
Sri Lankan Bats and Bat-Coronaviruses
ENGLISH 喾冟窉喽傕穭喽 喈む喈苦喁

New Scientific Finding by the Scientists of the 糖心原创; Sri Lankan Bats and Bat-Coronaviruses
“Corona” has been a word that tormented a whole world for more than a year since the end of 2019. What is this Corona? It created a global level pandemic by infecting more than 180 million people across 220 countries and caused the death of more than 3.9 million patients.
How this corona came into being? How did it cause such damage within a short period? These have been frequently asked questions in the recent past. SARS-CoV-2 belongs to a large family of viruses called ‘Corona Viruses鈥. This group consists of four different genera named Alpha, Beta, Gamma, and Delta. Various types of coronaviruses which infect humans, as well as other animals, belong to these four types. So far, seven human coronaviruses have been identified including SARS-CoV which spread in China during the year 2003, MERS-CoV that spread in the Middle East during 2012, and SARS-CoV-2 which caused the recent global pandemic.
Coronaviruses are important pathogens for humans and vertebrates. They can infect the respiratory, gastrointestinal, hepatic, and central nervous systems of humans, livestock, birds, bats, mice, and many other wild animals. Among the animals, bats have been reported to be a reservoir host for some coronaviruses, SARS and MERS being the best examples. When these viruses start animal鈥恡o鈥恏uman and human鈥恡o鈥恏uman transmission it marks a zoonotic event. Zoonotic spillover event is when a reservoir population such as bats, with a high pathogen prevalence, comes into contact with a novel host population such as humans.
However, for the transmission from animal to human to happen, important evolutionary changes should take place within the virus in form of mutations. The pathogen transmitted from the reservoir population may or may not be transmitted within the host population. Otherwise, even though the possibility remains, within the animal reservoir, the virus is quite harmless for humans. So, what is this ruckus about the new scientific finding done by the group of scientists of the Faculty of Science of the 糖心原创, in collaboration with the Robert Koch Institute, Germany? With the emergence of SARS-CoV-2 in 2019 interest in the prevalence of coronaviruses in bats was piqued. However, this study was being undertaken since the year 2017, even before corona brought about this pandemic.
Bats (Chiroptera) are an order of mammals with the 2nd highest variety of species worldwide. In Sri Lanka, the suborders of Yinpterochiroptera and Yangochiroptera are both represented in high numbers, accounting for almost 1/3 of the Sri Lankan mammals with 31 different species. Their species variety and other unique features, specifically their ability to fly long distances, their migratory behavior, and gregarious roosting habits, make them important virus reservoirs naturally. Thus the study of these unique animal hosts is an important field of virology to learn more about the co-evolution of bats and viruses and the potential zoonotic transmission of viruses from bats to humans.
Moreover, advanced knowledge on viral transmission mechanisms and virus-host interactions could facilitate the development of antiviral drugs and vaccines as well as preparation against potential pandemics in the future. When considering the high diversity among these animals, the research team successfully assumed that Sri Lankan bat populations might be habouring medically important pathogens including Coronaviruses. Accordingly, the research was conducted based on the said assumption. Investigations were carried on different bat species living in a sympatric colony in the Wavul Galge cave, Koslanda, Sri Lanka.
In three field sessions carried out in 2018 and 2019, the research team captured 395 bats that belonged to Miniopterus, Rousettus, Hipposideros, and Rhinolophus genera. Samples have been collected in form of either rectal swabs or fecal samples and were subjected to screening for coronaviruses using nested PCR method and other different molecular techniques. By the end of the study, the research team has been able to detect 伪 and 尾 CoVs in M. fuliginosus and R. leschenaultii bats respectively, for the first time in Sri Lanka.
Results of this research indicate that the detected CoVs are host-specific for the respective bat species and, despite the sympatric cohabitation in the Wavul Galge cave, an inter-species transmission has not been observed. This supports the assumption that only particular bat species serve as a natural reservoir for harmful human-pathogenic viruses like SARS-CoV, while spill-over events may occur because of environmental impact and the intrusion of humans into the living areas of the bat species. According to this particular research, studying bats and monitoring their viruses as well as the respectful interaction with their natural habitats are both important factors to better understand and prevent zoonotic transmission from bats to humans.
The research was carried out mainly for the Ph.D. studies of Ms. Therese Muzeniek from the Robert Koch Institute, Centre for Biological Threats and Special Pathogens, Highly Pathogenic Viruses Division (ZBS1), Berlin, Germany and Ms. Thejanee Perera from the Institute of Biochemistry, Molecular Biology and Biotechnology, 糖心原创, Sri Lanka within the IDEA project under Global Health Protection Programme. Prof. , Emeritus Prof. Sunil Premawansa, Prof. , and Mr. Sahan Siriwardana from Identification of Emerging Agents (IDEA) Laboratory, Department of Zoology and Environment Sciences, the Faculty of Science, 糖心原创 along with Dr. Gayani Premawansa from North Colombo Teaching Hospital, provided their contribution in making this research a success.
As the faculty of Science, 糖心原创, we congratulate the research team for their important findings and we are humbly proud that such a talented team is a part of the faculty. Because science holds the key to many challenges we face.
喽氞窚喾呧豆 喾喾掄穪喾娻穩喾喾掄动喾娾嵿逗喾忇督喽亨窔 喾喾掄动喾娾嵿逗喾忇顶喽亨窉喽编穵喽溹窔 喽编穩喽陡 喾冟窚喽亨窂 喽溹窅喽编窊喽: 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喾喾喾斷督喾 喾喾掄穪喾氞穫 喾冟穭 喾喾喾斷督喾 喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽
2019 喾喽秽穵喾傕逗喾 喽呧稖 喽粪窂喽溹逗喾 喽窊 喽洁窚喾 喽脆窋喽秽窂 喾喾娾嵿逗喾忇洞喾娻董喾掄逗 喽囙痘喽灌窎 喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟逗 喽呧动 喾喽 喾喾掄锭 喽溹窛喽洁窊喽 喾喾冟秱喽溹董喽亨稓喾 喽多穩喽 喽脆董喾娻穩喾權陡喾掄侗喾 喽膏窉喽洁窉喽亨侗 180 喽氞锭 喽呧栋喾掄稓 喽脆窋喽穵喽溹督喽亨窉喽编穵 喾冟秱喽涏穵鈥嵿逗喾忇穩喽氞穵 喽嗋穬喽侗喽 喽氞痘喽膏窉喽编穵, 喽膏窉喽洁窉喽亨侗 3.9 喽氞锭 喽呧栋喾掄稓 喽秽窛喽溹窊喽编穵 喾冟秱喽涏穵鈥嵿逗喾忇穩喽氞穵 喽膏痘喽逗喽 喽脆董喾 喽氞痘喽膏窉喽编穵 喽洁窚喾 喽脆窋喽秽窂 喽秽锭喾喽洁穵 220 喾喾娾嵿逗喾忇洞喾娻董 喾喾 喽囙董喾 喽多穩 喽编窚喽秽穭喾冟稓喾.
喽膏窓喽 喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟逗喾 喽膏窎喽洁窂喽秽陡喾娻斗喽 喾冟穭 喽膏窓喽痘喽膏穵 喽氞窓喽о窉 喽氞窂喽洁逗喽氞穵 喽窋喽 喽窊 喽膏窓喽 喾喾涏痘喾冟逗 喾冟窉喽窋 喽氞督 喾勦窂喽编窉喽 喽脆窉喾呧窉喽多冻喾 喾喾掄穩喾掄栋喾忇稓喾忇痘喽亨窔 喽膏董喾喾忇动喽亨侗喾 喾喽秽穵喽陡喾忇侗喽亨窔 喾喽┼窂喽穵 喽氞董喾 喽多穭喽 喽洁稓喾 喾喾權陡喾掄侗喾 喽脆穩喽窊. 喾冟窅喽多窅喾喾掄侗喾娻陡 喽膏窓喽 SARS-CoV-2 喾喾涏痘喾冟逗喾 喽膏窎喽洁窂喽秽陡喾娻斗喽 喽氞窓喾冟窔 喾冟窉喽窋 喾喾撪动? 喽膏窓喽 喽呧洞 喾冟窅喽 喾喾掄穬喾掄侗喾娻陡 喾喾掄陡喾冟窂 喽多窅喽洁窉喽 喽亨窋喽窋 喽氞痘喾斷东喽氞窉. 喾冟陡喾冟穵喽逗喽氞穵 喾喾佮逗喾權侗喾 喾冟窅喽洁稓喾 喾喾掄锭, SARS-CoV-2 喾喾涏痘喾冟逗, 鈥溹稓喾溹痘喾澿侗喾 喾喾涏痘喾冣 喽编陡喾 喾喾掄穪喾忇督 喾喾涏痘喾冟穵 喽脆穩喾斷督喽 喽呧逗喽穵 喾喾. 喽膏窓喽 喾喾涏痘喾 喽脆穩喾斷督 喽囙督喾娻穯喾, 喽多窊喽о窂, 喽溹窅喽膏窂 喾冟穭 喽┼窓喽洁穵喽о窂 喽亨侗 喽嬥洞 喽氞窂喽穵喽 喾勦董喽秽稓喾掄侗喾 喾冟陡喽编穵喾喾掄董 喾喾. 喽膏窉喽编窉喾冟窋喽编穵喽 喾喾愢穮喽赤窊喽膏窔 喽脆穵鈥嵿痘喾喽董喾忇穩喽 喾冟穭喾掄董 喾喾涏痘喾 喽氞窂喽穵喽 喽洁窓喾 喽囙督喾娻穯喾 喾冟穭 喽多窊喽о窂 喽氞窂喽穵喽 喽窅喽氞穵喾喾掄逗 喾勦窅喽氞窉喽 喽呧董喽 喽膏窓喽 喽氞窂喽穵喽 喽窓喽氞锭 喽呧动喾忇督喾 喽膏窉喽编窉喾冟窋喽编穵喽 喽嗋穬喾忇动喽编逗 喾喾掄逗 喾勦窅喽氞窉 喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽 喾勦董喽氞穵 喽膏窔 喾喽 喾喾掄锭 喾冟窚喽亨窂 喽溹窓喽 喽囙董. 2003 喾喽秽穵喾傕逗喾 喽窊 喽犩窊喽编逗喾 喾喾娾嵿逗喾忇洞喾娻董 喾喾 SARS-CoV 喾喾涏痘喾冟逗喽穵, 2012 喾喽秽穵喾傕逗喾 喽窊 喽膏窅喽 喽脆窓喽秽动喾掄稖 喾喾娾嵿逗喾忇洞喾娻董 喾喾 MERS-CoV 喾喾涏痘喾冟逗喽穵, 喾喽秽穵喽陡喾忇侗喽亨窔 喾喾娾嵿逗喾忇洞喾娻董 喾喽编穵喽编窂 喾喾 SARS-CoV-2 喾喾涏痘喾冟逗喽穵 喽囙董喾斷穮喾斷穩 喽膏窉喽编窉喾冟窋喽编穵 喾冟穭 喾喾掄穩喾掄栋 喾冟董喾斷侗喾 喽嗋穬喽侗喽 喽氞痘喽编窋 喽洁抖喽 喽编窚喽亨窓喽氞穵 喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽 喽膏窔 喾喽 喾喾掄锭 喾勦冻喾斷侗喾 喽溹窓喽 喽囙董. 喽膏窉喽编窉喾冟窋喽编穵 喽囙董喾斷穮喾 喽脆窐喾傕穵喽ㄠ穩喽傕穪喾 喾冟董喾斷侗喾 喾勦锭 喽秽窛喽 喽囙董喾 喽氞窉喽秽窊喽膏窔 喽秽窛喽 喽氞窂喽秽稓喽亨稓喾 喽洁窓喾 喽膏窓喽 喽氞窚喽秽窛喽编窂 喾喾涏痘喾 喽脆穩喾斷督 喾冟窋喾喾掄穪喾氞穫喾 喾冟穵喽窂喽编逗喽氞穵 喽呧董喾 喽氞痘喽溹侗喾. 喽膏窉喽编窉喾冟窋喽编穵喽溹窔 喽脆陡喽稓喾 喽编窚喾 喽脆稓喾娻穫喾撪侗喾, 喾喾喾斷督喽编穵, 喽膏窊喽亨侗喾 喾冟穭 喽多窚喾勦窚喽膏逗喽氞穵 喾冟董喾斷侗喾娻稖喾 喾佮穵喾喾冟侗 喽膏窂喽秽穵喽溹逗, 喽嗋穭喾忇痘 喽膏窂喽秽穵喽溹逗, 喽呧稓喾娻陡喾忇穩 喽嗋穪喾娾嵿痘喾掄董 喽脆穵鈥嵿痘喽窔喾 喾冟穭 喽膏栋喾娾嵿逗喽 喾冟穵喽编逗喾 喽脆动喾娻栋喽窉喽 喽呧穬喾忇动喽编逗 喽氞窉喽秽窊喽膏锭 喽膏窓喽 喾喾涏痘喾 喽脆穵鈥嵿痘喽粪窔喽逗喽编穵喽 喾勦窅喽氞窉喽亨窂喾喽氞穵 喽脆穩喽窊. 喽夃穭喽 喾冟冻喾勦侗喾 喽氞督 喾冟董喾斷侗喾 喽呧董喽秽窉喽编穵 喾喾喾斷督喽编穵, SARS 喾冟穭 MERS 喾喾涏痘喾冟逗喽编穵喾勦窉 喽脆穵鈥嵿痘喽班窂喽 喽班窂喽秽稓喽亨窓喽氞穵 喽洁窓喾 喾冟冻喾勦侗喾 喽氞督 喾勦窅喽.
喽膏窓喽 喾喾涏痘喾冟逗喽编穵喽, 喾冟董喾斷侗喾娻稖喾權侗喾 喽膏窉喽编窉喾冟窋喽编穵喽 喾冟穭 喽膏窉喽编窉喾冟窋喽编穵喽溹窓喽编穵 喽膏窉喽编窉喾冟窋喽编穵喽 喽脆穵鈥嵿痘喽犩窂喽秽东喽 喾喾撪陡喾 喾勦窅喽氞窉喽亨窂喾 喽洁抖喾 喽溹董 喾勦窅喽氞窉 喽呧董喽, 喽戉逗 zoonotic spillover 喽洁窓喾 喾勦窅喽赤窉喽编穵喾喾. 喾喾掄穪喾忇督 喽秽窛喽 喽氞窂喽秽稓喽亨窉喽编穵 喽溹穭喽逗喽氞穵 喽秽窅喽溹董喾 喾冟董喾娻董喾娻穩 喽溹穭喽逗喽氞穵 (喽嬥动喾忇穭喽秽东喽亨稓喾 喽洁窓喾 喾喾喾斷督喾 喽溹穭喽逗喽氞穵) 喽编穩 喽班窂喽秽稓喽亨侗喾 (喽嬥动喾忇穭喽秽东喽亨稓喾 喽洁窓喾 喽膏窉喽编窉喾冟窋喽编穵) 喾冟陡喽 喽溹窅喽о窊喽膏窔喽窊 喽囙董喾掄穩喽编穵喽编窂 喾喾 喽董喾娻穩喽 Zoonotic spillover event 喽洁窓喾 喾勦冻喾斷侗喾娻穩喽亨窉. 喽编陡喾斷董喾, 喽膏窓喽 喽秽窛喽 喽氞窂喽秽稓 喾冟董喾娻穩 喾喾掄穪喾氞穫喽 喾冟陡喽 喽溹窅喽о窊喽膏窓喽编穵 喽脆陡喽稓喾娻陡 喽膏窓喽 喽秽窛喽溹逗 喾喾娾嵿逗喾忇洞喾娻董 喾喽 喽多穩喽 喽脆窅喾喾冟窉喽 喽编窚喾勦窅喽.
喽氞窓喾冟窔喾喾權董喽穵, 喾冟董喾斷侗喾娻稖喾權侗喾 喽膏窉喽编窉喾冟窋喽编穵喽 喾喾涏痘喾 喽秽窛喽溹逗喽氞穵 喽脆穵鈥嵿痘喽犩窂喽秽东喽 喾喾撪陡喾氞动喾 喽戉陡 喽脆穵鈥嵿痘喽犩窂喽秽东喽 喾喽 喾喾涏痘喾冟逗 喽窋喽 喾喾掄稓喾樴董喾掄逗喽氞穵 喾喾愢侗喾 喾喾 喾冟窋喾喾掄穪喾氞穫喾 喽脆痘喾掄东喾忇陡喾掄稓 喾喾權侗喾冟穵 喾喾撪陡喽氞穵 喾冟窉喽窋喾喾掄逗 喽亨窋喽窋喽. 喽戉陡 喽溹窅喽о窊喽膏窓喽编穵 喽膏窓喽 喽编穩 喽班窂喽秽稓 喾喾掄穪喾氞穫喽 喽窋喽 喽膏窓喽 喽秽窛喽溹逗 喽脆窅喽窉喽秽窊喽 喾冟陡喾娻斗喾忇穩喾掄董喾喽氞穵 喽膏窓喽编穵喽 喽编窚喽脆窅喽窉喽秽窊喽膏窔 喾冟陡喾娻斗喾忇穩喾掄董喾喽亨稓喾娻动 喽脆穩喽窊. 喽戉穬喾 喽编窚喾喾 喽编陡喾, 喽戉陡 喾喾涏痘喾 喽脆穵鈥嵿痘喽粪窔喽逗 喾冟董喾娻穩 喾喾掄穪喾氞穫 喽窋喾 喾喾娾嵿逗喾忇洞喾娻董喾 喽脆窅喾喽窉喽亨动 喽膏窉喽编窉喾冟窋喽编穵 喽秽窛喽溹窊 喽氞窉喽秽窊喽膏窔 喽呧穩喽窂喽编陡 喽脆穭喾 喽膏锭喾娻锭喽膏稓 喽脆穩喽窊. 2019 喾喽秽穵喾傕逗喾 喽嗋痘喽膏穵喽 喾喾 SARS-CoV-2 喾喾涏痘喾 喾喾娾嵿逗喾忇洞喾娻董喾掄逗喽穵 喾冟陡喽 喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟逗 喾冟穭 喾喾喾斷督喽编穵 喽呧董喽 喽囙董喾 喾冟抖喽赤董喾忇穩 喽脆窉喾呧窉喽多冻 喾喽┼窂喽穵 喽氞董喾 喽多穭喽 喽洁稓喾 喾喾掄逗. 喽氞窓喾冟窔 喾喾權董喽穵 2019 喾喽秽穵喾傕逗喾 喽膏窓喽 喾喾涏痘喾冟逗 喾喾娾嵿逗喾忇洞喾娻董喾掄逗 喽嗋痘喽膏穵喽粪逗喽о董喾 喽脆窓喽 喾冟窉喽о陡, 2017 喾喽秽穵喾傕逗喾 喽窊 喽氞窚喾呧豆 喾喾掄穪喾娻穩 喾喾掄动喾娾嵿逗喾忇督喽亨窔, 喾喾掄动喾娾嵿逗喾 喽脆窊喽ㄠ逗, 喽⑧痘喾娻陡喽编窉喽亨窔 Robert Koch Institute 喽嗋逗喽侗喽 喾冟陡喽 喾冟陡喾娻抖喽编穵喽 喾喾權陡喾掄侗喾 喽囙痘喽灌窎 喽脆痘喾撪稓喾娻穫喽 喽溹东喽编窂喾喽氞窉喽编穵 喽膏窓喽 喾冟抖喽赤董喾 喽脆窉喾呧窉喽多冻 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喽 喽呧动喾忇督喾 喽编穩喽陡 喽窚喽秽董喾斷痘喾 喽秽窂喾佮窉喽亨稓喾 喽呧侗喾忇穩喽秽东喽 喽氞痘 喽溹窓喽 喽囙董.
喾喾喾斷督喽编穵 (Chiroptera) 喽亨侗喾 喾喾掄穪喾忇督 喾喾 喾喾掄穪喾氞穫 喾喾掄穩喾掄栋喽穵喾喽亨稓喾 喽囙董喾 喽氞穵喾傕窊喽秽洞喾忇逗喾 喾冟董喾娻董喾娻穩 喽氞窚喽о穵喽ㄠ窂喾佮逗喽氞窉. 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喽⑧窊喾喽穵 喾喽 喾喾喾斷督喾 喽溹穭喽 喽呧董喽秽窉喽编穵 Yinpterochiroptera 喾冟穭 Yangochiroptera 喽亨侗 喽嬥洞 喽溹穭喽编逗喽编锭 喽呧动喾忇督 喾喾掄穪喾忇督 喾冟陡喾忇盯喾掄稓喽亨窉喽编穵 喽脆窉喽秽窉喾冟稓喾 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喾喾忇穬喽 喽氞痘喽 喽呧董喽 喽戉逗 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喽氞穵喾傕窊喽秽洞喾忇逗喾掄侗喾 喽呧董喽秽窉喽编穵 1\3 喽脆陡喽 喽脆穵鈥嵿痘喽膏窂喽逗喽氞穵 喽嗋穩喽秽东喽 喽氞痘喽亨窉. 喽膏窓喽 喾喾喾斷督喽编穵喽溹窔 喾喾掄穪喾氞穫 喾喾掄穩喾掄栋喽穵喾喽, 喽窉喽溹窋 喽窋喽 喽脆窉喽亨豆喾忇逗喾忇陡喽 喽囙董喾 喾勦窅喽氞窉喽亨窂喾, 喾冟秱喽氞穵鈥嵿痘喽膏东 喽嗋稓喾忇痘喽 喾冟穭 喾喾忇穬喾冟穵喽窂喽 喽囙董喾斷督喾 喾喾 喽斷穩喾斷侗喽о陡 喾冟窋喾喾掄穪喾氞穫喾 喾喾 喽洁稓喾娻穫喽 喾冟穵喾喽粪窂喾喾掄稓喾喽 喽斷穩喾斷侗喾 喾喾涏痘喾 喽班窂喽秽稓喽亨侗喾 喽多穩喽 喽脆董喾 喽氞痘 喽囙董. 喽膏窓喽氞窊 喾勦窔喽窋 喽氞窂喽秽东喾 喽编窉喾冟窂 喾喾涏痘喾 喾冟穭 喾喾喾斷督喽编穵 喽呧董喽 喾喾 喾冟穭-喽脆痘喾掄东喾忇陡喽 喾冟穭 喾喾喾斷督喽编穵喽溹窓喽编穵 喽膏窉喽编窉喾冟窋喽编穵喽 喾喽 喽秽窛喽 喾冟陡喾娻洞喾娾嵿痘喾氞穫喽逗 喽脆窉喾呧窉喽多冻 喽呧栋喾娾嵿逗喽编逗 喾喾涏痘喾冟穩喾掄动喾娾嵿逗喾忇穩喾 喾喾愢动喽溹董喾 喽呧秱喾佮逗喽氞穵 喽多穩喽 喽脆董喾 喾喾 喽囙董.
喽穩喽窋喽秽锭喽穵, 喽膏窓喽 喾喾涏痘喾 喾冟陡喾娻洞喾娾嵿痘喾氞穫喽 喽亨窂喽编穵喽穵鈥嵿痘喽 喾冟穭 喾喾涏痘喾-喽班窂喽秽稓 喾冟陡喾娻抖喽编穵喽班董喾忇穩喽 喽脆窉喾呧窉喽多冻 喾喾 喽窅喽编窋喽 喽脆穵鈥嵿痘喽窉喾喾涏痘喾 喽栢穫喽 喾冟穭 喽戉侗喾娻侗喽穵 喽编窉喽脆动喾喾撪陡 喽膏窓喽编穵喽 喽呧侗喾忇稖喽 喾喾冟秱喽溹董 喽董喾娻董喾娻穩 喾喽洁锭 喽膏窋喾勦窋喽动喾撪陡 喾冟冻喾勦窂 喽 喽膏侗喾 喽脆窉喽о窉喾喾勦督喽氞穵 喾喾. 喾喾喾斷督喽编穵 喽呧董喽 喾喾 喾喾掄穪喾忇督 喾喾掄穪喾氞穫 喾喾掄穩喾掄栋喽穵喾喽 喽脆窉喾呧窉喽多冻喾 喾冟督喽氞窂 喽多窅喽洁窊喽膏窔喽窊 喾喾喾斷督喾-喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喾喾喾斷督喾 喾喾掄穪喾氞穫 喽呧董喽秽董喾 喽脆窅喾喽窉喽 喾勦窅喽氞窉 喽多穩喽 喽呧洞 喽脆痘喾娻逗喾氞穫喽 喽氞东喾娻订喾忇逗喽 喾喾掄穬喾掄侗喾 喾冟窂喽秽穵喽稓喾 喽呧侗喾斷陡喾忇侗 喽氞痘喽编窋 喽洁窅喽多窋喾喾. 喽戉逗喽 喾勦窔喽窋 喽氞痘喽窂 喾喽编穵喽编窓 喾喾喾斷督喽编穵 喽膏窓喽 喾喾涏痘喾 喽氞窂喽穵喽┼逗喾 喽脆穵鈥嵿痘喽班窂喽 喽班窂喽秽稓 喾喾掄穪喾氞穫喽亨稓喾 喽洁窓喾 喽窅喽氞穵喾喾掄逗 喾勦窅喽氞窉喾喾撪陡喽亨窉. 喽 喽呧侗喾斷穩 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喽氞窚喾冟穵喽洁侗喾娻动 喽脆穵鈥嵿痘喽窔喾佮逗喾 喾喾喾斷督喾 喽溹督喾娻稖喾 喽溹窋喾勦窂喾 喽嗋穪喾娾嵿痘喾掄董喾 喽膏窓喽 喽脆痘喾撪穫喽 喽氞锭喽亨窋喽窋 喽膏窓喾勦窓喽亨穩喾 喽囙董喾 喽呧董喽 2018 喾冟穭 2019 喾喽秽穵喾傕逗喽编穵 喽窋喾 喽呧督喾娻督喾 喽溹侗喾娻侗喾 喽洁动 Miniopterus, Rousettus, Hipposideros, 喾冟穭 Rhinolophus 喾喾掄穪喾氞穫 喾喽洁锭 喽呧逗喽穵 喾喾喾斷督喽编穵 395 喽窓喽编窓喽氞窋 喽亨窚喽窂 喽溹侗喾掄陡喾掄侗喾 喽编窚喽亨窓喽氞窋喽穵 喽脆痘喾撪稓喾娻穫喽 喽膏窓喽 喽脆痘喾娻逗喾氞穫喽 喽氞东喾娻订喾忇逗喽 喾喾掄穬喾掄侗喾 喾冟窉喽窋 喽氞痘喽编窋 喽洁窅喽 喽窉喽多窓喽编穩喾. 喽洁抖喾 喽溹侗喾娻侗喾 喽洁动 喾冟窂喽膏穵喽脆督 nested PCR 喾冟穭 喾喾掄穩喾掄栋 喽呧东喾斷稓 喽窂喽氞穵喾傕东 喽氞穵鈥嵿痘喽膏穩喾氞动 喽粪窂喾喾掄董 喽氞痘喽膏窉喽编穵 喾喾喾斷督喾-喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽 喽呧冻喾斷侗喾 喽溹窅喽编窊喽膏锭 喽嬥董喾娻穬喾忇穭 喽氞痘 喽窉喽多窓喽编穩喾. 喽膏窓喽 喽脆痘喾撪稓喾娻穫喽逗 喽呧穩喾冟窂喽编逗喾 喽窊 喾佮穵鈥嵿痘喾 喽洁秱喽氞窂喾喾 喽脆穵鈥嵿痘喽陡 喾喽窂喾喽 喽囙督喾娻穯喾 喾冟穭 喽多窊喽о窂 喽氞窂喽穵喽┼逗喽编穵喽 喽呧逗喽穵 喾喾喾斷督喾-喽氞窚喽秽窛喽编窂 喽脆穵鈥嵿痘喽粪窔喽 M. fuliginosus 喾冟穭 R. leschenaultii 喽亨侗 喾喾喾斷督喾 喾喾掄穪喾氞穫喽亨侗喾 喽溹窓喽编穵 喾冟窚喽亨窂 喽溹窅喽编窊喽膏锭 喽脆痘喾娻逗喾氞穫喽 喽氞东喾娻订喾忇逗喽 喾冟陡喽穵 喾喾 喽窉喽多窓喽编穩喾. 喽脆痘喾娻逗喾氞穫喽 喽脆穵鈥嵿痘喽窉喽掂督 喽呧侗喾忇穩喽秽东喽 喽氞痘喽 喽脆痘喾掄动喾 喽膏窓喽 喾勦冻喾斷侗喾忇稖喽穵 喾喾喾斷督喾-喽氞窚喽秽窛喽编窂 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽 喽膏窓喽 喾喾喾斷督喾 喾喾掄穪喾氞穫喽 喾冟冻喾勦窂 喽班窂喽秽稓 喾喾掄穪喾掄穫喾娻定 喾喽 喽呧董喽 喽呧侗喾娻董喽秽穵 喾喾掄穪喾氞穫 喾冟陡喾娻洞喾娾嵿痘喾氞穫喽 喽穭喾喾斷痘喾 喽氞痘 喽编窚喽膏窅喽.
喽膏窓喽 喽脆穵鈥嵿痘喽窉喽掂督 喽膏稛喾掄侗喾 喾冟侗喾忇懂 喽氞痘喽 喽脆痘喾掄动喾 喽夃穭喽 喾冟冻喾勦侗喾 喾喾喾斷督喾 喾喾掄穪喾氞穫 喽脆陡喽稓喾 喽膏窉喽编窉喾冟窋喽编穵喽 喾勦窂喽编窉喽窂喽亨稓 喾喾 SARS-CoV 喾喾涏痘喾冟穵 喽脆穵鈥嵿痘喽粪窔喽 喾冟冻喾勦窂 喾冟穵喾喽粪窂喾喾掄稓 喽秽窛喽溹稓喾忇痘喽氞逗喽氞穵 喾喾掄逗 喾勦窅喽氞窉 喽多穩喽穵 喽戉穬喾 喾喾掄逗 喾勦窅喽氞穵喽氞窔 喽脆窂喽秽窉喾冟痘喾掄稓 喽多督喽脆窇喽膏稓喾 喾冟穭 喽膏窉喽编窉喾冟窋喽编穵 喽膏窓喽 喾喾喾斷督喽编穵喽溹窔 喾喾忇穬喾冟穵喽窂喽 喾喽洁锭 喽多督喾權侗喾 喽囙董喾斷督喾 喾喾撪陡喾權侗喾 喽囙董喾 喽氞痘喽 喽董喾娻董喾娻穩喽亨窓喽编穵 喽多穩喽穵 喽脆痘喾娻逗喾氞穫喽 喽氞东喾娻订喾忇逗喽 喾喾掄穬喾掄侗喾 喾喾愢订喾掄动喾斷痘喽о董喾 喽呧穩喽班窂喽秽东喽 喽氞痘喽编穩喾.
喽膏窓喽 喽脆痘喾撪稓喾娻穫喽逗 喽呧侗喾斷穩 喾喾喾斷督喽编穵 喽脆窉喾呧窉喽多冻 喽呧栋喾娾嵿逗喽编逗, 喽斷穩喾斷侗喽 喾喾愢穮喽窓喽 喾喾涏痘喾 喽脆窉喾呧窉喽多冻 喽呧栋喾娾嵿逗喽编逗 喾冟穭 喽斷穩喾斷侗喾娻稖喾 喾喾忇穬喾冟穵喽窂喽 喽脆窉喾呧窉喽多冻 喽呧栋喾娾嵿逗喽编逗 喽呧侗喾忇稖喽逗喾 喽窊 喾喾愢穮喽窉喽 喾勦窅喽氞窉 喽秽窛喽 喽董喾娻董喾娻穩喽亨侗喾 喾喽洁稓喾娻穩喾 喽溹窅喽编窊喽膏锭 喽膏侗喾 喽脆窉喽о窉喾喾勦督喽氞穵 喾喽 喽多穩 喽编窚喽呧侗喾斷陡喾忇侗喽. 喽膏窓喽 喽脆痘喾撪稓喾娻穫喽逗 喽膏窓喾勦窓喽亨穩喽 喽洁动喾娻动喾 喽⑧痘喾娻陡喽编窉喽亨窔 喽秽窚喽多锭喾 喽氞窚喽犩穵 喽嗋逗喽侗喽亨窔 喽脆穪喾娻稜喾忇董喾 喽嬥洞喾忇栋喾 喽呧洞喾氞稓喾娻穫喾掄稓喾 喽窓喽秽窔喾冟窔 喽膏窋喾冟侗喾掄稓喾, 喽氞窚喾呧豆 喾喾掄穪喾娻穩 喾喾掄动喾娾嵿逗喾忇督喽亨窔, 喽⑧窙喾喽秽穬喾忇逗喽, 喽呧东喾斷稓 喽⑧窊喾 喾喾掄动喾娾嵿逗喾 喾冟穭 喽⑧窙喾喽窂喽氞穵喾傕东 喽嗋逗喽侗喽亨窔 喽脆穪喾娻稜喾忇董喾 喽嬥洞喾忇栋喾 喽呧洞喾氞稓喾娻穫喾掄稓喾 喽窔喽⑧窂喽编窉 喽脆窓喽秽窔喽秽窂, 喽氞窚喾呧豆 喾喾掄穪喾娻穩 喾喾掄动喾娾嵿逗喾忇督喽亨窔 喾喾掄动喾娾嵿逗喾 喽脆窊喽ㄠ逗喾 喾冟董喾娻董喾娻穩 喾喾掄动喾娾嵿逗喾 喾冟穭 喽脆窂喽秽窉喾冟痘喾掄稓 喾喾掄动喾娾嵿逗喾 喽窓喽脆窂喽秽穵喽陡喾氞侗喾娻董喾斷穩 喾冟穭 喽⑧痘喾娻陡喽编窉喽亨窔 喽秽窚喽多锭喾 喽氞窚喽犩穵 喽嗋逗喽侗喽亨窔 喾冟陡喾娻抖喽编穵喽董喾忇穩喽亨窓喽编穵 喽氞穵鈥嵿痘喾掄逗喾忇董喾娻陡喽 喾喽 Identification of Emerging Agents (IDEA) 喾喾掄动喾娾嵿逗喾忇稖喾忇痘喽亨窔, 喽膏穭喾忇稜喾忇痘喾娻逗 喾冟窋喽编窉喽洁穵 喽脆穵鈥嵿痘喾氞陡喾喽傕穬, 喽膏穭喾忇稜喾忇痘喾娻逗 , 喽膏穭喾忇稜喾忇痘喾娻逗 喾冟穭 喾冟穭喽编穵 喾冟窉喽秽窉喾喽秽穵喽班侗 喽膏穭喽窂 喾冟陡喽 喽嬥董喾斷痘喾 喽氞窚喾呧豆 喾佮窉喽氞穵喾傕东 喽秽窛喾勦督喾 喾喾涏动喾娾嵿逗 喽溹逗喽编窉 喽脆穵鈥嵿痘喾氞陡喾喽傕穬 喽亨侗 喽膏穭喽穵喽 喽膏穭喽穵喽膏窊喽编穵 喽囙董喾斷督喾 喽脆窉喽秽窉喾冟稓喽溹窓喽编穵 喾冟窅喽窋喽膏穵喽洁董喾 喽脆痘喾娻逗喾氞穫喽 喽氞东喾娻订喾忇逗喽膏稓喾 喾喾掄穬喾掄侗喾. 喽膏窓喾喽编穵 喾喾 喾冟窋喾喾掄穪喾氞穫喾 喽脆痘喾撪稓喾娻穫喽逗喽 喽编窉喽亨督喾權陡喾掄侗喾 喾冟窂喽秽穵喽稓 喽脆穵鈥嵿痘喽窉喽掂督 喽洁抖喾 喽溹董喾 喽膏窓喽 喽脆痘喾撪稓喾娻穫喽 喽氞东喾娻订喾忇逗喽膏锭 喽氞窚喾呧豆 喾喾掄穪喾娻穩 喾喾掄动喾娾嵿逗喾忇督喽亨窔 喾喾掄动喾娾嵿逗喾 喽脆窊喽ㄠ逗喾 喽呧洞 喾冟窅喽膏稖喾 喾勦动喽脆窉喽秽窉 喽脆穵鈥嵿痘喽窂喽膏逗 喽脆窋喽 喽氞痘 喾冟窉喽о窉喽 喽呧董喽 喾喽秽穵喽陡喾忇侗喽亨窔 喽膏窓喽编穵喽 喽呧侗喾忇稖喽穵喽亨窔喽窊喽 喽呧洞 喽膏窋喾勦窋喽编洞喾忇侗喾 喾喾掄穩喾掄栋喾忇稓喾忇痘 喾喾 喽溹窅喽о督喾 喾喾掄穬喽赤窊喽 喾冟冻喾勦窂 喾喾掄动喾娾嵿逗喾忇董喾娻陡喽 喽脆痘喾娻逗喾氞穫喽 喽膏侗喾 喽脆窉喽о窉喾喾勦督喽氞穵 喾喽 喽多穩 喽膏窓喽 喽脆痘喾娻逗喾氞穫喽逗喽 喽氞动喾掄陡 喽嬥动喾忇穭喽秽东喽亨稓喾 喽多穩喽 喽编窉喾勦董喽膏窂喽编窊 喽嗋订喽膏穵喽多痘喽亨稓喾掄侗喾 喽亨窋喽窋喾 喽膏董喽氞穵 喽氞痘喽编穵喽编窓喽膏窋.
喈曕瘖喈脆瘉喈瘝喈瘉喈瘝喈喁嵿畷喈侧瘓喈曕瘝喈曕喈 喈掂喈炧瘝喈炧喈┼喈曕喈苦喁 喈ㄠ喁喈 喈掂喈炧瘝喈炧喈 喈曕喁嵿疅喁佮喈苦疅喈苦喁嵿喁: 喈囙喈權瘝喈曕瘓 喈掂瘑喈赤喈距喁嵿畷喈赤瘝 喈喁嵿喁佮喁 喈掂瘑喈赤喈距喁-喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁 喈囙喈權瘝喈曕喁
喈曕瘖喈班瘚喈┼ 喈庎喁佮喁 喈掂喈班瘝喈む瘝喈む瘓, 2019 喈嗋喁 喈嗋喁嵿疅喈苦喁佮喈 喈む瘖喈熰畷喁嵿畷喈瘝 喈掄喁 喈掂喁佮疅喈む瘝喈む喈编瘝喈曕瘉喈瘝 喈瘒喈编瘝喈疅喁嵿疅 喈曕喈侧喈距畷 喈夃喈曕瘓喈瘒 喈夃喁佮畷喁嵿畷喈苦喁嵿喁嬥疅喁嵿疅喁佮畷喁嵿畷喁娻喁嵿疅喈苦喁佮畷喁嵿畷喈苦喁嵿喈む瘉. 喈曕瘖喈班瘚喈┼ 喈庎喁嵿喈む瘉 喈庎喁嵿? 喈囙喁 喈夃喈曕喈距喈苦 喈班瘈喈む喈喈侧瘝, 220 喈ㄠ喈熰瘉喈曕喈苦喁 180 喈喈侧瘝喈侧喈喁 喈畷喁嵿畷喈赤喈编瘝喈曕瘉 喈む瘖喈编瘝喈编瘓 喈忇喁嵿喈熰瘉喈む瘝喈む, 3.9 喈喈侧瘝喈侧喈喁 喈畷喁嵿畷喈赤喈┼瘝 喈夃喈苦喁 喈曕喈掂瘉 喈掂喈權瘝喈曕, 喈瘑喈班瘉喈ㄠ瘝喈む瘖喈编瘝喈编瘉 喈ㄠ喈侧瘓喈瘓喈瘓 喈忇喁嵿喈熰瘉喈む瘝喈む喈瘉喈赤瘝喈赤喁 喈呧喁堗喈班瘉喈瘝 喈呧喈苦喁嵿喈む瘒.
喈囙喁 喈庎喁嵿喈距喁 喈夃喁佮畷喁嵿畷喁娻喁嵿疅喈む瘉? 喈庎喁嵿喈距喁 喈囙喁嵿喈赤喁 喈曕瘉喈编瘉喈曕喈 喈曕喈侧喁嵿喈曕瘉喈む喈喈侧瘝 喈囙喁嵿喈赤喈苦喈距 喈喈班喈 喈喈む喈瘝喈瘓 喈忇喁嵿喈熰瘉喈む瘝喈む喈喁? 喈囙喁嵿喈距疅喁嵿畷喈赤喈侧瘝 喈喈掂喈距畷 喈曕瘒喈熰瘝喈曕喁嵿喈熰瘉喈瘝 喈曕瘒喈赤瘝喈掂喈曕喁 喈囙喁.
SARS-CoV-2 喈庎喁嵿喈む瘉 鈥樴畷喁娻喁嬥喈 喈掂瘓喈班喁嶁 喈庎喈瘝喈疅喁佮喁 喈掂瘓喈班喁 喈曕瘉喈熰瘉喈瘝喈喁嵿喈苦喁 喈夃喁嵿喈熰畽喁嵿畷喁佮喁. 喈囙喁嵿喁堗喈膏瘝 喈呧喁嵿喈, 喈瘈喈熰瘝喈熰, 喈曕喈, 喈喁嵿喁佮喁 喈熰瘑喈侧瘝喈熰 喈庎 喈ㄠ喈┼瘝喈曕瘉 喈掂瘒喈编瘉喈疅喁嵿疅 喈囙喈權瘝喈曕喁堗畷喁嵿畷喁娻喁嵿疅喈む瘉. 喈喈苦喈班瘝喈曕喁堗喁佮喁 喈掂喈侧畽喁嵿畷喁佮畷喈赤瘓喈瘉喈瘝 喈む瘖喈编瘝喈编瘉喈瘝 喈喈掂畷喁堗喈距 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤瘝 喈囙喁嵿喁堗喈膏瘝喈曕瘉喈脆瘉喈掂瘓喈氞瘝喈氞喈班瘉喈瘝. 喈囙喁佮喈班瘓, 喈喈苦喈班瘝喈曕喁堗喁嵿喁娻喁嵿喁佮喁 7 喈掂畷喁堗喈距 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤瘝 喈曕喁嵿疅喁佮喈苦疅喈苦畷喁嵿畷喈瘝喈疅喁嵿疅喁佮喁嵿喈. 2003 喈嗋喁 喈嗋喁嵿疅喈苦喁, 喈氞瘈喈┼喈掂喈侧瘝 喈喈掂喈 SARS-CoV, 2012 喈嗋喁 喈嗋喁嵿疅喈苦喁 喈喁嵿喈苦 喈曕喈脆畷喁嵿畷喁 喈ㄠ喈熰瘉喈曕喈苦喁 喈喈掂喈 MERS-CoV 喈喁嵿喁佮喁 喈囙喁嵿喁娻喁佮喁 喈喈掂 喈掂喁佮喁 喈瘑喈班瘉喈ㄠ瘝喈む瘖喈编瘝喈编瘓 喈忇喁嵿喈熰瘉喈む瘝喈む喈 SARS-CoV-2 喈掂瘓喈班喁 喈庎喁嵿喈掂瘓 喈囙喈┼瘉喈赤瘝 喈呧疅喈權瘝喈曕瘉喈瘝.
喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁 喈庎喁嵿喈む瘉 喈喈苦喈班瘝喈曕喁堗喁佮喁 喈瘒喈侧瘉喈瘝 喈氞喈 喈瘉喈赤瘝喈赤喁嵿喈`瘝喈熰瘉喈赤喈曕喁堗喁佮喁 喈む瘖喈编瘝喈编瘉喈瘝 喈瘉喈曕瘝喈曕喈 喈ㄠ瘚喈瘝喈曕瘝喈曕喈班瘉喈喈曕喈苦喁 喈掄喁嵿喈距畷喁佮喁. 喈囙喁 喈喈苦喈班瘝喈曕喁, 喈喁嵿喁 喈掂喈侧畽喁嵿畷喁佮畷喈赤瘝, 喈喈掂瘓喈曕喁, 喈掂瘑喈赤喈距喁嵿畷喈赤瘝, 喈庎喈苦畷喈赤瘝 喈喁嵿喁佮喁 喈 喈曕喈熰瘝喈熰瘉喈掂喈侧畽喁嵿畷喁佮畷喈赤瘝 喈瘚喈┼瘝喈编喈编瘝喈编喈┼瘝 喈氞瘉喈掂喈氞喁嵿喁娻畷喁佮喈, 喈夃喈掂瘉 喈氞喈苦喈距疅喁嵿疅喁佮喁嵿喁娻畷喁佮喈, 喈堗喈侧瘝 喈喁嵿喁佮喁 喈喁嵿喈苦 喈ㄠ喈瘝喈瘉喈む瘝喈む瘖喈曕瘉喈む 喈庎喁嵿喈掂喁嵿喁 喈む瘖喈编瘝喈编畷喁嵿畷喁傕疅喈苦喈む瘉. 喈掂喈侧畽喁嵿畷喁佮畷喈赤喈侧瘒喈瘒, SARS 喈喁嵿喁佮喁 MERS 喈夃喁嵿喈熰畽喁嵿畷喈侧喈 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤喈编瘝喈曕喈 喈掂喈班瘉喈ㄠ瘝喈む瘉喈掂喈權瘝喈曕喈む瘝喈む瘒喈曕瘝喈曕喈距畷 喈掂瘑喈赤喈距喁嵿畷喈赤瘒 喈喈苦喁 喈氞瘑喈瘝喈喁嵿喈熰瘝喈熰瘉喈赤瘝喈赤. 喈囙喁嵿喁堗喈膏瘝喈曕喁, 喈掂喈侧畽喁嵿畷喁-喈喈苦 喈喁嵿喁佮喁 喈喈苦-喈喈苦 喈喈掂瘉喈曕瘓喈喈侧瘝 喈堗疅喁佮喈熰瘉喈瘝喈瘖喈脆瘉喈む瘉 喈囙喁佮喈苦喈苦喁 喈呧喁 喈掂喈侧畽喁嵿畷喁佮喈班瘉 喈ㄠ瘚喈瘝 喈嗋畷喈苦喁嵿喈む瘉. Zoonotic spillover event 喈庎喁嵿喈む瘉, 喈呧喈苦畷 喈ㄠ瘚喈瘝喈曕瘝喈曕喈班瘉喈喈曕喁 喈曕瘖喈`瘝喈 喈掂喈班瘉喈ㄠ瘝喈む瘉喈掂喈權瘝喈曕喈む瘝喈む瘒喈曕瘝喈曕喈距 喈掂瘑喈赤喈距喁嵿畷喈赤瘝 喈瘚喈┼瘝喈 喈掂喈侧畽喁嵿畷喁佮畷喈赤瘝, 喈瘉喈む喈 喈掂喈班瘉喈ㄠ瘝喈む瘉喈掂喈權瘝喈曕喈曕喈距 喈喈苦喈班瘝喈曕喁嬥疅喁 喈む瘖喈熰喁嵿喁佮畷喁娻喁嵿喁佮喁嵿喁嬥喁 喈忇喁嵿喈熰瘉喈瘝 喈む瘖喈编瘝喈编瘉 喈嗋畷喁佮喁.
喈庎喁嵿喈距喈距喈苦喁佮喁 喈掂喈侧畽喁嵿畷喁佮畷喈赤喈侧喈班瘉喈ㄠ瘝喈む瘉 喈喈苦喈班瘉喈曕瘝喈曕瘉 喈囙喁嵿喈班喁佮畷喁 喈囙疅喈瘝喈瘑喈 喈掂瘓喈班喈苦喁佮喁 喈瘉喈曕瘝喈曕喈 喈喈苦喈距 喈喈编瘝喈编畽喁嵿畷喈赤瘝 喈庎喁佮喁 喈喈编喁嵿喁佮畷喈赤瘝 喈囙疅喈瘝喈瘑喈编瘉喈む喁 喈呧喈氞喈喈距畷喁佮喁. 喈ㄠ瘚喈瘝喈む瘝喈む瘒喈曕瘝喈曕畷喁嵿畷喁佮疅喈苦喁嵿喁娻畷喁堗喈苦喁 喈囙喁佮喁嵿喁 喈む瘖喈编瘝喈编喈 喈ㄠ瘚喈瘝喈曕瘝喈曕喈班瘉喈喈曕喁 喈掂喈班瘉喈ㄠ瘝喈む瘉 喈掂喈權瘝喈曕喈曕瘉喈熰喈む瘝喈む瘖喈曕瘓喈喈侧瘝 喈む瘖喈编瘝喈编喈距喁, 喈む瘖喈编瘝喈编喈喁 喈曕瘋喈 喈瘚喈曕喈距喁. 喈瘒喈侧瘉喈瘝 喈氞喈 喈氞喁嵿喈班瘝喈瘝喈畽喁嵿畷喈赤喈侧瘝 喈喈掂瘉喈曕瘓 喈囙疅喈瘝喈瘑喈编瘝喈编喈侧瘉喈瘝 喈呧喁 喈喈苦 喈囙喈む瘝喈む喈编瘝喈曕瘉 喈喈む喈瘝喈喁嵿喈掂瘓喈喈 喈囙喁佮畷喁嵿畷喈侧喈瘝.
喈嗋畷喈掂瘒 喈曕瘖喈脆瘉喈瘝喈瘉喈瘝喈喁嵿畷喈侧瘓喈曕瘝喈曕喈 喈掂喈炧瘝喈炧喈┼喁喈 喈掂喈炧瘝喈炧喈┼喈曕喈苦喁 喈曕瘉喈脆瘉喈掂瘖喈┼瘝喈编喈侧瘝 喈溹瘒喈班瘝喈喈苦喈苦喁 喈班瘖喈喁嵿疅喁 喈曕瘚喈氞瘝 喈ㄠ喈编瘉喈掂喈む瘝喈む瘚喈熰瘉 喈囙喁堗喁嵿喁 喈曕喁嵿疅喁佮喈苦疅喈苦喁嵿 喈ㄠ喁喈 喈掂喈炧瘝喈炧喈 喈曕喁嵿疅喁佮喈苦疅喈苦喁嵿喈苦喁 喈嗋畾喁嵿畾喈班喈喈苦畷喁 喈掂喈熰喈瘝 喈む喈┼瘝 喈庎喁嵿? 2019 喈嗋喁 喈嗋喁嵿疅喈苦喁 SARS-CoV-2 喈囙喁 喈喈掂喁佮疅喈┼瘝 喈掂瘑喈赤喈距喁嵿畷喈赤喈侧瘝 喈曕喈`喁嵿喈熰瘉喈瘝 喈囙畷喁嵿畷喁娻喁嬥喈 喈掂瘓喈班喁嵿畷喈赤瘝 喈喁嵿喈苦 喈嗋喁嵿喈瘝 喈呧喈苦畷喈班喈む瘝喈む喁. 喈庎喁嵿喈距喈距喈苦喁佮喁 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁 喈囙喁嵿喁嗋喁佮喁嵿喁娻喁嵿喁 喈忇喁嵿喈熰瘉喈む瘝喈 喈瘉喈┼瘝喈瘒, 2017喈嗋喁 喈嗋喁嵿疅喁 喈む瘖喈熰畷喁嵿畷喈瘝 喈囙喁嵿喈距喈距喁嵿畾喁嵿畾喈苦畷喈赤瘝 喈瘒喈编瘝喈曕瘖喈赤瘝喈赤喁嵿喈熰瘝喈熰瘉 喈掂喁佮畷喈苦喁嵿喈.
喈喈侧瘋喈熰瘝喈熰喈曕喈距 喈掂瘑喈赤喈距喁嵿畷喈赤瘝 (Chiroptera), 喈夃喈曕喈距喈苦 喈班瘈喈む喈喈侧瘝 2喈嗋喈む瘉 喈呧喈苦畷 喈囙喈瘝喈喁嵿喈曕瘓喈瘓喈瘓喈曕瘝 喈曕瘖喈`瘝喈 喈撪喁 喈掂喁佮喈瘝 喈嗋畷喁佮喁. 喈囙喈權瘝喈曕瘓喈喈侧瘝 喈掂喈脆瘉喈瘝 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喈苦喁 Yinpterochiroptera 喈喁嵿喁佮喁 Yangochiroptera 喈庎喁佮喁 喈囙喈`瘝喈熰瘉 喈夃喈掂喁佮喈權瘝喈曕喁堗畾喁嵿畾喁囙喁嵿喁嵿 喈掂瘑喈赤喈距喁嵿畷喈赤瘝 喈呧喈苦畷喈喈 喈曕喈`喁嵿喈熰瘉喈掂喁佮疅喈┼瘝 喈囙喈權瘝喈曕瘓喈喈侧瘝 喈曕喈`喁嵿喈熰瘉喈瘝 31 喈喈侧瘋喈熰瘝喈熰 喈囙喈權瘝喈曕喈苦喁 1/3 喈畷喁佮喈苦喁 喈囙喁 喈喈班喈苦喈苦喈苦喁嵿喁佮喈瘝喈疅喁佮喁嵿喁佮畷喈苦喁嵿喈. 喈掂瘑喈赤喈距喁嵿畷喈赤喈┼瘝 喈囙喈瘝喈喁嵿喈曕瘓喈瘓 喈喁嵿喁佮喁 喈呧喈编瘝喈编喈┼瘝 喈氞喈编喁嵿喈瘝喈氞畽喁嵿畷喈赤喈 喈ㄠ瘈喈`瘝喈 喈む瘋喈班喁嵿喈苦喁嵿畷喁 喈喈曕瘝喈曕畷喁嵿畷喁傕疅喈苦喈瘓, 喈囙疅喈瘝喈瘑喈喁嵿喁 喈ㄠ疅喈む瘝喈む瘓, 喈曕瘋喈熰喈掂喈脆瘉喈瘝 喈ㄠ疅喈む瘝喈む瘓, 喈庎喁嵿喈掂瘓 喈囙喁 喈囙喈编瘝喈曕瘓喈喈曕喁 喈掂瘓喈班喁嵿畷喈赤喈编瘝喈曕瘉 喈掂喈班瘉喈ㄠ瘝喈む瘉 喈掂喈權瘝喈曕喈む瘝喈む瘒喈曕瘝喈曕喈距畷 喈呧喁堗 喈曕喈班喈喈曕喈┼瘝喈编. 喈掂瘑喈赤喈距喁嵿畷喈赤瘝 喈喁嵿喁佮喁 喈掂瘓喈班喁嵿畷喈赤喈┼瘝 喈囙喁堗喁 喈喈苦喈距喈瘝 喈喁嵿喈 喈曕喁嵿喁 喈喈苦喈班瘝喈曕喁佮畷喁嵿畷喁 喈む瘖喈编瘝喈编瘉喈瘝 喈掂喈侧畽喁嵿畷喁佮喈班瘉 喈ㄠ瘚喈瘝喈曕喁 喈喁嵿喈 喈呧喈苦喈む喁嵿畷喁 喈囙喁嵿喈曕瘓喈喈 喈む喈苦喁嵿喈┼瘝喈瘓 喈掂喈瘝喈ㄠ瘝喈 喈掂喈班瘉喈ㄠ瘝喈む瘉喈掂喈權瘝喈曕喈曕喁堗喁嵿喈编瘝喈编 喈曕喁嵿喈む瘉 喈掂瘓喈班喁嵿畷喈赤瘝 喈氞喁嵿喈ㄠ瘝喈む喈距 喈曕喁嵿畷喁堗喈苦喁 喈瘉喈曕瘝喈曕喈 喈囙疅喈瘝 喈掂畷喈苦畷喁嵿畷喈苦喁嵿喈む瘉.
喈瘒喈侧瘉喈瘝, 喈掂瘓喈班喁 喈曕疅喈む瘝喈む喁嵿喈熰瘉喈瘝 喈瘖喈编喈瘉喈编瘓喈曕喁 喈喁嵿喁佮喁 喈掂瘓喈班喁-喈掂喈班瘉喈ㄠ瘝喈む瘉喈掂喈權瘝喈曕 喈囙疅喁堗喈苦喁堗畷喈赤瘝 喈喁嵿喈苦 喈瘒喈瘝喈疅喁佮喁嵿喈疅喁嵿疅 喈呧喈苦喁, 喈掂瘓喈班喁嵿畷喈赤喈编瘝喈曕瘉 喈庎喈苦喈距 喈喁佮喁嵿喁佮畷喈赤瘝 喈喁嵿喁佮喁 喈む疅喁佮喁嵿喁傕畾喈苦畷喈赤瘓 喈曕喁嵿疅喁佮喈苦疅喈苦喁嵿喈む喈侧瘉喈瘝 喈庎喈苦喁嵿畷喈距 喈瘑喈班瘉喈ㄠ瘝喈む瘖喈编瘝喈编瘉喈曕喁 喈氞喈距喈苦喁嵿喈む喁嵿畷喈距 喈嗋喈む瘝喈む畽喁嵿畷喈赤喈编瘝喈曕瘉喈瘝 喈喈班喈 喈夃喈掂喈喈 喈呧喁堗喁佮喁. 喈呧喁喈 喈囙喈瘝喈喁嵿喈曕瘓喈瘓 喈曕喈班喈喈 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喈苦喁 喈喁佮喁嵿喁佮 喈班瘈喈む喈喈侧瘝 喈瘉喈曕瘝喈曕喈喁嵿喁佮喈瘝 喈瘑喈编瘉喈瘝 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁 喈夃疅喁嵿喈 喈 喈ㄠ瘚喈瘝喈曕瘝喈曕喈班瘉喈喈曕喁 喈曕喈`喁嵿喈熰瘉喈瘝 喈庎喁佮喁 喈曕喁佮喁佮畷喁嬥喁 喈掂喈炧瘝喈炧喈┼喈曕喁 喈曕瘉喈脆瘉 喈掂瘑喈编瘝喈编喈曕喈喈 喈瘉喈┼瘝喈掂瘓喈む瘝喈む喈班瘝. 喈呧喈编瘝喈曕喈`畽喁嵿畷 喈瘒喈编瘝喈曕瘉喈编喈瘝喈喈熰瘝喈 喈曕喁佮喁佮畷喁嬥喁 喈瘓喈喁嵿喈熰瘉喈む瘝喈む 喈嗋喈距喁嵿畾喁嵿畾喈 喈瘉喈┼瘝喈┼瘑喈熰瘉喈曕瘝喈曕喁嵿喈熰瘝喈熰喁. 喈囙喁 喈氞喁嵿喈ㄠ瘝喈む喈距 喈曕喁嵿畷喁堗畾喁嵿畾喁嗋喈编瘝喈喈熰瘉喈曕喁 喈掂瘑喈掂瘝喈掂瘒喈编瘉 喈囙喈む瘝喈む瘓喈氞瘝喈氞瘒喈班瘝喈ㄠ瘝喈 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喁 喈掄喁嵿喈距畷 喈撪喈苦疅喈曕瘝喈曕喈侧喈苦喈距畷 喈掂喈脆瘉喈瘝 喈囙喈權瘝喈曕瘓, 喈曕瘖喈膏瘝喈侧喈ㄠ瘝喈む瘓喈喈侧瘝 喈囙喁佮畷喁嵿畷喁佮喁 喈掂喁佮喁 喈曕喁嵿畷喁 喈曕瘉喈曕瘓喈喈侧瘝 喈瘒喈编瘝喈曕瘖喈赤瘝喈赤喁嵿喈熰瘝喈熰.
2018 喈喁嵿喁佮喁 2019喈嗋喁 喈嗋喁嵿疅喁佮畷喈赤喈侧瘝 喈囙疅喈瘝喈瘑喈编瘝喈 3 喈曕喈氞瘝喈氞瘑喈喁嵿喈距疅喁佮畷喈赤喈侧瘝 Miniopterus, Rousettus, Hipposideros, 喈喁嵿喁佮喁 Rhinolophus 喈囙喈權瘝喈曕喁堗畾喁嵿畾喁囙喁嵿喁嵿 395 喈掂瘑喈赤喈距喁嵿畷喈赤瘝 喈喈熰喈曕瘝喈曕喁嵿喈熰瘝喈熰瘉 喈喈曕瘝喈曕瘉喈熰喁嵿畾喈距喁 喈む瘉喈熰瘓喈瘝喈瘉喈曕瘝喈曕喁 喈喁嵿喁佮喁 喈 喈喈む喈班喈曕喁 喈囙喁堗畷喈赤喈熰喈苦喁佮喁嵿喁 喈氞瘒喈曕喈苦畷喁嵿畷喈瘝喈疅喁嵿疅喈. 喈囙喁嵿喈距喈苦喈苦畷喈赤喈侧瘝 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤瘓 喈囙喈權瘝喈曕喈`瘝喈喈编瘝喈曕喈 nested PCR 喈瘉喈编瘓 喈喁嵿喁佮喁 喈掂瘒喈编瘉 喈 喈瘋喈侧畷喁嵿畷喁傕喁嵿喁 喈む瘖喈脆喈侧瘝喈ㄠ瘉喈熰瘝喈 喈瘉喈编瘓喈曕喁 喈瘉喈┼瘝喈┼瘑喈熰瘉喈曕瘝喈曕喁嵿喈熰瘝喈熰 喈囙喁嵿喈距喈距喁嵿畾喁嵿畾喈苦喈苦喁 喈瘉喈熰喈掂喈侧瘝 喈囙喈權瘝喈曕瘓喈喈侧瘝 喈瘉喈む喁嵿喁佮喁堗喈距畷, 伪 喈喁嵿喁佮喁 尾 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁 喈掂畷喁 喈掂瘓喈班喁嵿畷喈赤瘓 喈瘉喈编瘓喈瘒, M. fuliginosus 喈喁嵿喁佮喁 R. leschenaultii 喈庎喁佮喁 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喈苦喁 喈曕喁嵿疅喁佮喈苦疅喈苦喁嵿喈┼喁.
喈囙喁嵿喈距喈距喁嵿畾喁嵿畾喈苦喈苦喁 喈瘉喈熰喈掂瘉喈曕喈距喈, 喈曕喁嵿疅喁佮喈苦疅喈苦畷喁嵿畷喈瘝喈疅喁嵿疅 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤瘝 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喈苦喁嵿畷喁 喈む喈苦喁嵿喈┼瘝喈瘓 喈掂喈瘝喈ㄠ瘝喈む喁堗喁佮喁, 喈囙喁 喈掂喁佮喁 喈曕喁嵿畷喁 喈曕瘉喈曕瘓喈喈侧瘝 喈撪喈苦疅喈掂喈脆喈曕喁 喈嗋喈苦喁佮喁 喈囙喈權瘝喈曕喈苦喁嵿畷喈苦疅喁堗喁囙喈距 喈喈掂瘉喈曕瘓 喈曕喈`喁嵿喈熰喈苦喁嵿喁 喈庎喁嵿喈掂瘓喈瘒 喈嗋畷喁佮喁. 喈氞喈 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喁 喈喈む瘝喈む喈班喁 SARS-CoV 喈瘚喈┼瘝喈 喈喈苦喈班瘝喈曕喈苦喁嵿畷喁 喈む瘈喈權瘝喈曕瘉 喈掂喈赤瘓喈掂喈曕瘝喈曕瘉喈瘝 喈む瘖喈编瘝喈编瘓 喈忇喁嵿喈熰瘉喈む瘝喈む瘉喈瘝 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤喈编瘝喈曕喈 喈む瘒喈曕瘝喈曕喈距畷 喈氞瘑喈喁嵿喈熰瘉喈曕喈┼瘝喈编 喈庎喁佮喁 喈曕喁佮喁佮畷喁嬥喁 喈囙喈┼瘝 喈瘋喈侧喁, 喈夃喁佮喈苦喁嵿喈熰瘉喈む瘝喈む喁嵿喈熰瘉喈曕喈编喁. 喈呧喁嵿喁佮疅喈┼瘝, 喈氞瘋喈脆喁嵿畷喈距喈`喈曕喁 喈喁嵿喁佮喁 喈掂瘑喈赤喈距喁嵿畷喈赤喈┼瘝 喈掂喈脆喈熰喁嵿喈苦喁佮喁 喈喈苦 喈娻疅喁佮喁佮喈侧瘝 喈庎喁嵿喈掂喁嵿喈苦喈距喁囙喁 喈囙喁嵿喈曕瘓 喈曕瘖喈班瘚喈┼ 喈掂瘓喈班喁嵿畷喈赤瘝 喈喈苦喈班瘉喈曕瘝喈曕瘉 喈喈掂瘉喈曕喈┼瘝喈编 喈庎喁佮喁 喈曕喁佮喁嵿喁 喈瘉喈┼瘝喈掂瘓喈曕瘝喈曕喁嵿喈熰瘉喈曕喈┼瘝喈编喁. 喈曕瘉喈编喈瘝喈喈熰瘝喈 喈嗋喈距喁嵿畾喁嵿畾喈苦喈苦喁嵿喈熰 喈掂瘑喈赤喈距喁 喈囙喈權瘝喈曕喁 喈喁嵿喁佮喁 喈呧喈编瘝喈编喈┼瘝 喈掂瘓喈班喁嵿畷喈赤瘓喈瘝喈喁嵿喈苦 喈曕喁嵿畷喁堗畷喈赤瘝, 喈呧喁嵿喁佮疅喈┼瘝 喈呧喁 喈呧喈编瘝喈编喈┼瘝 喈囙喈编瘝喈曕瘓喈氞瘝喈氞瘋喈脆喁佮疅喈┼瘝 喈忇喁嵿喈熰瘉喈む瘝喈む喈曕瘝喈曕瘖喈赤瘝喈赤瘉喈瘝 喈囙疅喁堗喈苦喁堗畷喈赤瘝 喈喁嵿喈苦 喈曕喁嵿畷喁堗畷喈赤瘝 喈嗋畷喈苦 喈囙喈`瘝喈熰瘉喈瘝 喈庎喈苦喁嵿畷喈距喈む瘝喈む喈侧瘝 喈掂喈侧畽喁嵿畷喁佮喈班瘉 喈ㄠ瘚喈瘝 喈喈掂喁 喈む疅喁佮喁嵿喈む喁嵿畷喁 喈喈 喈瘉喈曕瘝喈曕喈喈距 喈曕喈班喈苦畷喈赤喈曕瘉喈瘝.
喈溹瘒喈班瘝喈喈苦喈苦喁 喈班瘖喈喁嵿疅喁 喈曕瘚喈氞瘝 喈ㄠ喈编瘉喈掂喈む瘝喈む喈┼瘝 喈夃喈苦喈苦喈侧瘝 喈呧畾喁嵿畾喁佮喁佮喁嵿喈侧瘝喈曕喁 喈喁嵿喁佮喁 喈掂喈氞瘒喈 喈ㄠ瘚喈瘝喈曕瘝喈曕喈班瘉喈喈曕喈苦喁嵿畷喈距 喈ㄠ喈侧瘓喈喁嵿喈苦喁, 喈呧喁喈 喈ㄠ瘚喈瘝喈曕喈班瘉喈喈曕喈苦喁嵿畷喈距 喈喈班喈掂瘓喈氞瘝喈氞瘒喈班瘝喈ㄠ瘝喈 喈氞瘑喈侧瘝喈掂 喈む瘒喈班瘒喈膏瘝 喈瘉喈膏喈┼喈曕瘝 喈喁嵿喁佮喁 喈曕瘖喈脆瘉喈瘝喈瘉喈瘝喈喁嵿畷喈侧瘓喈曕瘝喈曕喈 喈夃喈苦喁 喈囙喈氞喈喈掂喈喁, 喈瘋喈侧畷喁嵿畷喁傕喁嵿喁 喈夃喈苦喈苦喈侧瘝, 喈喁嵿喁佮喁 喈夃喈苦喁 喈む瘖喈脆喈侧瘝喈ㄠ瘉喈熰瘝喈喈苦喈侧喈编瘝喈曕喈 喈ㄠ喈编瘉喈掂喈む瘝喈む瘓喈氞瘝喈氞瘒喈班瘝喈ㄠ瘝喈 喈氞瘑喈侧瘝喈掂 喈む瘒喈溹喈┼瘈 喈瘑喈班瘒喈班 喈嗋畷喈苦喁嬥喈苦喁 PhD 喈曕喁嵿畷喁堗畷喁嵿畷喈距畷 喈瘒喈编瘝喈曕瘖喈赤瘝喈赤喁嵿喈熰瘝喈 喈囙喁嵿喈距喈距喁嵿畾喁嵿畾喈 喈夃喈 喈氞瘉喈曕喈む喈 喈喈む瘉喈曕喈瘝喈瘉 喈ㄠ瘑喈编喈瘉喈编瘓喈喈┼瘝 Identification of Emerging Agents (IDEA) 喈氞瘑喈喁嵿喈苦疅喁嵿疅喈む瘝喈む喈┼瘝 喈曕瘈喈脆瘝 喈瘒喈编瘝喈曕瘖喈赤瘝喈赤喁嵿喈熰瘝喈熰喁. 喈曕瘖喈脆瘉喈瘝喈瘉喈瘝喈喁嵿畷喈侧瘓喈曕瘝喈曕喈 喈掂喈炧瘝喈炧喈┼喁喈 喈掂喈侧畽喁嵿畷喈苦喈侧瘝 喈喁嵿喁佮喁 喈氞瘋喈脆喈苦喈侧瘝 喈む喈`瘓喈曕瘝喈曕喈む瘝喈む喈┼瘝 IDEA 喈嗋喁嵿喁佮畷喁嵿畷喁傕疅喈む瘝喈む瘓 喈氞瘒喈班瘝喈ㄠ瘝喈 喈撪喁嵿喁佮喁嗋喁嵿 喈瘒喈班喈氞喈班喈喁 Prof ., 喈瘒喈班喈氞喈班喈喁 Prof. , 喈瘒喈班喈氞喈班喈喁 Prof. 喈囙喁嬥畷喁嵿畷 喈瘑喈班瘒喈班 喈喁嵿喁佮喁 喈む喈班瘉 喈氞喈┼瘝 喈氞喈编喈掂喁嵿喈 喈嗋畷喈苦喁嬥喁 喈喁嵿喁佮喁 喈掂疅 喈曕瘖喈脆瘉喈瘝喈瘉 喈瘚喈む喈 喈掂瘓喈む瘝喈む喈畾喈距喁堗喈苦喁 喈掂瘓喈む瘝喈む喈喁 Dr 喈曕喈┼ 喈喈班瘒喈喈瘝喈 喈庎喁嵿喈掂喁嵿畷喈赤喈┼喈侧瘝 喈囙喁嵿喈距喈距喁嵿畾喁嵿畾喈 喈掂瘑喈编瘝喈编喈曕喈喈 喈ㄠ喈编瘓喈掂瘒喈编瘝喈编喁嵿喈熰瘝喈熰喁.
喈曕瘖喈脆瘉喈瘝喈瘉喈瘝喈喁嵿畷喈侧瘓喈曕瘝喈曕喈 喈掂喈炧瘝喈炧喈┼喁喈熰喁 喈庎喁嵿 喈掂畷喁堗喈苦喁 喈嗋喈距喁嵿畾喁嵿畾喈苦畷喁嵿畷喁佮喁佮喈苦喁嵿畷喁 喈庎喈む瘉 喈掂喈脆瘝喈む瘝喈む瘉喈曕瘝喈曕喁 喈む瘑喈班喈掂喈む瘝喈む瘉喈曕瘝喈曕瘖喈赤瘝喈掂喁嬥疅喁, 喈む喈编喁堗喈距 喈囙畷喁嵿畷喁佮喁 喈庎喈む瘉 喈瘈喈熰喁嵿喁 喈氞喈班瘝喈ㄠ瘝喈む喁 喈庎喁嵿喈む瘓喈瘉喈瘝 喈瘑喈班瘉喈喈む喁嵿喁佮疅喈┼瘝 喈む瘑喈班喈掂喈む瘝喈む瘉喈曕瘝喈曕瘖喈赤瘝喈曕喈编瘚喈瘝. 喈忇喁嗋喈苦喁, 喈ㄠ喈瘝 喈ㄠ喈曕喁嵿畷喈距喈む瘝喈む喈侧瘝 喈庎喈苦喁嵿畷喁娻喁嵿喁佮喁 喈 喈氞喈距喁嵿畷喈赤喈编瘝喈曕瘉 喈掂喈炧瘝喈炧喈┼喁嵿喈苦喁 喈瘋喈侧喁 喈掂喈熰瘓 喈曕喈`喈距喁 喈庎喁嵿喈む喈侧瘝 喈庎喁嵿喈苦 喈愢喈瘉喈瘝 喈囙喁嵿喁.
References: Muzeniek, T., Perera, T., Siriwardana, S., Bas, D., Kaplan, F., 脰ruc, M., Becker-Ziaja, B., Schwarz, F., Premawansa, G., Premawansa, S., Perera, I., Yapa, W., Nitsche, A., & Kohl, C. (2021). Detection of Alpha- and Betacoronaviruses in Miniopterus fuliginosus and Rousettus leschenaultii, two species of Sri Lankan Bats. Vaccines, 9(6), 650.
Image Courtesy:
Title image:
Content image: Ms. Thejanee Perera.
Written by: L.B. Sadani Panchasika
