首页> 外文期刊>Cytogenetic and genome research >Distribution of telomeric DNA sequences on the X-radiation-induced chromosome fragments observed in the genome of androgenetic brook trout (Salvelinus fontinalis, Mitchill 1814).
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Distribution of telomeric DNA sequences on the X-radiation-induced chromosome fragments observed in the genome of androgenetic brook trout (Salvelinus fontinalis, Mitchill 1814).

机译:在雄激素鳟鱼的基因组中观察到的X射线诱导的染色体片段上端粒DNA序列的分布(Salvelinus fontinalis,Mitchill 1814)。

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摘要

Cytogenetic screening of the androgenetic brook trout (Salvelinus fontinalis, Mitchill 1814) offspring hatched from eggs exposed to 420 Gy of X-radiation before insemination exhibited residues of the irradiated maternal nuclear genome in the form of small chromosome fragments. Remnants of the irradiated chromosomes had different sizes, and their number varied intraindividually from 1 to 15. To efficiently pass through the series of the cell divisions, such chromosome fragments must have had functional kinetochores. Distribution patterns of the telomeric hybridization signals on the chromosome fragments enabled us to distinguish their 3 groups: (i) telomere-less ring chromosomes with fused broken chromosome arms, (ii) rings formed in the course of fusion of the radiation-broken chromosome arm with the opposite telomeric region and exhibiting interstitial telomeric signals at the fusion point, and (iii) chromosome fragments with fused unprotected sister chromatids of 1 broken arm and intact telomeres from the other arm. Disturbances during segregation of such fragments, mainly breakages during anaphase, may partially explain intraindividual variation in the number and size of the chromosome fragments observed in the androgenetic brook trout.
机译:从授精前暴露于420 Gy的X射线辐射的卵中孵出的雄性河鳟(Salvelinus fontinalis,Mitchill 1814)后代的细胞遗传学筛选显示出受辐照的母体核基因组的残基呈小染色体片段形式。辐照后的染色体残基大小不同,其数目从1到15在每个区间内变化。为了有效地通过一系列细胞分裂,此类染色体片段必须具有功能性动臂。端粒杂交信号在染色体片段上的分布模式使我们能够区分它们的三组:(i)具有融合的断裂染色体臂的无端粒无环染色体,(ii)在辐射断裂的染色体臂融合过程中形成的环具有相反的端粒区域并在融合点处显示间质端粒信号,以及(iii)染色体片段,其中融合了1条断臂的未保护姐妹染色单体和另一条臂的完整端粒。此类片段分离期间的干扰(主要是后期分裂)可能部分解释了雄激素鳟鱼中观察到的染色体片段的数量和大小的个体差异。

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