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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Toward a Physical Map of Drosophila buzzatii: Use of Randomly Amplified Polymorphic DNA Polymorphisms and Sequence-Tagged Site Landmarks
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Toward a Physical Map of Drosophila buzzatii: Use of Randomly Amplified Polymorphic DNA Polymorphisms and Sequence-Tagged Site Landmarks

机译:走向果蝇的物理图:使用随机扩增的多态性DNA多态性和序列标记的站点地标。

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We present a physical map based on RAPD polymorphic fragments and sequence-tagged sites (STSs) for the repleta group species Drosophila buzzatii. One hundred forty-four RAPD markers have been used as probes for in situ hybridization to the polytene chromosomes, and positive results allowing the precise localization of 108 RAPDs were obtained. Of these, 73 behave as effectively unique markers for physical map construction, and in 9 additional cases the probes gave two hybridization signals, each on a different chromosome. Most markers (68%) are located on chromosomes 2 and 4 , which partially agree with previous estimates on the distribution of genetic variation over chromosomes. One RAPD maps close to the proximal breakpoint of inversion 2z 3 but is not included within the inverted fragment. However, it was possible to conclude from this RAPD that the distal breakpoint of 2z 3 had previously been wrongly assigned. A total of 39 cytologically mapped RAPDs were converted to STSs and yielded an aggregate sequence of 28,431 bp. Thirty-six RAPDs (25%) did not produce any detectable hybridization signal, and we obtained the DNA sequence from three of them. Further prospects toward obtaining a more developed genetic map than the one currently available for D. buzzatii are discussed.
机译:我们提出了基于RAPD多态性片段和序列标记位点(STSs)的补充组物种果蝇果蝇的物理图谱。一百四十四个RAPD标记已被用作与多态染色体原位杂交的探针,并获得了可精确定位108个RAPD的阳性结果。其中有73种行为是构建物理图谱的有效独特标记,在另外9种情况下,探针给出了两个杂交信号,每个信号位于不同的染色体上。大多数标记(68%)位于2号和4号染色体上,部分与先前对染色体上遗传变异分布的估计相符。一个RAPD图谱接近反演2z 3的近端断点,但不包括在反演片段中。但是,可以从该RAPD得出结论,以前错误地分配了2z 3的远端断点。总共39个细胞学定位的RAPD被转换为STS,并产生28,431 bp的总序列。 36个RAPD(25%)未产生任何可检测到的杂交信号,我们从其中三个中获得了DNA序列。讨论了获得一种比目前的嗡嗡D虫更广泛的遗传图谱的进一步前景。

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