Department of Microbiology and Molecular Genetics, University of Vermont, Burlington, Vermont, United States of America.
PLoS One. 2010 Dec 30;5(12):e14463. doi: 10.1371/journal.pone.0014463.
Toxoplasma gondii pathogenesis includes the invasion of host cells by extracellular parasites, replication of intracellular tachyzoites, and differentiation to a latent bradyzoite stage. We present the analysis of seven novel T. gondii insertional mutants that do not undergo normal differentiation to bradyzoites. Microarray quantification of the variation in genome-wide RNA levels for each parasite line and times after induction allowed us to describe states in the normal differentiation process, to analyze mutant lines in the context of these states, and to identify genes that may have roles in initiating the transition from tachyzoite to bradyzoite. Gene expression patterns in wild-type parasites undergoing differentiation suggest a novel extracellular state within the tachyzoite stage. All mutant lines exhibit aberrant regulation of bradyzoite gene expression and notably some of the mutant lines appear to exhibit high proportions of the intracellular tachyzoite state regardless of whether they are intracellular or extracellular. In addition to the genes identified by the insertional mutagenesis screen, mixture model analysis allowed us to identify a small number of genes, in mutants, for which expression patterns could not be accounted for using the three parasite states--genes that may play a mechanistic role in switching from the tachyzoite to bradyzoite stage.
刚地弓形虫病的发病机制包括宿主细胞的细胞外寄生虫入侵、细胞内速殖子的复制和分化为潜伏的缓殖子阶段。我们介绍了对七个新的刚地弓形虫插入突变体的分析,这些突变体不能正常分化为缓殖子。每个寄生虫系和诱导后的时间的全基因组 RNA 水平变化的微阵列定量允许我们描述正常分化过程中的状态,在这些状态下分析突变系,并鉴定可能在启动从速殖子到缓殖子过渡中起作用的基因。在分化过程中进行的野生型寄生虫的基因表达模式表明速殖子阶段存在一种新的细胞外状态。所有突变系都表现出缓殖子基因表达的异常调节,特别是一些突变系无论在细胞内还是细胞外,似乎都表现出很高比例的细胞内速殖子状态。除了插入诱变筛选鉴定的基因外,混合模型分析还允许我们鉴定一小部分突变体中的基因,其表达模式不能用三种寄生虫状态来解释——这些基因可能在从速殖子到缓殖子阶段的转换中发挥机械作用。