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首页> 外文期刊>Eukaryotic cell >Analysis of the Functions of Recombination-Related Genes in the Generation of Large Chromosomal Deletions by Loop-Out Recombination in Aspergillus oryzae
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Analysis of the Functions of Recombination-Related Genes in the Generation of Large Chromosomal Deletions by Loop-Out Recombination in Aspergillus oryzae

机译:重组相关基因在米曲霉中通过环外重组产生大染色体缺失中的功能分析

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摘要

Loop-out-type recombination is a type of intrachromosomal recombination followed by the excision of a chromosomal region. The detailed mechanism underlying this recombination and the genes involved in loop-out recombination remain unknown. In the present study, we investigated the functions of ku70, ligD, rad52, rad54, and rdh54 in the construction of large chromosomal deletions via loop-out recombination and the effect of the position of the targeted chromosomal region on the efficiency of loop-out recombination in Aspergillus oryzae. The efficiency of generation of large chromosomal deletions in the near-telomeric region of chromosome 3, including the aflatoxin gene cluster, was compared with that in the near-centromeric region of chromosome 8, including the tannase gene. In the Δku70 and Δku70-rdh54 strains, only precise loop-out recombination occurred in the near-telomeric region. In contrast, in the ΔligD, Δku70-rad52, and Δku70-rad54 strains, unintended chromosomal deletions by illegitimate loop-out recombination occurred in the near-telomeric region. In addition, large chromosomal deletions via loop-out recombination were efficiently achieved in the near-telomeric region, but barely achieved in the near-centromeric region, in the Δku70 strain. Induction of DNA double-strand breaks by I-SceI endonuclease facilitated large chromosomal deletions in the near-centromeric region. These results indicate that ligD, rad52, and rad54 play a role in the generation of large chromosomal deletions via precise loop-out-type recombination in the near-telomeric region and that loop-out recombination between distant sites is restricted in the near-centromeric region by chromosomal structure.
机译:环出型重组是染色体内重组的一种,其后是染色体区域的切除。重组的详细机制和环外重组所涉及的基因仍然未知。在本研究中,我们研究了 ku70 ligD rad52 rad54 rdh54 在通过环外重组构建大的染色体缺失中以及目标染色体区域的位置对米曲霉中环外重组效率的影响。比较了在3号染色体的近端粒区域(包括黄曲霉毒素基因簇)中与在8号染色体的近端粒区域(包括鞣酸酶基因)产生大染色体缺失的效率。在Δ ku70 和Δ ku70-rdh54 菌株中,仅精确的环出重组发生在近端粒区域。相反,在Δ ligD ,Δ ku70-rad52 和Δ ku70-rad54 菌株中,非法环外重组会导致意想不到的染色体缺失发生在近端粒区域。另外,在Δ ku70 菌株中,在端粒附近区域有效地实现了通过环外重组的大染色体缺失,而在近着丝粒区域中几乎没有实现。 I-SceI核酸内切酶诱导DNA双链断裂促进了近着丝粒区域中的大染色体缺失。这些结果表明, ligD rad52 rad54 在通过精确的环出型重组重组产生大的染色体缺失中发挥作用。近端粒区域和远位点之间的环外重组在近端粒区域受染色体结构的限制。

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