Close Menu
Beverly Hills Examiner

    Subscribe to Updates

    Get the latest creative news from FooBar about art, design and business.

    What's Hot

    Fontaines D.C. Plot 2027 North American Tour

    October 3, 2026

    Argentina’s golden passport will be so popular that ‘really wealthy Americans will be embarrassed’ not to have it, top advisor says

    October 3, 2026

    Lawsuit Implicates Trump In The Death Of Renee Good

    October 3, 2026
    Facebook X (Twitter) Instagram
    Beverly Hills Examiner
    • Home
    • US News
    • Politics
    • Business
    • Science
    • Technology
    • Lifestyle
    • Music
    • Television
    • Film
    • Books
    • Contact
      • About
      • Amazon Disclaimer
      • DMCA / Copyrights Disclaimer
      • Terms and Conditions
      • Privacy Policy
    Beverly Hills Examiner
    Home»Science»How Sugar Gliders Got Their Wings
    Science

    How Sugar Gliders Got Their Wings

    By April 25, 2024
    Facebook Twitter Pinterest LinkedIn WhatsApp Email Reddit Telegram


    Sugar gliders, small marsupials that in some places are kept as pets, have the ability to glide through the air thanks to a membrane connecting their forelegs to their hindlegs. The membrane, known as a patagium, allows them to glide from tree branch to tree branch and thus more easily access food and escape predators. It has evolved at least three times independently in closely related glider species, including sugar gliders. But the question lingers as to how it evolved.

    Now a team of researchers has uncovered the genetic basis for the evolution of this novel adaptation: a gene called Emx2 plays a critical role in making the patagium. In sugar glider babies (which are called joeys and live in their mother’s pouch for several weeks after birth), Emx2 is expressed in the skin on the left and right flanks, where the gliding membrane will form. The activity of this gene is required for the normal development of the patagium: when researchers repress the gene, the patagium fails to form properly. Surprisingly, the researchers discovered that Emx2 is also expressed on the flanks of developing lab mice but only transiently, whereas in the sugar gliders, the gene remains active for much longer. Although it is not known why the gene is expressed temporarily on the flanks of developing mice, Emx2 is known to have important roles elsewhere: it is essential for brain and bone development, where it is involved in cell proliferation.

    From a basic biology point of view, addressing the central question of how specialized body plans evolve is really fundamental, says Stephanie Ellis, who studies morphogenesis at the Max Perutz Labs in Austria. The researchers, she says, “were able to start with this big evolutionary question and bring it down to a cell-biological answer where we know the exact genetic loop and exactly what it does on the level of the tissue and the cell.”


    On supporting science journalism

    If you’re enjoying this article, consider supporting our award-winning journalism by subscribing. By purchasing a subscription you are helping to ensure the future of impactful stories about the discoveries and ideas shaping our world today.


    To investigate how sugar gliders’ patagium evolved, evolutionary developmental biologist Ricardo Mallarino of Princeton University and his then graduate student Jorge Moreno teamed up with Olga Dudchenko and Erez Lieberman Aiden of Baylor College of Medicine, along with other collaborators in the U.S. and Australia, to sequence the genomes of 15 marsupial species. These included old specimens from museum collections, some of which were endangered species. Several of the marsupials had a gliding membrane, and some did not. By comparing the genomes of gliding and nongliding marsupial species, the researchers could identify regions of the genome that evolved faster in the gliding species than in the nongliding ones. The results were published April 24 in Nature.

    Searching through these genomes was a monumental task: “When you’re working on timescales of tens of millions of years, you’ve got entire genomes, and you’re trying to sift through a barn of hay looking for needles,” explains Kim Cooper, who studies the evolution of skeletal proportions in desert jerboas at the University of California, San Diego, and was not involved in the research.

    The team identified more than 1,000 regions on the marsupials’ genome that showed accelerated evolution, or faster rates of DNA mutations, in the gliding species (and thus were candidates for genetic changes that could contribute to the evolution of the gliding membrane). But not a single “glider accelerated region”—one that exhibited an accelerated rate of mutations—was shared across all three gliding species studied. At first that was a disappointment because there was no smoking gun—no clear gene candidate to go after. But after more thought, the team realized that many of these glider accelerated regions were regulating the activity of other genes and that it was possible to computationally infer the target genes that each of these regions were regulating. Furthermore, the researchers knew which genes were activated in the developing patagium from previous work. When they focused on genes activated in the patagium that were regulated by the accelerated regions in all three species, a single gene stood out: Emx2, a transcription factor that orchestrates the activity of many other developmental genes.

    “Each individual species is experiencing their own evolution,” says Moreno, now a postdoctoral fellow at the Stowers Institute in Kansas City, Mo. “What we think is going on is that they’ve converged around this key developmental gene that they can deploy in a way that essentially achieves the same outcome. But the way you get to that outcome can be different. That’s what these different enhancer evolutions show us.”

    The findings are “consistent with the idea that trait evolution over long timescales has complex genetic mechanisms,” Cooper says, referring to the more than 1,000 genomic changes identified. At the same time, she says, while recognizing that complexity, the researchers were able to focus in on a particular gene that seemed to be a “keystone,” or a critical node within the larger and very complex network of developmental genes.

    To investigate the function of the rapidly evolving genetic sequences that regulate the activity of Emx2 in the three gliders, the researchers examined those sequences by connecting them to a gene that makes a fluorescent protein and injecting them into a sugar glider cell line. By doing so, they discovered that the gliding marsupials’ sequences showed greater fluorescence than the equivalent nongliding species’ sequences, indicating that Emx2 was more strongly activated in the gliding species.

    Because marsupials are born very early and most of their development occurs while they are in their mother’s pouch (rather than in utero), the researchers also had the opportunity to manipulate Emx2 during the critical phase in the joeys’ development when the membrane was forming. To test what the gene was doing, the researchers took the joeys out of their mother’s pouch while leaving them attached to the mother’s nipple, quickly injected a virus carrying a molecule that downregulated the activity of Emx2 and put the joeys back into the pouch. Several days later they observed that the gliding membrane did not grow at the same rate as in a control group injected with a viral delivery vehicle lacking the inhibiting molecule. The experiment indicated that Emx2 was important for the proliferation of cells that build the patagium.

    The researchers were also curious to know what other changes occurred when Emx2 was repressed. By sequencing the RNA of the patagium, they observed a reduction in activity of Wnt5a, a member of the Wnt gene family that is involved in a multitude of different developmental processes, including cell proliferation and migration, cell and tissue patterning, and more. This suggested that Emx2 was affecting the patagium at least in part by regulating the activity of Wnt5a.

    To understand more about the role of Emx2, the researchers turned to lab mice. Intriguingly, they saw that Emx2 was expressed in the skin on the flanks of typically developing mice, much like in the sugar gliders. But two days later the expression of Emx2 in the flanks of the mice was completely gone. When this gene was artificially kept activated in lab mice, the researchers observed that the cells proliferated and that the skin thickened in a way similar to the sugar gliders’ developing membrane. The result was not quite a gliding mouse, however—other genetic changes are also important in patagium development.

    It was striking, though, that the same cell behaviors were triggered by the persistent activation of Emx2 in both the sugar gliders and the mice. “These mechanisms actually seem to be very conserved across evolution,” Mallarino says. “If you activate this gene, you generate some of the same cellular behaviors as you see in a species that diverged 160 million years ago. That was very cool.”

    Earlier studies in lab mice showed that Emx2 has important roles in brain development and the development of the scapula and pelvis, where it is involved in cell proliferation. The gliders have simply taken advantage of that mechanism instead of inventing a new way to increase cell proliferation.

    “Evolution plays with what it has,” Mallarino says. “It’s usually this determined set of genes that can generate a determined set of cell behaviors, and you just deploy them wherever you need.”



    Original Source Link

    Share. Facebook Twitter Pinterest LinkedIn WhatsApp Email Reddit Telegram
    Previous ArticleIt’s Never Been Easier to Land in Director’s Jail
    Next Article Xaira, an AI drug discovery startup, launches with a massive $1B, says it’s ‘ready’ to start developing drugs

    RELATED POSTS

    A Decade-Long Experiment Is Unlocking the Mysteries of the Ocean’s ‘Deep Reefs’

    October 3, 2026

    Could a giant iceberg really break off Greenland? Scientists check Tom Cruise’s new movie Digger

    October 3, 2026

    There Are Plenty of Reasons to Be Concerned About Bioweapons Development—Even Without AI

    October 2, 2026

    Google’s Project Suncatcher AI data center test has officially launched to space onboard SpaceX rocket

    October 2, 2026

    AI Apocalypse? By Howard Bloom

    October 2, 2026

    Measles Is Forcing Hospitals to Adapt to a New Normal

    October 1, 2026
    latest posts

    Fontaines D.C. Plot 2027 North American Tour

    Fontaines D.C. are bringing Dopamine Chamber to North America next year. After a pair of…

    Argentina’s golden passport will be so popular that ‘really wealthy Americans will be embarrassed’ not to have it, top advisor says

    October 3, 2026

    Lawsuit Implicates Trump In The Death Of Renee Good

    October 3, 2026

    Study finds artery plaque in 1 in 13 adults under 30 with no symptoms

    October 3, 2026

    OpenAI safety employee resigns, claiming the company’s ‘culture is broken’

    October 3, 2026

    A Decade-Long Experiment Is Unlocking the Mysteries of the Ocean’s ‘Deep Reefs’

    October 3, 2026

    Tom Cruise’s Digger Bombs in Box Office Opening; Hoover’s Verity No. 1

    October 3, 2026
    Categories
    • Books (1,525)
    • Business (6,429)
    • Cover Story (14)
    • Film (6,366)
    • Lifestyle (4,414)
    • Music (6,439)
    • Politics (6,416)
    • Science (5,779)
    • Technology (6,365)
    • Television (6,065)
    • Uncategorized (3)
    • US News (6,414)
    popular posts

    12 Hidden Details You Missed About Spencer Reid

    In Criminal Minds, Dr. Spencer Reid—a Supervisory Special Agent in the Behavioral Analysis Unit (BAU)—has…

    Questions remain over Walz military service after Harris campaign says he ‘misspoke’

    August 12, 2024

    Remarkable True Story of Holocaust Survivor Who Became a Nazi Hunter

    February 24, 2025

    How A 1946 Movie Ghost Became One of Punk’s Most Iconic Logos

    August 2, 2025
    Archives
    Browse By Category
    • Books (1,525)
    • Business (6,429)
    • Cover Story (14)
    • Film (6,366)
    • Lifestyle (4,414)
    • Music (6,439)
    • Politics (6,416)
    • Science (5,779)
    • Technology (6,365)
    • Television (6,065)
    • Uncategorized (3)
    • US News (6,414)
    About Us

    We are a creativity led international team with a digital soul. Our work is a custom built by the storytellers and strategists with a flair for exploiting the latest advancements in media and technology.

    Most of all, we stand behind our ideas and believe in creativity as the most powerful force in business.

    What makes us Different

    We care. We collaborate. We do great work. And we do it with a smile, because we’re pretty damn excited to do what we do. If you would like details on what else we can do visit out Contact page.

    Our Picks

    A Decade-Long Experiment Is Unlocking the Mysteries of the Ocean’s ‘Deep Reefs’

    October 3, 2026

    Tom Cruise’s Digger Bombs in Box Office Opening; Hoover’s Verity No. 1

    October 3, 2026

    EVERYDAY CARRY: Legacy | FashionBeans

    October 3, 2026
    © 2026 Beverly Hills Examiner. All rights reserved. All articles, images, product names, logos, and brands are property of their respective owners. All company, product and service names used in this website are for identification purposes only. Use of these names, logos, and brands does not imply endorsement unless specified. By using this site, you agree to the Terms & Conditions and Privacy Policy.

    Type above and press Enter to search. Press Esc to cancel.

    We use cookies on our website to give you the most relevant experience by remembering your preferences and repeat visits. By clicking “Accept All”, you consent to the use of ALL the cookies. However, you may visit "Cookie Settings" to provide a controlled consent.
    Cookie SettingsAccept All
    Manage consent

    Privacy Overview

    This website uses cookies to improve your experience while you navigate through the website. Out of these, the cookies that are categorized as necessary are stored on your browser as they are essential for the working of basic functionalities of the website. We also use third-party cookies that help us analyze and understand how you use this website. These cookies will be stored in your browser only with your consent. You also have the option to opt-out of these cookies. But opting out of some of these cookies may affect your browsing experience.
    Necessary
    Always Enabled
    Necessary cookies are absolutely essential for the website to function properly. These cookies ensure basic functionalities and security features of the website, anonymously.
    CookieDurationDescription
    cookielawinfo-checkbox-analytics11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Analytics".
    cookielawinfo-checkbox-functional11 monthsThe cookie is set by GDPR cookie consent to record the user consent for the cookies in the category "Functional".
    cookielawinfo-checkbox-necessary11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookies is used to store the user consent for the cookies in the category "Necessary".
    cookielawinfo-checkbox-others11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Other.
    cookielawinfo-checkbox-performance11 monthsThis cookie is set by GDPR Cookie Consent plugin. The cookie is used to store the user consent for the cookies in the category "Performance".
    viewed_cookie_policy11 monthsThe cookie is set by the GDPR Cookie Consent plugin and is used to store whether or not user has consented to the use of cookies. It does not store any personal data.
    Functional
    Functional cookies help to perform certain functionalities like sharing the content of the website on social media platforms, collect feedbacks, and other third-party features.
    Performance
    Performance cookies are used to understand and analyze the key performance indexes of the website which helps in delivering a better user experience for the visitors.
    Analytics
    Analytical cookies are used to understand how visitors interact with the website. These cookies help provide information on metrics the number of visitors, bounce rate, traffic source, etc.
    Advertisement
    Advertisement cookies are used to provide visitors with relevant ads and marketing campaigns. These cookies track visitors across websites and collect information to provide customized ads.
    Others
    Other uncategorized cookies are those that are being analyzed and have not been classified into a category as yet.
    SAVE & ACCEPT