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The P-M and the 23.5 Mrf (Hobo) Systems of Hybrid Dysgenesis in Drosophila Melanogaster Are Independent of Each Other

机译:果蝇的混合发育不全的P-M和23.5 Mrf(Hobo)系统彼此独立。

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摘要

Strains of Drosophila melanogaster bearing the male recombination factor 23.5 MRF induce hybrid dysgenesis in a way which is highly reminiscent of the P-M system, and, most probably, causally related to the activity of the transposable element hobo. We have investigated potential interactions between the two systems of hybrid dysgenesis by studying mixed lines derived from bidirectional crosses between 23.5 MRF and P strains, and analyzed their potentials to induce or suppress the occurrence of dysgenesis. All new lines possess the P induction abilities, as determined by two different procedures, and have also acquired a P cytotype. In contrast, some of them lost their ability to induce the non-P-M dysgenesis, as well as to suppress the action of 23.5 MRF. This loss of the 23.5 MRF induction abilities parallels the selective loss of full-length hobo elements from the genome of these lines, providing further substantiation to the notion that the 23.5 MRF activity is directly linked to this transposable element.
机译:带有雄性重组因子23.5 MRF的果蝇果蝇菌株以高度让人联想到P-M系统的方式诱导杂种发生不当,最有可能与转座因子hobo的活性有因果关系。我们通过研究从23.5 MRF和P菌株之间的双向杂交获得的混合系,研究了两个杂交发育不良系统之间的潜在相互作用,并分析了它们诱导或抑制发生发育不良的可能性。所有新品系均具有通过两种不同方法测定的P诱导能力,并且还获得了P细胞型。相反,它们中的一些失去了诱导非P-M发育不全以及抑制23.5 MRF作用的能力。 23.5 MRF诱导能力的这种丧失与这些系的基因组中全长流浪汉元件的选择性丧失相平行,进一步证实了23.5 MRF活性直接与此转座因子相关的观念。

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