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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genomic instability in rat: breakpoints induced by ionising radiation and interstitial telomeric-like sequences.
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Genomic instability in rat: breakpoints induced by ionising radiation and interstitial telomeric-like sequences.

机译:大鼠基因组不稳定性:电离辐射和间质端粒样序列引起的断点。

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摘要

The Norwegian rat (Rattus norvegicus) is the most widely studied experimental species in biomedical research although little is known about its chromosomal structure. The characterisation of possible unstable regions of the karyotype of this species would contribute to the better understanding of its genomic architecture. The cytogenetic effects of ionising radiation have been widely used for the study of genomic instability, and the importance of interstitial telomeric-like sequences (ITSs) in instability of the genome has also been reported in previous studies in vertebrates. In order to describe the unstable chromosomal regions of R. norvegicus, the distribution of breakpoints induced by X-irradiation and ITSs in its karyotype were analysed in this work. For the X-irradiation analysis, 52 foetuses (from 14 irradiated rats) were studied, 4803 metaphases were analysed, and a total of 456 breakpoints induced by X-rays were detected, located in 114 chromosomal bands, with 25 of them significantly affected by X-irradiation (hot spots). For the analysis of ITSs, three foetuses (from three rats) were studied, 305 metaphases were analysed and 121 ITSs were detected, widely distributed in the karyotype of this species. Seventy-six percent of all hot spots analysed in this study were co-localised with ITSs.
机译:挪威大鼠(Rattus norvegicus)是生物医学研究中研究最广泛的实验物种,尽管对其染色体结构知之甚少。该物种的核型可能不稳定区域的表征将有助于更好地了解其基因组结构。电离辐射的细胞遗传学效应已广泛用于基因组不稳定性的研究,并且在脊椎动物的先前研究中也已经报道了间质端粒样序列(ITSs)在基因组不稳定性中的重要性。为了描述诺维氏梭菌的不稳定染色体区域,本工作分析了X射线和ITS诱导的断点在其核型中的分布。对于X射线分析,研究了52只胎儿(来自14只受辐照的大鼠),分析了4803个中期,检测到456个X射线断裂点,位于114个染色体带中,其中25个受到X射线的显着影响。 X射线(热点)。为了分析ITS,研究了三只胎儿(来自三只大鼠),分析了305个中期,检测到121个ITS,广泛分布于该物种的核型中。本研究中分析的所有热点中有76%与ITS共同定位。

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