Heath E M, Simmons M J
Department of Genetics and Cell Biology, University of Minnesota, St Paul 55108-1095.
Genet Res. 1991 Jun;57(3):213-26. doi: 10.1017/s0016672300029360.
Twelve inbred lines derived from an M' strain of Drosophila melanogaster were used to study the repression of P-element-mediated hybrid dysgenesis. Initial assessments indicated that the lines differed in the ability to repress gonadal dysgenesis, and that this ability was highly correlated with the ability to repress snw hypermutability. Later assessments indicated that most of the lines with low or intermediate repression potential evolved to a state of higher repression potential; however, Southern analyses failed to reveal significant changes in the array of genomic P elements that could account for this evolution. In addition, none of the lines possessed the incomplete P element known as KP, which has been proposed to explain repression in some D. melanogaster strains. One of the lines maintained intermediate repression potential throughout the period of study (52 generations), indicating that the intermediate condition was not intrinsically unstable. Genetic analyses demonstrated that in some of the lines, repression potential was influenced by factors that were inherited maternally through at least two generations; however, these factors were not as influential as those in a classic P cytotype strain. Additional tests with a dysgenesis-inducing X chromosome called T-5 indicated that repression itself was mediated by a combination of maternal effects and paternally inherited factors that were expressed after fertilization. These tests also suggested that in some circumstances, the P transposase, or its message, might be transmitted through the maternal cytoplasm.
从黑腹果蝇的一个M'品系衍生出的12个近交系被用于研究P因子介导的杂种不育的抑制作用。初步评估表明,这些品系在抑制性腺不育的能力上存在差异,并且这种能力与抑制snw高突变率的能力高度相关。后来的评估表明,大多数具有低或中等抑制潜力的品系进化到了更高抑制潜力的状态;然而,Southern分析未能揭示基因组P因子阵列中的显著变化,而这些变化本可解释这种进化。此外,没有一个品系拥有被称为KP的不完全P因子,而KP被认为可解释某些黑腹果蝇品系中的抑制现象。其中一个品系在整个研究期间(52代)都保持着中等抑制潜力,这表明中等状态并非本质上不稳定。遗传分析表明,在某些品系中,抑制潜力受到至少两代母系遗传因素的影响;然而,这些因素的影响力不如经典P细胞型品系中的因素。用一个名为T - 5的不育诱导X染色体进行的额外测试表明,抑制本身是由母系效应和受精后表达的父系遗传因素共同介导的。这些测试还表明,在某些情况下,P转座酶或其信使可能通过母系细胞质传递。