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鸡参考基因组中的内源性禽白血病病毒亚群 E 元件。

Endogenous avian leukosis virus subgroup E elements of the chicken reference genome.

机构信息

Department of Biology, The University of York, York YO10 5DD, UK; The Roslin Institute and Royal (Dick) School of Veterinary Studies, The University of Edinburgh, Midlothian EH25 9RG, UK.

Hy-Line International, Dallas Center, IA 50063, USA.

出版信息

Poult Sci. 2020 Jun;99(6):2911-2915. doi: 10.1016/j.psj.2019.12.074. Epub 2020 Apr 2.

Abstract

The chicken reference genome contains 2 endogenous avian leukosis virus subgroup E (ALVE) insertions, but gaps and unresolved repetitive sequences in previous assemblies have hindered their precise characterization. Detailed analysis of the most recent reference genome (GRCg6a) now shows both ALVEs within contiguous chromosome assemblies for the first time. ALVE6 (ALVE-JFevA) and ALVE-JFevB are both located on chromosome 1, with ALVE6 close to the p-arm telomere. ALVE-JFevB is a structurally intact element containing the ALVE gag, pol, and env genes and is capable of forming replication competent viruses. In contrast, ALVE6 contains a 3,352 bp 5' truncation and lacks the entire 5' long terminal repeat and gag gene. Despite this, ALVE6 remains able to produce intact envelope protein, likely due to a mutation in the recognition site for a known inhibitory miRNA (miR-155). Whole genome resequencing data sets from layers, broilers, and 3 independent sources of wild-caught red junglefowl were surveyed for the presence of each of these reference genome ALVEs. ALVE-JFevB was found in no other chicken or red junglefowl genomes, whereas ALVE6 was identified in some layers, broilers, and native breeds but not within any other red junglefowl genome. Improved assembly contiguity has facilitated better characterization of the 2 ALVEs of the chicken reference genome. However, both the limited ALVE content and unique presence of ALVE-JFevB suggests that the reference individual is unrepresentative of ancestral Gallus gallus ALVE diversity.

摘要

鸡参考基因组包含 2 个内源性禽白血病病毒亚群 E (ALVE) 插入物,但以前的组装中存在的间隙和未解决的重复序列阻碍了它们的精确特征描述。对最近的参考基因组(GRCg6a)的详细分析现在首次在连续染色体组装中显示了这两个 ALVE。ALVE6 (ALVE-JFevA) 和 ALVE-JFevB 都位于 1 号染色体上,ALVE6 靠近 p 臂端粒。ALVE-JFevB 是一个结构完整的元件,包含 ALVE gag、pol 和 env 基因,能够形成具有复制能力的病毒。相比之下,ALVE6 含有 3352 bp 的 5' 截断,并且缺少整个 5' 长末端重复序列和 gag 基因。尽管如此,ALVE6 仍然能够产生完整的包膜蛋白,这可能是由于已知抑制性 miRNA(miR-155)的识别位点发生突变。对来自层鸡、肉鸡和 3 个独立来源的野生红原鸡的全基因组重测序数据集进行了调查,以检测这些参考基因组 ALVE 的存在情况。在其他鸡或红原鸡基因组中未发现 ALVE-JFevB,而在一些层鸡、肉鸡和本地品种中发现了 ALVE6,但在其他任何红原鸡基因组中均未发现。组装连续性的提高促进了鸡参考基因组中这 2 个 ALVE 的更好特征描述。然而,ALVE 的有限含量和 ALVE-JFevB 的独特存在表明,参考个体不能代表祖先鸡的 ALVE 多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee6d/7597685/95dad2f3fd97/gr1.jpg

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