首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >NON-MENDELIAN FEMALE STERILITY IN DROSOPHILA MELANOGASTER: PRINCIPAL CHARACTERISTICS OF CHROMOSOMES FROM INDUCER AND REACTIVE ORIGIN AFTER CHROMOSOMAL CONTAMINATION
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NON-MENDELIAN FEMALE STERILITY IN DROSOPHILA MELANOGASTER: PRINCIPAL CHARACTERISTICS OF CHROMOSOMES FROM INDUCER AND REACTIVE ORIGIN AFTER CHROMOSOMAL CONTAMINATION

机译:果蝇的非孟德尔雌性不育:染色体污染后,来自诱导物和反应起源的染色体的主要特征

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摘要

Strains of Drosophila melanogaster can be divided into two main classes, inducer and reactive, in relation to non-Mendelian female sterility. The genetic element responsible for the inducer condition ( I factor ) is chromosomal and may be linked to any inducer-strain chromosome. Each chromosome carrying the I factor ( i + chromosome) can produce females showing more-or-less reduced fertility when it is introduced by paternal gametes into a reactive oocyte. As long as i+ chromosomes are transmitted through heterozygous males with reactive originating chromosomes ( r chromosomes), I factor strictly follows Mendelian segregation. In contrast, in heterozygous i+/r females, a varying proportion of r chromosomes may acquire I factor independently of classical genetic recombination, by a process called chromosomal contamination. This paper reports investigation of the characteristics of the three kinds of chromosomes produced by females in which contamination occurs. It appears that the contaminated reactive chromosomes have irreversibly acquired I factor and behave like i + chromosomes, while the i + chromosomes used as contaminating elements and the reactive originating chromosomes that have not been contaminated have not undergone any change.
机译:与非孟德尔女性不育有关,果蝇菌株可分为两大类,诱导剂和反应性。负责诱导条件(I因子)的遗传元件是染色体,可以与任何诱导株染色体相连。每条带有I因子的染色体(i +染色体)都可以通过雌性配子被引入反应性卵母细胞中,从而使雌性的繁殖力或多或少地降低。只要i +染色体通过具有反应性起源染色体(r染色体)的杂合子雄性传播,I因子就严格遵循孟德尔分离。相反,在杂合的i + / r雌性中,通过称为染色体污染的过程,不同比例的r染色体可以独立于经典遗传重组而获得I因子。本文报道了对女性产生污染的三种染色体的特征的研究。看来,受污染的反应性染色体具有不可逆获得的I因子,其行为类似于i +染色体,而用作污染元素的i +染色体和未受污染的反应性起源染色体没有发生任何变化。

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