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HG 2
    HG 2
  • 平臺(tái)編號(hào):bio-48917
  • 國(guó)際編號(hào):ATCC 205032
  • 拉丁屬名: Tetrahymena pigmentosa
  • 規(guī)格:test tube
  • 用途: ATCC原裝進(jìn)口
  • 服務(wù)費(fèi)用:
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  • 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))

ATCC? Number:205032?
Organism: Tetrahymena pigmentosa subsp. 06
Designations: HG 2
Isolation: Roadside ditch, Cook County, IL, 1976
Depositors: DL Nanney, EM Simon
History: ATCC<<--DL Nanney, EM Simon<<--D. Nyberg
Biosafety Level:1
Shipped: test tube
Growth Conditions: ATCCmedium 357: Tetrahymena mediumMax Temperature: 27.0°C Min Temperature: 15.0°C Duration: axenic
Permits/Forms: In addition to the MTA mentioned above, other ATCC and/or regulatory permits may be required for the transfer of this ATCC material. Anyone purchasing ATCC material is ultimately responsible for obtaining the permits. Please click here for information regarding the specific requirements for shipment to your location.
Geno Type: II/III
Comments: Tetrahymena pigmentosa ssp. 6
Classification: KINGDOM: Protozoa
References: 4797: Simon EM, Doerder FP. The unique position of the degenerating macronucleus in Tetrahymena tropicalis. J. Protozool. 28: 203-205, 1981. 20920: Williams NE, et al. Protein similarities in the genus Tetrahymena and a description of Tetrahymena leucophrys n. sp.. J. Protozool. 31: 313-321, 1984. 32134: Nanney DL, et al. Comparison of sequence differences in a variable 23S rRNA domain among sets of cryptic species of ciliated protozoa. J. Eukaryot. Microbiol. 45: 91-100, 1998. PubMed: 9495037 38706: Huvos P. Developmental DNA rearrangements and micronucleus specific sequences in five species within the Tetrahymena pyriformis species complex. Genetics 141: 925-936, 1995. PubMed: 8582637 38710: Meyer EB, Nanney DLIsozymes in the ciliated protozoan TetrahymenaIn: Meyer EB, Nanney DLIsozymes: Current topics in biological and medical research13New YorkAlan R. Liss Inc.61-101, 1987 38713: Nanney DL, et al. Cytogeometric constraints in Tetrahymena evolution: contractile vacuole pore positions in nineteen species of the Tetrahymena pyriformis complex. Amer. Nat. 115: 705-717, 1980. 38717: Nielsen H, et al. Updating rDNA restriction enzyme maps of Tetrahymena reveals four new intron-containing species. J. Protozool. 32: 480-485, 1985. PubMed: 2995652 38718: Nielsen H, et al. Inheritance of the group I rDNA intron in Tetrahymena pigmentosa. Dev. Genet. 13: 133-142, 1992. PubMed: 1499155 38722: Preparata RM, et al. Ciliate evolution: the ribosomal phylogenies of the tetrahymenine ciliates. J. Mol. Evol. 28: 427-441, 1989. PubMed: 2501504 38724: Ricci N. Ionic resistance in strains of the Tetrahymena pyriformis complex. J. Protozool. 28: 453-460, 1981. 38729: Schousboe P, et al. Porphyrin rings and phospholipids: stimulators of cloning efficiency in certain species of Tetrahymena. J. Protozool. 39: 343-345, 1992. PubMed: 1578410 38732: Simon EM. Mating-type inheritance and maturity times in crosses between subspecies of Tetrahymena pigmentosa. Genetics 94: 93-113, 1980. 38743: Williams NE, et al. Protein polymorphism and evolution in the genus Tetrahymena. J. Protozool. 39: 54-58, 1992. PubMed: 1560420

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