Ferrari I, Lorenzi H, Santos M R, Brandariz S, Requena J M, Schijman A, Vázquez M, da Silveira J F, Ben-Dov C, Medrano C, Ghío S, López Bergami P, Cano I, Zingales B, Urmenyi T P, Rondinelli E, González A, Cortes A, Lopez M C, Thomas M C, Alonso C, Ramírez J L, Chiurrillo M A, Aldao R R, Levin M J
Instituto de Investigaciones en Ingeniería Genética y Biología Molecular (INGEBI, CONICET, FCYEN-UBA), Buenos Aires, Argentina.
Mem Inst Oswaldo Cruz. 1997 Nov-Dec;92(6):843-52. doi: 10.1590/s0074-02761997000600021.
Strategies to construct the physical map of the Trypanosoma cruzi nuclear genome have to capitalize on three main advantages of the parasite genome, namely (a) its small size, (b) the fact that all chromosomes can be defined, and many of them can be isolated by pulse field gel electrophoresis, and (c) the fact that simple Southern blots of electrophoretic karyotypes can be used to map sequence tagged sites and expressed sequence tags to chromosomal bands. A major drawback to cope with is the complexity of T. cruzi genetics, that hinders the construction of a comprehensive genetic map. As a first step towards physical mapping, we report the construction and partial characterization of a T. cruzi CL-Brener genomic library in yeast artificial chromosomes (YACs) that consists of 2,770 individual YACs with a mean insert size of 365 kb encompassing around 10 genomic equivalents. Two libraries in bacterial artificial chromosomes (BACs) have been constructed, BACI and BACII. Both libraries represent about three genome equivalents. A third BAC library (BAC III) is being constructed. YACs and BACs are invaluable tools for physical mapping. More generally, they have to be considered as a common resource for research in Chagas disease.
构建克氏锥虫核基因组物理图谱的策略必须利用该寄生虫基因组的三个主要优势,即:(a)基因组规模小;(b)所有染色体均可明确界定,且其中许多染色体可通过脉冲场凝胶电泳分离;(c)电泳核型的简单Southern杂交可用于将序列标签位点和表达序列标签定位到染色体条带。需要应对的一个主要障碍是克氏锥虫遗传学的复杂性,这阻碍了全面遗传图谱的构建。作为物理图谱构建的第一步,我们报告了一个克氏锥虫CL-Brener酵母人工染色体(YAC)基因组文库的构建及部分特征分析,该文库由2770个独立的YAC组成,平均插入片段大小为365 kb,覆盖约10个基因组当量。已构建了两个细菌人工染色体(BAC)文库,即BAC I和BAC II。这两个文库均代表约三个基因组当量。第三个BAC文库(BAC III)正在构建中。YAC和BAC是物理图谱构建的宝贵工具。更普遍地说,它们必须被视为恰加斯病研究的共同资源。