Skip to main content
Qatar news agency logo, home page
  • Telegram
  • Whatsapp
  • Twitter
  • Facebook
  • Instagram
  • YouTube
  • SnapChat
  • RSS Feed
  • English flagEnglish
  • العربية flagالعربية
  • Français flagFrançais
  • Deutsch flagDeutsch
  • Español flagEspañol
  • All navigation links
user iconLogin
  • All navigation links
  • Qatar
  • General
  • Economy
  • Miscellaneous
  • Sport
  • Technology
Live Stream
  • Home
  • Qatar
  • General
  • Economy
  • Miscellaneous
  • Sport
  • Technology
  • Reports and Analysis
  • News Bulletin
  • Qatar 2022
  • Qatar 2030
  • Live Stream
  • Video Albums
  • Photo Albums
  • Infographics
  • Department of Foreign Media Affairs
  • Media Organizations
  • QNA Training Center
  • Media Offices
  • Accredited correspondents
  • Events and Exhibitions
  • Important Links
  • Job vancancies

Follow Us On Social Media

  • Telegram
  • Whatsapp
  • Twitter
  • Facebook
  • Instagram
  • YouTube
  • SnapChat
  • RSS Feed
  • About Us
  • Contact Us
  • Browsing
  • Login
  • Terms of Use
  • Privacy Policy
LATEST
Oil Prices Rise Over 9 Percent at Settlement
UAE, Syrian Presidents Discuss Regional Developments in Phone Call
Defense Ministry Announces Successful Interception of Attack Involving 2 Ballistic Missiles, a Cruise Missile, Drones
Five People Killed, Three Wounded in New Israeli Airstrikes on Lebanon
Muslim World League Condemns Continued Israeli Closure of Al Aqsa Mosque to Worshippers

Back News Details

Facebook Twitter Email Pinterest LinkedIn Reddit Whatsapp mail See more…

Chinese Researchers Discover New Pattern in Virus Transmission

Miscellaneous

  • A-
  • A
  • A+
استمع
news

Beijing, December 16 (QNA) - A Chinese research team from the Shenzhen Institutes of Advanced Technology (SIAT) under the Chinese Academy of Sciences has uncovered a new pattern in virus transmission through synthetic biology techniques.

The study, published in the journal Proceedings of the National Academy of Sciences, focuses on the movement patterns of E. coli bacteria and a bacteriophage, M13, that can infect it.

To understand the underlying patterns, researchers used E. coli as the host and M13 bacteriophage as the virus, constructing a system in the lab where the host and virus interact.

By manipulating the host's movement and the virus' infection characteristics through synthetic biology and studying them using mathematical models, the researchers discovered that the faster the directional movement of bacterial populations, the more easily infected bacteria are discarded by the moving group, eventually leading to a population composed entirely of healthy bacteria.

The research provides insights into a deeper understanding of the patterns of infectious disease transmission, said Fu Xiongfei with the SIAT, corresponding author of the paper.

Previous studies generally believed that animal migration accelerates the spread of viruses. However, new research has found that certain animals, like monarch butterflies, have a reduced probability of disease infection during long-distance migration. (QNA)


Culture

International

Science

Qatar News Agency
chat
qna logo

Hello! How can we help?

Beta
close
Download QNA app
Download add from Google store Download add from Apple store
  • Telegram
  • Whatsapp
  • Twitter
  • Facebook
  • Instagram
  • YouTube
  • SnapChat
  • RSS Feed
  • Home
  • Qatar
  • General
  • Economy
  • Miscellaneous
  • Sport
  • Technology
  • Reports and Analysis
  • News Bulletin
  • Qatar 2022
  • Qatar 2030
  • Live Stream
  • Video Albums
  • Photo Albums
  • Infographics
  • Department of Foreign Media Affairs
  • Media Organizations
  • Media Offices
  • Accredited correspondents
  • QNA Training Center
  • Events and Exhibitions
  • Important Links
  • Job vancancies
Get the Latest News

Get a daily email featuring the latest talk, plus a quick mix of trending content.

By subscribing, you understand and agree that we will store, process and manage your personal information according to our Privacy Policy

All rights reserved to © 2025 Qatar News Agency

Terms of Use | Privacy Policy

Cookies help us improve your website experience. By using our website, you agree to our use of cookies.