首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >HYBRID DYSGENESIS IN DROSOPHILA MELANOGASTER: STERILITY RESULTING FROM GONADAL DYSGENESIS IN THE P-M SYSTEM
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HYBRID DYSGENESIS IN DROSOPHILA MELANOGASTER: STERILITY RESULTING FROM GONADAL DYSGENESIS IN THE P-M SYSTEM

机译:果蝇的杂种发育不全:P-M系统中性腺发育不良导致的不育

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Crosses between two types of strains, called P and M , characteristically give high frequencies of F1 sterility and other aberrant traits. Previous studies indicated that, in addition to the direction of the parental cross, many factors influence the manifestation of this phenomenon known as "hybrid dysgenesis."—The present study is concerned with the characteristics of GD (gonadal dysgenesis) sterility associated with the P-M system and its temperature dependence. Female sterility is accompanied by a complete absence of egg-laying, and this is not attributable to an inability to mate. Thus, it seems likely that sterility results from a defect in gametogenesis of hybrid individuals. This conclusion is supported by the morphological and cytological observations presented in an accompanying paper (SCHAEFER, KIDWELL and FAUSTO-STERLING 1979).—A narrow, critical, developmental temperature range was found in which both female and male sterility rose sharply from a low level to a high maximum. The critical range was 27 to 29° for males, slightly higher than the range of 24 to 26° for females. Two other dysgenic traits, male recombination and transmission ratio distortion, were affected by developmental temperature, but temperature response curves were quite different from those for sterility. The temperature-sensitiye stage for female sterility occurs during embryonic and early larval development.——GD sterility is compared and contrasted with SF sterility, another specific type of nonMendelian sterility resulting from a different interstrain dysgenic interaction.
机译:两种类型的菌株P和M之间的杂交通常会导致F1不育和其他异常性状的发生频率很高。先前的研究表明,除了亲本杂交的方向外,还有许多因素影响这种现象的表现,称为“杂交发育不全” 。—本研究关注与PM相关的GD(性腺发育不全)的不育特征。系统及其温度依赖性。女性不育伴随着完全不产卵,这不归因于无法交配。因此,似乎不育可能是由杂种个体的配子发生缺陷造成的。该结论得到了随附论文(SCHAEFER,KIDWELL和FAUSTO-STERLING 1979)中提供的形态学和细胞学观察的支持。——发现狭窄的,临界的,发育的温度范围,其中男性和女性的不育从低水平急剧上升。最高。男性的临界范围为27至29°,略高于女性的24至26°范围。发育温度还影响了另外两个胚性性状,即雄性重组和传播比畸变,但温度响应曲线与不育性有很大不同。女性不育的温度敏感性阶段发生在胚胎和幼虫的早期发育中。-将GD不育与SF不育进行比较,并将其与SF不育进行对比,SF不育是另一种特定的非门氏不育类型,它是由不同的菌株间生源性相互作用引起的。

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