[1] Goffeau A, Barrell BG, Bussey H, et al. Life with 6000 genes[J]. Science,1996, 274(5287):546, 563-567. [2] 余知和,高元钢,曾昭清,等. 真菌基因组学研究进展[J].菌物学报,2008,27(5):778-787. [3] Wood V, Gwilliam R, Rajandream MA,et al. The genome sequence of Schizosaccharomyces pombe[J]. Nature,2002,415(6874):871-880. [4] Galagan JE, Calvo SE, Borkovich KA,et al. The genome sequence of the filamentous fungus Neurospora crassa[J]. Nature, 2003,422(6934):859-868. [5] 解增言, 林俊华, 谭军, 等. DNA测序技术的发展历史与最新进展[J]. 生物技术通报,2010,13(8):64-70. [6] Pettersson E, Lundeberg J, Ahmadian A. Generations of sequencing technologies[J]. Genomics. 2009,93(2):105-111. [7] 刘蓉蓉. 高等植物基因组测序回顾与展望[J]. 生物医学通报,2011(5):10-14. [8] Zhou X, Ren L, Meng Q, et al. The next-generation sequencing technology and application[J]. Protein Cell,2010,1(6):520-536. [9] Cornell MJ, Alam I, Soanes DM, et al.Comparative genome analysis across a kingdom of eukaryotic organisms: Specialization and diversification in the Fungi[J]. Genome Res,2007,17(12):1809-1822. [10] Jones T, Federspiel NA, Chibana H,et al. The diploid genome sequence of Candida albicans[J].Proc Natl Acad Sci USA,2004, 101(19):7329-7334. [11] Odds FC, Brown AJ, Gow NA. Candida albicans genome sequence: a platform for genomics in the absence of genetics[J]. Genome Biol,2004,5(7):230. [12] Jackson AP, Gamble JA, Yeomans T, et al. Comparative genomics of the fungal pathogens Candida dubliniensis and Candida albicans[J] Genome Res, 2009,19(12):2231-2244. [13] Loftus BJ, Fung E, Roncaglia P, et al. The genome of the basidiomycetous yeast and human pathogen Cryptococcus neoformans[J]. Science,2005,307(5713):1321-1324. [14] 周冰炎,蒋玮莹.后基因组时代的功能基因组学[J]. 国际遗传学杂志,2007,30(4): 261-265. [15] Nierman WC, Pain A, Anderson MJ,et al. Genomic sequence of the pathogenic and allergenic filamentous fungus Aspergillus fumigatus[J]. Nature,2005,22:438(7071):1151-1156. [16] Fedorova ND, Khaldi N, Joardar VS,et al. Genomic islands in the pathogenic filamentous fungus Aspergillus fumigatus.PLoS Genet, 2008, 11,4(4):e1000046.
[17] Kser CU, Ellington MJ, Cartwright EJ, et al. Routine use of microbial whole genome sequencing in diagnostic and public health microbiology[J]. PLoS Pathog,2012,8(8):e1002824.
[18] Baquero F. Metagenomic epidemiology: a public health need for the control of antimicrobial resistance[J]. Clin Microbiol Infect,2012,18(Suppl 4):67-73.
[19] Alcaraz LD, Belda-Ferre P, Cabrera-Rubio R,et al. Identifying a healthy oral microbiome through metagenomics[J]. Clin Microbiol Infect, 2012,18(Suppl 4):54-57.
[20] Gosalbes MJ, Abellan JJ, Durbán A, et al. Metagenomics of human microbiome: beyond 16s rDNA[J]. Clin Microbiol Infect,2012,18(Suppl 4):47-49.
[21] Martinez DA, Oliver BG, Gräser Y, et al. Comparative genome analysis of Trichophyton rubrum and related dermatophytes reveals Candidate genes involved in infection[J]. MBio,2012, 3(5):e00259-212.
[22] Burmester A, Shelest E, Glckner G,et al. Comparative and functional genomics provide insights into the pathogenicity of dermatophytic fungi[J]. Genome Biol,2011,12(1):R7.
[23] Heddergott C, Bruns S, Nietzsche S, et al. The Arthroderma benhamiae hydrophobin HypA mediates hydrophobicity and influences recognition by human immune effector cells[J]. Eukaryot Cell, 2012,11(5):673-682.
[24] Camps SM, Dutilh BE, Arendrup MC,et al. Discovery of a hapE mutation that causes azole resistance in Aspergillus fumigatus through whole genome sequencing and sexual crossing[J]. PLoS One,2012,7(11):e50034.
[25] Singh-Babak SD, Babak T, Diezmann S,et al. Global analysis of the evolution and mechanism of echinocandin resistance in Candida glabrata[J]. PLoS Pathog,2012,8(5): e1002718. |