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基因组范围内鉴定 DNA 双链断裂修复基因,并研究苯并[a]芘对单巢轮虫属 Brachionus spp. 的转录调控

Genome-wide identification of DNA double-strand break repair genes and transcriptional modulation in response to benzo[α]pyrene in the monogonont rotifer Brachionus spp.

机构信息

Department of Biological Sciences, College of Science, Sungkyunkwan University, Suwon 16419, South Korea.

Division of Polar Life Sciences, Korea Polar Research Institute, Incheon 21990, South Korea.

出版信息

Aquat Toxicol. 2020 Oct;227:105614. doi: 10.1016/j.aquatox.2020.105614. Epub 2020 Aug 28.

Abstract

The DNA repair system has evolved from the common ancestor of all life forms and its function is highly conserved within eukaryotes. In this study, to reveal the role of DNA double-strand break repair (DSB) genes in response to benzo[α]pyrene (B[α]P), we first identified DSB genes in relation to homologous recombination and non-homologous end joining events in four Brachionus rotifer spp.: B. calyciflorus, B. koreanus, B. plicatilis, and B. rotundiformis. In all the Brachionus spp., 39 orthologous genes to human DSB repair genes were identified. Furthermore, three genes in B. koreanus, two genes in B. plicatilis, and one gene in B. calyciflorus and B. rotundiformis were present as duplicated genes, indicating that these genes were diversified over speciation in the genus Brachionus. Moreover, we compared DSB repair genes on the gene structures in four monogonont Brachionus rotifers and the bdelloid rotifer Adineta vaga, which possesses highly efficient DNA repair ability. The transcriptional responses of four monogonont Brachionus rotifers in response to B[α]P exposure showed how B[α]P exposure led to DSBs and subsequently recruited DNA DSB repair pathways in the rotifer B. koreanus. Taken together, this study provides a better understanding of the potential role of DSB repair genes in the monogonont rotifer Brachionus spp. in response to B[α]P.

摘要

DNA 修复系统是从所有生命形式的共同祖先进化而来的,其功能在真核生物中高度保守。在这项研究中,为了揭示 DNA 双链断裂修复(DSB)基因在应对苯并[a]芘(B[α]P)时的作用,我们首先鉴定了与同源重组和非同源末端连接事件相关的 DSB 基因,涉及四种臂尾轮虫物种:B. calyciflorus、B. koreanus、B. plicatilis 和 B. rotundiformis。在所有臂尾轮虫中,鉴定到 39 个与人 DSB 修复基因同源的基因。此外,B. koreanus 中有 3 个基因,B. plicatilis 中有 2 个基因,B. calyciflorus 和 B. rotundiformis 中有 1 个基因是重复基因,这表明这些基因在臂尾轮虫属的物种形成过程中发生了多样化。此外,我们比较了四个单巢轮虫臂尾轮虫和具有高效 DNA 修复能力的蛭形轮虫 Adineta vaga 上的 DSB 修复基因的基因结构。四种单巢轮虫臂尾轮虫在 B[α]P 暴露下的转录反应显示了 B[α]P 暴露如何导致 DSB,并随后在轮虫 B. koreanus 中招募 DNA DSB 修复途径。综上所述,这项研究提供了对 DSB 修复基因在应对 B[α]P 时在单巢轮虫臂尾轮虫中的潜在作用的更好理解。

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