期刊文献+

DNA分子标记在念珠菌遗传多样性中的应用 被引量:1

下载PDF
导出
摘要 DNA分子标记是继形态标记、细胞标记和生化标记之后发展起来的一种较为理想的遗传标记形式。大致有基于southern杂交技术、PCR反应、限制性酶切与PCR技术相结合和单核苷酸多态性等DNA分子标记。
出处 《中国真菌学杂志》 2011年第5期312-315,共4页 Chinese Journal of Mycology
基金 国家自然科学基金(31000079) 上海市基础研究重点项目(10JC1417500)
关键词 念珠菌 RAPD AFLP SSR SNPS
  • 相关文献

参考文献26

  • 1熊发前,蒋菁,钟瑞春,韩柱强,贺梁琼,李忠,庄伟建,唐荣华.分子标记技术的两种新分类思路及目标分子标记技术的提出[J].中国农学通报,2010,26(10):60-64. 被引量:28
  • 2Agarwal M, Shrivastava N, Padh H, et al. Advances in molecu-lar marker techniques and their applications in plant sciences [J]. Plant Cell Rep, 2008, 27(4) : 617-631.
  • 3Semagn K, Bjomstad A, Ndjiondjop MN. An overview of molec- ular marker methods for plants [ J]. Aft J Biotechn, 2006, 5 (25) : 2540-2568.
  • 4Abbes S, Amouri I, Sellami H, et al. A review of molecular techniques to type Candida glabrata isolates [ J ]. Mycoses, 2010, 53(6) : 463-467.
  • 5Van AEC, Clemons KV, Markham AN, et al. Molecular epide- miology of the global and temporal diversity of Candida parapsilosis [J]. Scand J Inf Dis, 2008, 40(10) : 827-834.
  • 6Williams JH, Kubelik AR, Rafalski JA, et al. DNA polymor- phisms amplified by arbitrary primers are useful as genetis mark- ers[J]. Nucleic Acids Res, 1990, 18(22) : 6531-6535.
  • 7Rocha BA , Negro GMB, Yamamoto L, et al. Identification and differentiation of Caudida species from pediatric patients by ran- dom amplified polymorphic DNA [ J ]. Rev Soc Bras Med Trop 2008,41 ( 1 ) : 1-5.
  • 8Valrrio HM, Weikert-Oliveira RC, Resende MA. Differentiation of Candida species obtained from nosocomial candidemia using RAPD-PCR technique [ J]. Rev Soc Bras Med Trop, 2006,39 (2) :174-178.
  • 9孙静,亓庆国.口腔白假丝酵母菌的PCR 25S rDNA和随机扩增多态性DNA基因分型[J].牙体牙髓牙周病学杂志,2010,20(7):367-370. 被引量:1
  • 10Giammaneo GM, Lopes MM, Coimbra RS, et al. Value of mor- photyping for the characterization of Candida albicans clinical i- solates [J]. Mem lnst Oswaldo Cruz,2005,100 (5) : 483-490.

二级参考文献46

  • 1欧阳育琪,黄强,颜复生.临床感染菌菌谱及其耐药性监测[J].中华医院感染学杂志,2006,16(5):575-578. 被引量:20
  • 2[1]Riederer KM,Ramanathan J,Barczak J,et al.Utility of a pre-optimized kit for random amplified polymorphic DNA in typing Candida albicans[J].Can J Microbiol,2002,48(4):369-373.
  • 3[2]Tamura M,Watanabe K,Mikami Y,et al.Molecular characterization of new clinical isolates of Candida albicans and C.dubliniensis in Japan:analysis reveals a new genotype of C.albicans with group Ⅰ intron[J].J Clin Microbiol,2001,39(12):4309-4315.
  • 4[4]Renders N,Romling Y,Verbrugh H,et al.Comparative typing of Pseudomonas aeruginosa by random amplification of polymorphic DNA or pulsed-field gel electrophoresis of DNA macrorestriction fragments[J].J Clin Microbiol,1996,34(12):3190-3195.
  • 5[5]Vrioni G,Matsiota-Bernard P.Molecular typing of Candida isolates from patients hospitalized in an intensive care unit[J].J Infect,2001,42(1):50-56.
  • 6[6]McEwen JG,Taylor JW,Carter D,et al.Molecular typing of pathogenic fungi[J].Med Mycol,2000,38(Suppl 1):189-197.
  • 7Van Tienderen P H,De Haan A A,Van der Linden C G,et al.Biodiversity assesslnent using markers for ecologically important traits[J].Trends Ecol Evol,2002,17:577-582.
  • 8Pang M X,Percy R G,Hughs E,et al.Promoter anchored amplified polymorphism based on random amplified polymorphic DNA (PAAP-RAPD)in cotton[J].Euphytica,2009,167(3):281-291.
  • 9Agarwal M,Shrivastava N,Padh H.Advances in molecular marker techniques and their applications in plant sciences[J].Plant Cell Rep,2008,27:617-631.
  • 10Botstein D,White R L,Skolnick M,et al.Construction of a genetic linkage map in man using restriction fragment length polymorphisms[J].Am J Hum Genet,1980,32:314-331.

共引文献31

同被引文献67

  • 1曹晓星,苏建强,郑天凌,俞志明,宋秀贤.海洋微生物的多样性在赤潮调控中的利用[J].海洋科学,2007,31(5):63-69. 被引量:13
  • 2Barnes RSK, Hughes RN. An Introduction to Marine Ecology[M]. Chichester, UK: Wiley-Blackwell, 1999: 1-3.
  • 3Azam F, Worden AZ. Microbes, molecules, and marine ecosystems[J]. Science, 2004, 303(5664): 1622-1624.
  • 4Simmons TL, Coates RC, Clark BR, et al. Biosynthetic origin of natural products isolated from marine microorganism-invertebrate assemblages[J]. Proceedings of the National Academy of Sciences of the United States of America, 2008, 105(12): 4587-4594.
  • 5Arrigo KR. Marine microorganisms and global nutrient cycles[J]. Nature, 2004, 437(7057): 349-355.
  • 6Arakaki A, Shibusawa M, Hosokawa M, et al. Preparation of genomic DNA from a single species of uncultured magnetotactic bacterium by multiple-displacement amplification[J]. Applied and Environmental Microbiology, 2010, 76(5): 1480 1485.
  • 7Dyhrman SNT, Ammerman JW, Mooy V, et al. Microbes and the marine phosphorus cycle[J]. Oceanography, 2007, 20(2): 110-116.
  • 8Hutchins DA, Mulholland MR, Fu FX. Nutrient cycles and marine microbes in a CO2-enriched ocean[J]. Oceanography, 2009, 22(4): 128-145.
  • 9Schirmer A, Gadkari R, Reeves CD, et al. Metagenomic analysis reveals diverse polyketide synthase gene clusters in microorganisms associated with the marine sponge Discodermia dissoluta[J]. Applied and Environmental Microbiology, 2005, 71(8): 4840-4849.
  • 10Lu Z, Deng Y, van Nostrand JD, et al. Microbial gene functions enriched in the deepwater horizon deep-sea oil plume[J]. The ISME Journal, 2011, 6(2): 451-460.

引证文献1

二级引证文献28

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部