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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Molecular and cytogenetic analysis of the heterochromatin-euchromatin junction region of the Drosophila melanogaster X chromosome using cloned DNA sequences.
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Molecular and cytogenetic analysis of the heterochromatin-euchromatin junction region of the Drosophila melanogaster X chromosome using cloned DNA sequences.

机译:使用克隆的DNA序列对果蝇X染色体的异染色质-常染色质连接区进行分子和细胞遗传学分析。

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We have used three cloned DNA sequences consisting of (1) part of the suppressor of forked transcription unit, (2) a cloned 359-bp satellite, and (3), a type I ribosomal insertion, to examine the structure of the base of the X chromosome of Drosophila melanogaster where different chromatin types are found in juxtaposition. A DNA probe from the suppressor of forked locus hybridizes exclusively to the very proximal polytenized part of division 20, which forms part of the beta-heterochromatin of the chromocenter. The cloned 359-bp satellite sequence, which derives from the proximal mitotic heterochromatin between the centromere and the ribosomal genes, hybridizes to the under replicated alpha-heterochromatin of the chromocenter. The type I insertion sequence, which has major locations in the ribosomal genes and in the distal mitotic heterochromatin of the X chromosome, hybridizes as expected to the nucleolus but does not hybridize to the beta-heterochromatic division 20 of the polytene X chromosome. Our molecular data reveal that the suppressor of forked locus, which on cytogenetic grounds is the most proximal ordinary gene on the X chromosome, is very close to the junction of the polytenized and non-polytenized region of the X chromosome. The data have implications for the structure of beta-heterochromatin-alpha-heterochromatin junction zones in both mitotic and polytene chromosomes, and are discussed with reference to models of chromosome structure.
机译:我们使用了三个克隆的DNA序列,以检查(1)分叉转录单位抑制子的一部分,(2)一个克隆的359 bp卫星,和(3)I型核糖体插入,以检查其碱基结构果蝇的X染色体并列放置不同的染色质类型。来自叉状基因座抑制剂的DNA探针仅与第20区的近端多聚部分杂交,后者形成了色中心的β-异染色质的一部分。克隆的359 bp卫星序列源自着丝粒和核糖体基因之间的近端有丝分裂异染色质,与色中心复制不足的α-异染色质杂交。 I型插入序列在核糖体基因和X染色体的远端有丝分裂异染色质中具有主要位置,可按预期与核仁杂交,但不与多聚X染色体的β-异色分裂20杂交。我们的分子数据表明,分叉基因座的抑制剂在细胞遗传学上是X染色体上最接近的普通基因,它非常靠近X染色体的多态性区域和非多态性区域的交界处。该数据对有丝分裂和多聚染色体中的β-异染色质-α-异染色质连接区的结构都有影响,并参考染色体结构模型进行讨论。

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