Karanam Bhaswanth, Srinivas Mouttou Vivek, Vasu Jayalakshmi, Xavier Antony Prabhakar, Karuppiah Rajkumar, Shanmugam Venkatesa Permal, Mukhopadhyay Hirak Kumar
Department of Veterinary Microbiology, Rajiv Gandhi Institute of Veterinary Education and Research, Puducherry, 605 009 India.
Department of Veterinary Medicine, Rajiv Gandhi Institute of Veterinary Education and Research, Puducherry, India.
Virusdisease. 2022 Mar;33(1):108-113. doi: 10.1007/s13337-022-00760-4. Epub 2022 Mar 12.
Feline panleukopenia virus (FPV) and Canine parvovirus (CPV) infections are highly contagious diseases causing severe gastroenteritis with high fatality rates in cats. Realising the importance of cats as a potential source of genetic diversity for parvoviruses, the present study trace the evolutionary history and dynamics of parvovirus variants by characterizing the full-length viral polypeptide 2 (VP2) gene of parvovirus from domestic cats and cats from rescue shelters in Southern India. The study confirmed the presence of both CPV and FPV infections among the cat population. The full-length VP2 gene analysis of parvoviruses from cats; five had amino acid variations characteristic of FPV and one sequence was New CPV-2a/FPV. Three new mutations (hitherto not reported) were identified at 303rd, 441st and 554th amino acid positions. One potential recombination event was identified in VP2 sequence from a cat (New CPV-2a / FPV recombinant). The molecular analysis confirmed that cat populations are susceptible to CPV variants and FPV, thereby promoting superinfection and co-infection with multiple parvoviruses and potentially facilitating transmission, recombination and high genetic heterogeneity.
The online version contains supplementary material available at 10.1007/s13337-022-00760-4.
猫泛白细胞减少症病毒(FPV)和犬细小病毒(CPV)感染是高度传染性疾病,可导致猫严重肠胃炎,死亡率很高。认识到猫作为细小病毒潜在遗传多样性来源的重要性,本研究通过对印度南部家猫和救助站猫的细小病毒全长病毒多肽2(VP2)基因进行特征分析,追踪细小病毒变体的进化历史和动态。该研究证实了猫群体中同时存在CPV和FPV感染。对猫的细小病毒全长VP2基因分析;五只具有FPV特征性的氨基酸变异,一个序列为新型CPV-2a/FPV。在第303、441和554个氨基酸位置鉴定出三个新突变(迄今未报道)。在一只猫的VP2序列(新型CPV-2a / FPV重组体)中鉴定出一个潜在的重组事件。分子分析证实猫群体易感染CPV变体和FPV,从而促进多种细小病毒及潜在的传播、重组和高遗传异质性的重复感染和共同感染。
在线版本包含可在10.1007/s13337-022-00760-4获取的补充材料。