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对黑腹果蝇中紧邻朱红色基因座的染色体区域进行细胞遗传学分析。

Cytogenetic analysis of the chromosomal region immediately adjacent to the rosy locus in Drosophila melanogaster.

作者信息

Hilliker A J, Clark S H, Chovnick A, Gelbart W M

出版信息

Genetics. 1980 May;95(1):95-110. doi: 10.1093/genetics/95.1.95.

Abstract

This report describes the genetic analysis of a region of the third chromosome of Drosophila melanogaster extending from 87D2-4 to 87E12-F1, an interval of 23 or 24 polytene chromosome bands. This region includes the rosy (ry, 3-52.0) locus, carrying the structural information for xanthine dehydrogenase (XDH). We have, in recent years, focused attention on the genetic regulation of the rosy locus and, therefore, wished to ascertain in detail the immediate genetic environment of this locus. Specifically, we question if rosy is a solitary genetic unit or part of a large complex genetic unit encompassing adjacent genes. Our data also provide opportunity to examine further the relationship between euchromatic gene distribution and polytene chromosome structure.----The results of our genetic dissection of the rosy micro-region substantiate the conclusion drawn earlier (SCHALET, KERNAGHAN and CHOVNICK 1964) that the rosy locus is the only gene in this region concerned with XDH activity and that all adjacent genetic units are functionally, as well as spatially, distinct from the rosy gene. Within the rosy micro-region, we observed a close correspondence between the number of complementation groups (21) and the number of polytene chromosome bands (23 or 24). Consideration of this latter observation in conjunction with those of similar studies of other chhromosomal regions supports the hypothesis that each polytene chromosome band corresponds to a single genetic unit.

摘要

本报告描述了对黑腹果蝇第三染色体上一个区域的遗传分析,该区域从87D2 - 4延伸至87E12 - F1,为23或24条多线染色体带的区间。该区域包括朱红(ry,3 - 52.0)位点,携带着黄嘌呤脱氢酶(XDH)的结构信息。近年来,我们一直关注朱红位点的遗传调控,因此希望详细确定该位点的直接遗传环境。具体而言,我们质疑朱红是否为一个孤立的遗传单位,或者是否是包含相邻基因的大型复合遗传单位的一部分。我们的数据还提供了进一步研究常染色质基因分布与多线染色体结构之间关系的机会。——我们对朱红微区域进行遗传剖析的结果证实了先前(沙莱特、克纳汉和乔夫尼克,1964年)得出的结论,即朱红位点是该区域唯一与XDH活性相关的基因,并且所有相邻的遗传单位在功能上以及空间上都与朱红基因不同。在朱红微区域内,我们观察到互补群的数量(21个)与多线染色体带的数量(23或24条)之间存在密切对应关系。结合对其他染色体区域的类似研究结果来考虑这一观察结果,支持了每个多线染色体带对应一个单一遗传单位的假说。

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