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Biological Parameters and the Segregation Distortion (SD) Phenomenon in DROSOPHILA MELANOGASTER

机译:果蝇的生物学参数和离析畸变(SD)现象

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摘要

The relationship between some biological parameters (mortality, longevity, fertility, fecundity and sex ratio) and segregation of second chromosomes in heterozygous and homozygous SD males has been analyzed. The results obtained in SD/SD+ heterozygous males show: (1) their reduced fertility with respect to that of control males, (2) an alteration in the sex ratio in the SD+ progeny only, and (3) inversely related sex-ratio and segregation distortion values. In SDi/SDj combinations: (1) surprisingly, fertility is intermediate between that of SD/SD+ heterozygous males and that of control males, (2) the segregation ratios of the second chromosomes are normal (0.50), and (3) the sex ratio = 0.50 in both classes of SD progeny. The relationship between mortality (and therefore longevity) and fertility of the different genotypes and fecundity per male indicates that the total productivity of heterozygous males is less than that so far claimed. Indeed, their productivity depends not only on the mechanism of nonformation of the SD+ sperm, but also on their reduced longevity. The k = 0.50 and the high fecundity of SDi/SDj combinations indicate that in these males the SD phenomenon is partially suppressed, the SD chromosomes being insensitive to each other, thus implying that particular Rsp alleles are sensitive to given Sd alleles. The complementation pattern for male fertility of SD homozygous males again supports previous evidence that Sd factors from natural populations are, in effect, different Sd genes.
机译:分析了杂合和纯合SD雄性的一些生物学参数(死亡率,寿命,生育力,生殖力和性别比)与第二条染色体的分离之间的关系。在SD / SD + 杂合子雄性中获得的结果表明:(1)相对于对照雄性而言,其生育力降低;(2)SD + < / sup>仅用于子代,以及(3)性别比和偏析畸变值呈负相关。在SDi / SDj组合中:(1)令人惊讶的是,育性介于SD / SD + 杂合雄性和对照雄性之间,(2)第二条染色体的分离比是正常的(0.50 ),以及(3)两类SD后代的性别比= 0.50。不同基因型的死亡率(以及寿命)和生育能力以及每位男性的生殖力之间的关系表明,杂合型男性的总生产力低于迄今声称的水平。确实,它们的生产力不仅取决于SD + 精子形成的机制,还取决于寿命的缩短。 k = 0.50和SDi / SDj组合的高繁殖力表明,在这些雄性中,SD现象被部分抑制,SD染色体彼此不敏感,因此暗示特定的Rsp等位基因对给定的Sd等位基因敏感。 SD纯合子雄性育性的互补模式再次支持了以前的证据,即自然种群中的Sd因子实际上是不同的Sd基因。

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