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首页> 外文期刊>Journal of Biosciences >Translocations used to generate chromosome segment duplications in Neurospora can disrupt genes and create novel open reading frames
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Translocations used to generate chromosome segment duplications in Neurospora can disrupt genes and create novel open reading frames

机译:用于在Neurospora中产生染色体片段重复的易位可破坏基因并产生新颖的开放阅读框

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摘要

In Neurospora crassa, crosses between normal sequence strains and strains bearing some translocations can yield progeny bearing a duplication (Dp) of the translocated chromosome segment. Here, 30 breakpoint junction sequences of 12 Dp-generating translocations were determined. The breakpoints disrupted 13 genes (including predicted genes), and created 10 novel open reading frames. Insertion of sequences from LG III into LG I as translocation T(UK8-18) disrupts the eat-3 gene, which is the ortholog of the Podospora anserine gene ami1. Since ami1-homozygous Podospora crosses were reported to increase the frequency of repeat-induced point mutation (RIP), we performed crosses homozygous for a deficiency in eat-3 to test for a corresponding increase in RIP frequency. However, our results suggested that, unlike in Podospora, the eat-3 gene might be essential for ascus development in Neurospora. Duplication-heterozygous crosses are generally barren in Neurospora; however, by using molecular probes developed in this study, we could identify Dp segregants from two different translocation-heterozygous crosses, and using these we found that the barren phenotype of at least some duplication-heterozygous crosses was incompletely penetrant.
机译:在神经孢霉中,正常序列菌株与带有某些易位的菌株之间的杂交可产生后代,其后代具有易位染色体区段的重复(Dp)。在这里,确定了12个Dp易位的30个断点连接序列。断点破坏了13个基因(包括预测的基因),并创建了10个新颖的开放阅读框。将LG III的序列作​​为易位T(UK8-18)插入LG I破坏了eat-3基因,该基因是Podospora anserine基因ami1的直系同源物。由于据报道ami1纯合的Podospora杂交增加了重复诱导的点突变(RIP)的频率,因此我们对eat-3缺乏症进行了纯合的杂交以测试RIP频率的相应增加。但是,我们的结果表明,与Podospora中不同,eat-3基因可能对Neurospora中的ascus发育至关重要。在Neurospora中,重复-杂合杂交通常是贫瘠的。但是,通过使用本研究开发的分子探针,我们可以从两个不同的易位-杂合杂交中鉴定出Dp分离物,并使用它们发现至少某些重复-杂合杂交的贫瘠表型是不完全渗透的。

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