‘Virus Hunters’ Track Threats to Head off Next Pandemic 

An adult tick (R) is pictured beside a nymph (young tick) (L) in the laboratory of the INRA (Institut National de la Recherche Agronomique) in Champenoux, eastern France. (AFP)
An adult tick (R) is pictured beside a nymph (young tick) (L) in the laboratory of the INRA (Institut National de la Recherche Agronomique) in Champenoux, eastern France. (AFP)
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‘Virus Hunters’ Track Threats to Head off Next Pandemic 

An adult tick (R) is pictured beside a nymph (young tick) (L) in the laboratory of the INRA (Institut National de la Recherche Agronomique) in Champenoux, eastern France. (AFP)
An adult tick (R) is pictured beside a nymph (young tick) (L) in the laboratory of the INRA (Institut National de la Recherche Agronomique) in Champenoux, eastern France. (AFP)

A global network of doctors and laboratories is working to pinpoint emerging viral threats, including many driven by climate change, in a bid to head off the world's next pandemic.

The coalition of self-described "virus hunters" has uncovered everything from an unusual tick-borne disease in Thailand to a surprise outbreak in Colombia of an infection spread by midges.

"The roster of things that we have to worry about, as we saw with Covid-19, is not static," said Gavin Cloherty, an infectious disease expert who heads the Abbott Pandemic Defense Coalition.

"We have to be very vigilant about how the bad guys that we know about are changing... But also if there's new kids on the block," he told AFP.

The coalition brings together doctors and scientists at universities and health institutions across the world, with funding from healthcare and medical devices giant Abbott.

By uncovering new threats, the coalition gives Abbott a potential headstart in designing the kinds of testing kits that were central to the Covid-19 response.

And its involvement gives the coalition deep pockets and the ability to detect and sequence but also respond to new viruses.

"When we find something, we're able to very quickly make diagnostic tests at industry level," Cloherty said.

"The idea is to ringfence an outbreak, so that we would be able to hopefully prevent a pandemic."

The coalition has sequenced approximately 13,000 samples since it began operating in 2021.

In Colombia, it found an outbreak of Oropouche, a virus spread by midges and mosquitoes, that had rarely been seen there before.

Phylogenetic work to trace the strain's family tree revealed it came from Peru or Ecuador, rather than Brazil, another hotspot.

"You can see where things are moving from. It's important from a public health perspective," said Cloherty.

- Difficult and costly -

More recently, the coalition worked with doctors in Thailand to reveal that a tick-borne virus was behind a mysterious cluster of patient cases.

"At the time, we didn't know what virus caused this syndrome," explained Pakpoom Phoompoung, associate professor of infectious disease at Siriraj Hospital.

Testing and sequencing of samples that dated back as far as 2014 found many were positive for severe fever with thrombocytopenia syndrome (SFTSV).

"Less than 10 patients had (previously) been diagnosed with SFTSV in Thailand... we don't have PCR diagnosis, we don't have serology for this viral infection diagnosis," Pakpoom told AFP.

Diagnosing it "is difficult, labor intensive and also is costly".

And there is a growing need to track these threats as climate change expands the range of infectious disease globally.

The link between climate change and infectious disease is well-established and multi-faceted.

Warmer conditions allow vectors like mosquitoes to live in new locations, more rain creates more breeding pools, and extreme weather forces people into the open where they are more vulnerable to bites.

Human impact on the planet is also driving the spread and evolution of infectious disease in other ways: biodiversity loss forces viruses to evolve into new hosts, and can push animals into closer contact with humans.

- 'You have to be vigilant' -

Phylogenetic analysis of the SFTSV strain in Thailand gives a snapshot of the complex interplay.

It showed the virus had evolved from one tick with a smaller geographic range into the hardier Asian longhorned tick.

The analysis suggested its evolution was driven largely by pesticide use that reduced the numbers of the original tick host.

Once the virus evolved, it could spread further in part because Asian longhorned ticks can live on birds, which are travelling further and faster because of changing climate conditions.

"It's almost like they're an airline," said Cloherty.

Climate change's fingerprints are in everything from record outbreaks of dengue in Latin America and the Caribbean to the spread of West Nile Virus in the United States.

While the coalition grew from work that preceded the pandemic, the global spread of Covid-19 offered a potent reminder of the risks of infectious disease.

But Cloherty fears people are already forgetting those lessons.

"You have to be vigilant," he said.

"Something that happens in Bangkok could be happening in Boston tomorrow."



Deep-sea Fish Break the Mold with Novel Visual System

A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
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Deep-sea Fish Break the Mold with Novel Visual System

A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS

For more than a century, biology textbooks have stated that vision among vertebrates - people included - is built from two clearly defined cell types: rods for processing dim light and cones for bright light and color. New research involving deep-sea fish shows this tidy division is, in reality, not so tidy.

Scientists have identified a new type of visual cell in deep-sea fish that blends the shape and form of rods with the molecular machinery and genes of cones. This hybrid type of cell, adapted for sight in gloomy light conditions, was found in larvae of three deep-sea fish species in the Red Sea, Reuters reported.

The species studied were: a hatchetfish, with the scientific name Maurolicus mucronatus; a lightfish, named Vinciguerria mabahiss; and a lanternfish, named Benthosema pterotum. The hatchetfish retained the hybrid cells throughout its life. The other two shifted to the usual rod-cone dichotomy in adulthood.

All three are small, with adults measuring roughly 1-3 inches (3-7 cm) long and the larvae much littler. They inhabit a marine realm of twilight conditions, with sunlight struggling to penetrate into the watery depths.

The vertebrate retina, a sensory membrane at the back of the eye that detects light and converts it into signals to the brain, possesses two main types of light-sensitive visual cells, called photoreceptors. They are named for their shape: rods and cones.

"The rods and cones slowly change position inside the retina when moving between dim and bright conditions, which is why our eyes take time to adjust when we flick on the light switch on our way to the restroom at night," said Lily Fogg, a postdoctoral researcher in marine biology at the University of Helsinki in Finland and lead author of the research published in the journal Science Advances.

"We found that, as larvae, these deep-sea fish mostly use a mix-and-match type of hybrid photoreceptor. These cells look like rods - long, cylindrical and optimized to catch as many light particles - photons - as possible. But they use the molecular machinery of cones, switching on genes usually found only in cones," Fogg said.

The researchers examined the retinas of fish larvae caught at depths from 65 to 650 feet (20 to 200 meters). In the type of dim environment they inhabit, rod and cone cells both are usually engaged in the vertebrate retina, but neither works very well. These fish display an evolutionary remedy.

"Our results challenge the longstanding idea that rods and cones are two fixed, clearly separated cell types. Instead, we show that photoreceptors can blend structural and molecular features in unexpected ways. This suggests that vertebrate visual systems are more flexible and evolutionarily adaptable than previously thought," Fogg said.

"It is a very cool finding that shows that biology does not fit neatly into boxes," said study senior author Fabio Cortesi, a marine biologist and neuroscientist at the University of Queensland in Australia. "I wouldn't be surprised if we find these cells are much more common across all vertebrates, including terrestrial species."

All three species emit bioluminescence using small light-emitting organs on their bodies, mostly located on the belly. They produce blue-green light that blends with the faint background light from the sun above. This strategy, called counterillumination, is a common form of camouflage in the deep sea to avoid predators.

"Small fish like these fuel the open ocean. They are plentiful and serve as food for many larger predatory fishes, including tuna and marlin, marine mammals such as dolphins and whales, and marine birds," Cortesi said.

These kinds of fish also engage in one of the biggest daily migrations in the animal kingdom. They swim near the surface at night to feed in plankton-rich waters, then return to the depths - 650 to 3,280 feet (200 to 1,000 meters) - during daytime to avoid predation.

"The deep sea remains a frontier for human exploration, a mystery box with the potential for significant discoveries," Cortesi said. "We should look after this habitat with the utmost care to make sure future generations can continue to marvel at its wonders."


Japan City Gets $3.6 Mn Donation in Gold to Fix Water System

FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
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Japan City Gets $3.6 Mn Donation in Gold to Fix Water System

FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo

Osaka has received an unusual donation -- 21 kilograms of gold -- to pay for the maintenance of its ageing water system, the Japanese commercial hub announced Thursday.

The donation worth $3.6 million was made in November by a person who a month earlier had already given $3,300 in cash for the municipal waterworks, Osaka Mayor Hideyuki Yokoyama told a press conference.

"It's an absolutely staggering amount," said Yokoyama, adding that he was lost for words to express his gratitude.

"I was shocked."

The donor wished to remain anonymous, AFP quoted the mayor as saying.

Work to replace water pipes in Osaka, a city of 2.8 million residents, has hit a snag as the actual cost exceeded the planned budget, according to local media.


Thai Cops Go Undercover as Lion Dancers to Nab Suspected Thief

People gather to watch performers outside Emsphere shopping mall on the first day of the Lunar New Year of the Horse, in Bangkok on February 17, 2026. (Photo by Lillian SUWANRUMPHA / AFP)
People gather to watch performers outside Emsphere shopping mall on the first day of the Lunar New Year of the Horse, in Bangkok on February 17, 2026. (Photo by Lillian SUWANRUMPHA / AFP)
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Thai Cops Go Undercover as Lion Dancers to Nab Suspected Thief

People gather to watch performers outside Emsphere shopping mall on the first day of the Lunar New Year of the Horse, in Bangkok on February 17, 2026. (Photo by Lillian SUWANRUMPHA / AFP)
People gather to watch performers outside Emsphere shopping mall on the first day of the Lunar New Year of the Horse, in Bangkok on February 17, 2026. (Photo by Lillian SUWANRUMPHA / AFP)

Thai police donned a lion dance costume during this week's Lunar New Year festivities to arrest a suspect accused of stealing about $64,000 worth of Buddhist artifacts, police said Thursday.

Officers dressed as a red-and-yellow lion made the arrest on Wednesday evening after receiving a report earlier this month of a home burglary in the suburbs of the capital, Bangkok, AFP reported.

Capital police said the reported break-in involved "numerous Buddhist objects and two 12-inch Buddha statues", along with evidence of repeated attempts to enter the house, according to a statement.

With few leads, police kept watch for weeks before hatching an unusual plan to join a lion dance procession at a nearby Buddhist temple.

"Officers gradually moved closer to the suspect before arresting him," police said.

A video released by police showed the festive lion dancers approaching the suspect before an officer suddenly emerged from the head of the costume and, with help from colleagues, pinned him to the ground.

Police estimated the value of the stolen items at around two million baht ($64,000).

The suspect, a 33-year-old man, has a criminal record involving drug offences and theft, police added.