGGATGGTGAGAGGGGGAGCTGCCAAGTGTATGCAGTGGGTGTGCTTATAGCATAGTCAAGAGGGGATGGGCAATTAAATTTTGGAAAGTTGTTTGACCCGACCTGACGGTGACTCTAATAGGCTGGTCAAGCAAACGTTTAAGTTGAGTCAAGCTCGGTCAAGCAAAGTCTAGAAAAGATTAATGATCGCTAAGAATTACTCCGGTCGCGGGGGGCTTGCAACTTGTCTGGCCCACTGTGGGTCCAGTTT
glycerol-3-phosphate dehydrogenase 1 (GPD1) gene, partial cds
TACTTGCATAAATACAATGGTTGTCAAGGTTGGAATCAACGGTTTCGGTACGTGATCTGTCTCTATCAAGCGTTGCTTCATATGTCACCAATGTGGTTTCCGATATTGTGCACCGTCCTTGGGTTACTGGTAGCTAATAGTTATGCGATAGGTCGTATCGGTCGAATTGTTCTCAGGTATGCTTTAAGTCAAGGGGTAAGACAGCTGCGTATCTAACCATCAAATTAGGAACGCCATCGAGCATGGAGACCTTGAGGTTGTTGCTGTCAACGAGTGAGTATTCTCAAAAGTGTTAATCTATTAAATAAATTATTTACTTTTGCAAAGCCCTTTCATTGACTTGGACTACATGGTATAATACTTTCTTCTGTACAATTGCTTCGTTTTGTGCTAACTGTAGCATGCGTAGGTTTACATGTTCAAGTACGACTCCGTAAGTCTCTGATGGCTCTAGCGCTCTATATGGCATTTTAACCTCATTCCCAACAGACACATGGTCGCTTCAAGGGTTCTGTCGAGGTTAAGGACGGTAAGCTCTATATCAACAACAAGGCCATTTCCGTTTTCGGTGAGAAGGACCCCGCCAACATCAAGTGGGGTGACGCTGGTGCCGAGTACATCGTTGAGTCTACCGGTGTCTTCACCACTACCGAAAAGGCCGGTGTCCAT
Name of Depositor 寄存者 L Hoang
Special Collection NSF - Mycology
Chain of Custody 來(lái)源國(guó)家 ATCC <-- L. Hoang
Isolation 分離基物
Bronchial alveolar lavage, Duncan, Vancouver Island, B.C. Canada.
Cross References 
Nucleotide (GenBank) : AAFP00000000 Cryptococcus gattii VGII R265, whole genome shotgun sequencing project
References 參考文獻(xiàn)
Hu G, Kronstad JW. Gene disruption in Cryptococcus neoformans and Cryptococcus gattii by in vitro transposition. Curr Genet 49: 341-350, 2006. PubMed: 16397763
Fraser James A, et al. Same-sex mating and the origin of the Vancouver Island Cryptococcus gattii outbreak. Nature 437: 1360-1364, 2005.
Kidd Sarah E, et al. Comparative gene genealogies indicate that two clonal lineages of Cryptococcus gattii in British Columbia resemble strains from other geographical areas. Eukaryot. Cell 4: 1629-1638, 2005.
Kidd Sarah E, et al. A rare genotype of Cryptococcus gattii caused the cryptococcosis outbreak on Vancouver Island (British Columbia, Canada). Proc. Natl. Acad. Sci. USA 101: 17258-17263, 2004.
Findley K, et al. Phylogeny and phenotypic characterization of pathogenic Cryptococcus species and closely related saprobic taxa in the Tremellales. Eukaryot Cell 8(3): 353-361, 2009. PubMed: 19151324
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
Meyer W. et al. Consensus multi-locus sequence typing scheme for Cryptococcus neoformans and Cryptococcus gattii. Med. Mycol. 47(6):561-570, 2009. PubMed: 19462334
D'Souza CA, et al. Genome variation in Cryptococcus gattii, an emerging pathogen of immunocompetent hosts. mBio 2: e00342-10, 2011. PubMed: 21304167
Hagen F, et al. Recognition of seven species in the Cryptococcus gattii/Cryptococcus neoformans species complex. Fungal Genet. Biol. 78: 16-48, 2015. PubMed: 25721988 

石渠县| 广元市| 象州县| 阿拉尔市| 新营市| 万宁市| 怀安县| 平原县| 绥德县| 阿荣旗| 伊川县| 开江县| 西贡区| 桐城市| 佛山市| 靖安县| 开原市| 健康| 叙永县| 华容县| 茌平县| 淮滨县| 静安区| 甘肃省| 屏南县| 天津市| 许昌市| 海原县| 桐梓县| 阿克陶县| 桂阳县| 施秉县| 门头沟区| 定远县| 景德镇市| 武鸣县| 武功县| 石景山区| 乾安县| 琼中| 临洮县|