A new study sheds light on one of nature’s biggest immune mysteries.
It’s a question that has puzzled scientists for years. How can the world’s only winged mammals carry viruses that cause severe disease while rarely becoming seriously ill themselves?
Now researchers at Tulane University, with collaborators at Stanford University and the Centers for Disease Control and Prevention, may have found a reason.
In a study in Science Advances, the research team found that the world’s largest family of bats has two distinct copies of the genes that produce antibodies, the specialized proteins that help the immune system recognize and fight infections. Every other known mammal has only one such set. The discovery opens new avenues for understanding the evolution of immunity and how animals respond to disease.
“We think this discovery is an important piece of the puzzle.”
“We’ve never seen anything like this in a mammal before,” says Hannah Frank, associate professor of ecology and evolutionary biology at Tulane University School of Science and Engineering and corresponding author of the study.
“This completely changes our understanding of how mammalian immune systems can be organized and raises exciting new questions about why bats have been so evolutionarily successful and how they respond to viruses.”
The discovery was made in vesper bats, a group that includes more than 500 species found on every continent except Antarctica. Their remarkable evolutionary success has long intrigued scientists, and this newly discovered antibody system may offer one explanation.
Antibodies are Y-shaped proteins made of two heavy protein chains and two light protein chains. In humans and every other known mammal, those heavy chains are built from a single set of genes. Frank and her collaborators discovered that vesper bats instead possess two separate heavy-chain gene systems, giving them an entirely new way to generate a variety of antibodies.
While researchers have traditionally focused on bats’ innate immune systems, Frank says this study highlights the importance of looking more closely at their adaptive immune systemâthe part responsible for producing antibodies.
“We think this discovery is an important piece of the puzzle,” Frank says.
“It doesn’t fully explain why bats are such effective viral reservoirs, but it reveals a level of immune variety we didn’t know existed and gives us an entirely new direction to explore.”
Bats are critical pollinators, seed dispersers and natural pest controllers but also serve as natural hosts for many viruses, Frank says. Understanding how they coexist with those viruses without becoming ill may eventually help scientists better understand immune responses across species and improve strategies for preventing disease spillover.
“We’ve learned an enormous amount about immunity by studying humans and laboratory mice,” Frank says.
“But the natural world is far more varied than that. Every time we study a species that has evolved differently, we have the opportunity to discover something entirely new.”
Source: Tulane University
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