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[果蝇不稳定品系中的转座爆发和染色体重排]

[Transpositional bursts and chromosome rearrangements in unstable lines of Drosophila].

作者信息

Gerasimova T I, Ladvishchenko A B, Mogila V A, Georgieva S G, Kiselev S L, Maksymiv D V

出版信息

Genetika. 1990 Mar;26(3):399-411.

PMID:1972365
Abstract

The phenomenon of transpositional bursts-massive simultaneous transpositions of mobile elements belonging to different structural classes and accompanied by multiple mutagenesis were earlier described. Although the mechanisms of this phenomenon are still unclear, it is obvious now that it embraces total genome and includes not only transpositions of different mobile elements but also recombination processes--homologous recombination for LTR's and gene conversion. It is shown in this work that transpositional bursts may be accompanied by appearance of grass chromosomal rearrangements. The chain of closely related mutations which is characterized, as well as pedigrees described earlier, by coordinated mutational transitions and multiple transpositions of mdg1, mdg2 and retrotransposon jokey was analyzed. Spontaneous appearance of mutations in the loci yellow, white (deficiency for 462 kb) and cut (insertion of mdg4, together with jokey) correlates with appearance of inversion In(I), 14A-20B, and the reversions of these mutations to the wild type (y+w+ct+) or to other alleles (ctMR2--insertion of mdg4 without jokey) are accompanied by reversions of inversion. The relationship of all lines analyzed in this work as well as the lines from other pedigrees was proved using analysis of polymorphic restriction sites at the scute and cut loci (5 probes were used). All "y w ctpN"--type mutants are shown to have insertion of about 7 kb at the scute locus which causes no alteration of phenotype. This once again proves multiple and coordinated character of changes taking place during hybrid dysgenesis.

摘要

转座爆发现象——属于不同结构类别的移动元件大量同时转座并伴随着多重诱变——此前已有描述。尽管这一现象的机制仍不清楚,但现在很明显,它涉及整个基因组,不仅包括不同移动元件的转座,还包括重组过程——LTR的同源重组和基因转换。这项工作表明,转座爆发可能伴随着染色体大片段重排的出现。分析了由mdg1、mdg2和逆转座子jokey的协同突变转变和多次转座所表征的紧密相关突变链,以及先前描述的谱系。在黄色、白色(462 kb缺失)和切割(mdg4与jokey一起插入)位点自发出现的突变与In(I),14A - 20B倒位的出现相关,这些突变回复到野生型(y+w+ct+)或其他等位基因(ctMR2——mdg4无jokey插入)伴随着倒位的回复。通过对盾片和切割位点的多态性限制位点分析(使用了5个探针),证实了本研究中分析的所有品系与其他谱系品系之间的关系。所有“y w ctpN”型突变体在盾片位点都有大约7 kb的插入,这不会导致表型改变。这再次证明了杂种不育过程中发生的变化具有多重性和协调性。

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