Bat coronavirus was detected positive from insectivorous bats in Krau Wildlife Reserve Forest.

Z Y Siew, Z J Lai, Q Y Ho, H C Ter, S H Ho, S T Wong, M Gani, P P Leong, K Voon
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Abstract

Bats are flying mammals with unique immune systems that allow them to hold many pathogens. Hence, they are recognised as the reservoir of many zoonotic pathogens. In this study, we performed molecular detection to detect coronaviruses, paramyxoviruses, pteropine orthoreoviruses and dengue viruses from samples collected from insectivorous bats in Krau Reserve Forest. One faecal sample from Rhinolophus spp. was detected positive for coronavirus. Based on BLASTN, phylogenetic analysis and pairwise alignment-based sequence identity calculation, the detected bat coronavirus is most likely to be a bat betacoronavirus lineage slightly different from coronavirus from China, Philippines, Thailand and Luxembourg. In summary, continuous surveillance of bat virome should be encouraged, as Krau Reserve Forest reported a wide spectrum of biodiversity of insectivorous and fruit bats. Moreover, the usage of primers for the broad detection of viruses should be reconsidered because geographical variations might possibly affect the sensitivity of primers in a molecular approach.

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克劳野生动物保护区森林中的食虫蝙蝠被检测出冠状病毒呈阳性。
蝙蝠是一种会飞的哺乳动物,其独特的免疫系统使它们能够抵御许多病原体。因此,它们被认为是许多人畜共患病病原体的贮藏库。在这项研究中,我们从克劳保护区森林中收集的食虫蝙蝠样本中进行了分子检测,以检测冠状病毒、副粘病毒、翼手目正粘病毒和登革热病毒。其中一个鼻蝠粪便样本检测出冠状病毒阳性。根据 BLASTN、系统进化分析和基于成对比对的序列同一性计算,检测到的蝙蝠冠状病毒很可能是蝙蝠 betacoronavirus 系,与来自中国、菲律宾、泰国和卢森堡的冠状病毒略有不同。总之,克劳保护区森林报告了食虫蝙蝠和果蝠的广泛生物多样性,因此应鼓励对蝙蝠病毒组进行持续监测。此外,应重新考虑使用引物来广泛检测病毒,因为地域差异可能会影响分子方法中引物的灵敏度。
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