Weiler K S, Wakimoto B T
Department of Zoology, University of Washington, Seattle, Washington 98195, USA.
Genetics. 1998 Jul;149(3):1451-64. doi: 10.1093/genetics/149.3.1451.
In Drosophila melanogaster, chromosome rearrangements that juxtapose euchromatin and heterochromatin can result in position effect variegation (PEV), the variable expression of heterochromatic and euchromatic genes in the vicinity of the novel breakpoint. We examined PEV of the heterochromatic light (lt) and concertina (cta) genes in order to investigate potential tissue or developmental differences in chromosome structure that might be informative for comparing the mechanisms of PEV of heterochromatic and euchromatic genes. We employed tissue pigmentation and in situ hybridization to RNA to assess expression of lt in individual cells of multiple tissues during development. Variegation of lt was induced in the adult eye, larval salivary glands and larval Malpighian tubules for each of three different chromosome rearrangements. The relative severity of the effect in these tissues was not tissue-specific but rather was characteristic of each rearrangement. Surprisingly, larval imaginal discs did not exhibit variegated lt expression. Instead, a uniform reduction of the lt transcript was observed, which correlated in magnitude with the degree of variegation. The same results were obtained for cta expression. These two distinct effects of rearrangements on heterochromatic gene expression correlated with the developmental stage of the tissue. These results have implications for models of heterochromatin formation and the nuclear organization of chromosomes during development and differentiation.
在黑腹果蝇中,使常染色质和异染色质并列的染色体重排可导致位置效应斑驳(PEV),即在新断点附近异染色质和常染色质基因的可变表达。我们检测了异染色质的浅色(lt)和折衷(cta)基因的PEV,以研究染色体结构中潜在的组织或发育差异,这些差异可能有助于比较异染色质和常染色质基因的PEV机制。我们利用组织色素沉着和RNA原位杂交来评估发育过程中多个组织的单个细胞中lt的表达。对于三种不同的染色体重排,在成年眼睛、幼虫唾液腺和幼虫马氏管中诱导了lt的斑驳化。这些组织中效应的相对严重程度并非组织特异性的,而是每种重排的特征。令人惊讶的是,幼虫成虫盘未表现出lt表达的斑驳化。相反,观察到lt转录本的均匀减少,其幅度与斑驳化程度相关。cta表达也得到了相同的结果。重排对异染色质基因表达的这两种不同效应与组织的发育阶段相关。这些结果对异染色质形成模型以及发育和分化过程中染色体的核组织具有启示意义。