4.5 Article

Genetic Characterization and Variation of African Swine Fever Virus China/GD/2019 Strain in Domestic Pigs

期刊

PATHOGENS
卷 11, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/pathogens11010097

关键词

African swine fever virus; evolution; mutation; core gene; pan gene; phylogenetic tree

资金

  1. Guangdong Provincial Science and Technology Emergency Prevention and Control Project of African Swine Fever [2019B020211005]
  2. Science and Technology Planning Project of Guangzhou [GZKTP201917]
  3. National Natural Science Foundation of China [32072695]
  4. Natural Science Foundation of Guangdong Province [2019B1515210024]

向作者/读者索取更多资源

African swine fever (ASF) has been spreading in China since its introduction in 2018. In this study, we analyzed the whole genome of an ASF outbreak strain from Guangdong province, China. The results revealed that the China/GD/2019 strain is a new variant with specific deletions and mutations. This research provides insights into the genomic diversity and genetic variation of ASFV.
African swine fever (ASF) was first introduced into Northern China in 2018 and has spread through China since then. Here, we extracted the viral DNA from the blood samples from an ASF outbreak farm in Guangdong province, China and sequenced the whole genome. We assembled the full length genomic sequence of this strain, named China/GD/2019. The whole genome was 188,642 bp long (terminal inverted repeats and loops were not sequenced), encoding 175 open reading frames (ORF). The China/GD/2019 strain belonged to p72 genotype II and p54 genotype IIa. Phylogenetic analysis relationships based on single nucleotide polymorphisms (SNPs) also demonstrated that it grouped into genotype II. A certain number of ORFs mainly belonging to multigene families (MGFs) were absent in the China/GD/2019 strain in comparison to the China/ASFV/SY-18 strain. A deletion of approximately 1 kb was found in the China/GD/2019 genome which was located at the EP153R and EP402R genes in comparison to the China/2018/AnhuiXCGQ strain. We revealed a synonymous mutation site at gene F317L and a non-synonymous mutation site at gene MGF_360-6L in China/GD/2019 comparing to three known Chinese strains. Pair-wise comparison revealed 165 SNP sites in MGF_360-1L between Estonia 2014 and the China/GD/2019 strain. Comparing to China/GD/2019, we revealed a base deletion located at gene D1133L in China/Pig/HLJ/2018 and China/DB/LN/2018, which results in a frameshift mutation to alter the encoding protein. Our findings indicate that China/GD/2019 is a new variant with certain deletions and mutations. This study deepens our understanding of the genomic diversity and genetic variation of ASFV.

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