Scientists Race to Save Florida Coral Reef from Mysterious Disease

Dead coral sit on the ocean bed in the Straits of Florida near Key Largo, Florida, on September 23, 2021, as the reef has been suffering from a mysterious disease first discovered in 2014 CHANDAN KHANNA AFP
Dead coral sit on the ocean bed in the Straits of Florida near Key Largo, Florida, on September 23, 2021, as the reef has been suffering from a mysterious disease first discovered in 2014 CHANDAN KHANNA AFP
TT
20

Scientists Race to Save Florida Coral Reef from Mysterious Disease

Dead coral sit on the ocean bed in the Straits of Florida near Key Largo, Florida, on September 23, 2021, as the reef has been suffering from a mysterious disease first discovered in 2014 CHANDAN KHANNA AFP
Dead coral sit on the ocean bed in the Straits of Florida near Key Largo, Florida, on September 23, 2021, as the reef has been suffering from a mysterious disease first discovered in 2014 CHANDAN KHANNA AFP

At a laboratory in central Florida, biologist Aaron Gavin uses tiny pipettes to carefully feed shrimp to more than 700 corals living in huge saltwater tanks, with sunlight-mimicking lamps glowing above them.

The work of the scientists here could be the last chance to save the species that make up the only coral reef in the United States' continental waters, said AFP.

Gavin and his team have diligently recreated the coral reef habitat found in the waters off the southern tip of the state, complete with artificial currents and local fish.

They hope to prevent the 18 species of coral in their care from suffering the same mysterious ailment, called SCTLD (stony coral tissue loss disease), that is afflicting their wild cousins.

Among the sprawling mangroves and darting schools of fish off the Florida Keys, the damaged corals -- normally dark -- now appear as large white patches on the floor of the Atlantic Ocean.

The situation is the same all along the Florida Reef Tract, which stretches 360 miles (580 kilometers) from the Dry Tortugas, which are the westernmost islands in the Florida Keys, all the way to the town of St Lucie, located about 120 miles north of Miami.

"It's heartbreaking, and I think the most alarming (thing) about it is that most people don't know it's happening," said Michelle Ashton, the communications director of the Fish and Wildlife Foundation of Florida.

- Rescue -
What Gavin and his colleagues discover at the Florida Coral Rescue Center could change the future of the state's marine ecosystems.

"We are holding the corals safely and healthy in our care," explained Justin Zimmerman, the director of the Orlando-based lab, which opened in 2020 and is managed by aquatic theme park company SeaWorld.

"If they were still in the wild, up to 90 percent of them would have been dead," Zimmerman said.

The potentially catastrophic SCTLD was first discovered in 2014, near Miami, and has continued to spread rapidly, killing about half of stony coral species, a cornerstone of marine biodiversity.

The disease, whose causes are unknown, is now plaguing the animals further into the Caribbean, all the way in Mexico and Belize.

The rescue lab's work is part of a project created in 2018 by the National Oceanic and Atmospheric Association and the Florida Fish and Wildlife Conservation Commission, and includes dozens of public and private organizations.

The group, faced with the threat of more than 20 of the 45 species of hard corals in the area going extinct, devised the unprecedented plan to extract healthy corals from the region's waters and care for them in these artificially equipped aquariums in the hope they can be returned to their wild habitats in the future.

"You are looking at the future of Florida Reef Tract in this room," Aston said of the corals in the Orlando aquariums. "And their grandchildren will be what goes back out to the water."

- Return to the sea –
The first part of the rescue plan has allowed wildlife authorities to save nearly 2,000 colonies of corals, now stored at more than 20 institutions in 14 different states.

The second part of the plan requires researchers to successfully return the corals to the ocean -- though such an operation would likely take place a long time from now, as corals reproduce very slowly.

The scientists are studying the genetics of the rescued animals in an effort to cultivate new specimens that could be more resistant to disease, as well as other threats such as warming water temperatures and pollution.

The success or failure of these endeavors could have huge consequences for the region.

Stony corals, made up of limestone skeletons, are what create coral reefs, which in turn provide a home for a quarter of marine life.

Plus, the structures are natural barriers between the open ocean and land, reducing the strength of waves that hit the coastline, especially during hurricanes and other storms.

And a hit to coral health could mean a hit to Florida tourism revenue, as one study estimated that visitors drawn to the state for fishing and diving along the reef generate $8.5 billion.

Key Largo resident Steve Campbell, 59, is worried about what comes next. He is sitting next to the small tourist boat he captains, currently anchored in the port.

He said the coral disease has already had an impact on his business.

"I've been in the Florida Keys now for 20 years, and I'm out on the water every day," he said.

"Obviously we make our living out here, so we take people out to the reef for the enjoyment of seeing the reef."

"So for us it's extremely important."



Jungle Music: Chimp Drumming Reveals Building Blocks of Human Rhythm

In this photo provided by researchers, a wild male chimpanzee produces a pant-hoot call to elicit a response from distant group members and reunite with them in the Budongo Forest of Uganda in June 2016. (Adrian Soldati via AP)
In this photo provided by researchers, a wild male chimpanzee produces a pant-hoot call to elicit a response from distant group members and reunite with them in the Budongo Forest of Uganda in June 2016. (Adrian Soldati via AP)
TT
20

Jungle Music: Chimp Drumming Reveals Building Blocks of Human Rhythm

In this photo provided by researchers, a wild male chimpanzee produces a pant-hoot call to elicit a response from distant group members and reunite with them in the Budongo Forest of Uganda in June 2016. (Adrian Soldati via AP)
In this photo provided by researchers, a wild male chimpanzee produces a pant-hoot call to elicit a response from distant group members and reunite with them in the Budongo Forest of Uganda in June 2016. (Adrian Soldati via AP)

Like humans, chimpanzees drum with distinct rhythms - and two subspecies living on opposite sides of Africa have their own signature styles, according to a study published in Current Biology.

Previous work showed chimpanzees pound the huge flared buttress roots of rainforest trees to broadcast low‑frequency booms through dense foliage.

The idea that ape drumming might hold clues to the origins of human musicality has long fascinated scientists, but collecting enough clean data amid the cacophony of the jungle had, until now, proven elusive.

“Finally we've been able to quantify that chimps drum rhythmically - they don't just randomly drum,” lead author Vesta Eleuteri of the University of Vienna told AFP.

The findings lend fresh weight to the theory that the raw ingredients of human music were present before our evolutionary split from chimpanzees six million years ago.

For the new study, Eleuteri and colleagues - including senior authors Catherine Hobaiter of the University of St Andrews in the UK and Andrea Ravignani of Sapienza University in Rome - compiled more than a century's worth of observational data.

After cutting through the noise, the team focused on 371 high-quality drumming bouts recorded from 11 chimpanzee communities across six populations living in both rainforest and savannah-woodland habitats across eastern and western Africa.

Their analysis showed that chimpanzees drum with definitive rhythmic intent - the timing of their strikes is not random.

Distinct differences also emerged between subspecies: western chimpanzees tended to produce more evenly timed beats, while eastern chimpanzees more frequently alternated between shorter and longer intervals.

Western chimps also drummed more frequently, kept a quicker tempo, and began drumming earlier in their signature chimp calls, made up of rapid pants and hoots.

The researchers do not yet know what is driving the differences - but they propose that it might signify differences in social dynamics.

The western chimps' faster, predictable pulse might promote or be evidence of greater social cohesion, the authors argue, noting that western groups are generally less aggressive toward outsiders.

By contrast, the eastern apes' variable rhythms could carry extra nuance - handy for locating or signaling companions when their parties are more widely dispersed.

Next, Hobaiter says she would like to study the data further to understand whether there are intergenerational differences between rhythms within the same groups.

“Music is not only a difference between different musical styles, but a musical style like rock or jazz, is itself going to evolve over time,” she said.

“We're actually going to have to find a way to tease apart group and intergenerational differences to get at that question of whether or not it is socially learned,” she said. “Do you have one guy that comes in with a new style and the next generation picks it up?”