animal kingdom

Animal Enigmas: Uncovering the mysteries of the animal kingdom

Original broadcast date: July 14, 2023. From the bugs in our backyards to prehistoric reptiles, animal biology and behavior are full of puzzles and conundrums. On this episode, we hear from experts solving the mysteries of the animal kingdom. Guests include paleontologist Dean Lomax, biochemical engineer Saad Bhamla, herpetologist Gowri Shankar and conservation biologist Patrícia Medici.

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animal kingdom

Investigating true crime in the animal kingdom

True crime mysteries can be dark and thrilling. But what if humans can't crack the case? What if the suspect ... isn't human? This hour, TED Radio Hour investigates crimes with a wild twist. Guests include forensic scientist Lauren Pharr Parks, author Mary Roach, dog trainer and conservationist Megan Parker, wildlife intelligence analyst Sarah Stoner. Original broadcast date: October 21, 2022.

TED Radio Hour+ subscribers now get access to bonus episodes, with more ideas from TED speakers and a behind the scenes look with our producers. A Plus subscription also lets you listen to regular episodes (like this one!) without sponsors. Sign-up at: plus.npr.org/ted.

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animal kingdom

Disney’s Animal Kingdom: Flamingo fortunes may be found on baseball diamond

A flamingo success story at Disney's Animal Kingdom involves the birds and the bees ... and baseball?




animal kingdom

25 very specific things to like about Disney’s Animal Kingdom

Disney's Animal Kingdom turns 25: A look at the theme park's likable traits.




animal kingdom

PODCAST: Poseidon’s Fury at Islands of Adventure closing and Disney’s Animal Kingdom turns 25 (Ep. 186)

The Theme Park Rangers say goodbye to Poseidon’s Fury at Universal’s Islands of Adventure and celebrate Animal Kingdom’s birthday.




animal kingdom

Disney’s Animal Kingdom celebrates 25th birthday, Earth Day

Disney’s Animal Kingdom theme park celebrated its 25th birthday, which doubles as Earth Day, on Saturday.




animal kingdom

Theme Park Rangers Radar: Overlooked at Animal Kingdom plus wardrobe words from ambassadors

Theme Park Rangers Radar looks for overlooked animals at Disney World, learns about WDW ambassadors' clothing.





animal kingdom

Love & lust: 7 lessons from the animal kingdom

Sex. Many (but not all) animals do it.




animal kingdom

The wackiest moms of the animal kingdom

While Mother's Day celebrates human mothers, there are a lot of other moms in the animal kingdom worth a shout-out.




animal kingdom

Prominins control ciliary length throughout the animal kingdom: New lessons from human prominin-1 and zebrafish prominin-3 [Cell Biology]

Prominins (proms) are transmembrane glycoproteins conserved throughout the animal kingdom. They are associated with plasma membrane protrusions, such as primary cilia, as well as extracellular vesicles derived thereof. Primary cilia host numerous signaling pathways affected in diseases known as ciliopathies. Human PROM1 (CD133) is detected in both somatic and cancer stem cells and is also expressed in terminally differentiated epithelial and photoreceptor cells. Genetic mutations in the PROM1 gene result in retinal degeneration by impairing the proper formation of the outer segment of photoreceptors, a modified cilium. Here, we investigated the impact of proms on two distinct examples of ciliogenesis. First, we demonstrate that the overexpression of a dominant-negative mutant variant of human PROM1 (i.e. mutation Y819F/Y828F) significantly decreases ciliary length in Madin–Darby canine kidney cells. These results contrast strongly to the previously observed enhancing effect of WT PROM1 on ciliary length. Mechanistically, the mutation impeded the interaction of PROM1 with ADP-ribosylation factor–like protein 13B, a key regulator of ciliary length. Second, we observed that in vivo knockdown of prom3 in zebrafish alters the number and length of monocilia in the Kupffer's vesicle, resulting in molecular and anatomical defects in the left-right asymmetry. These distinct loss-of-function approaches in two biological systems reveal that prom proteins are critical for the integrity and function of cilia. Our data provide new insights into ciliogenesis and might be of particular interest for investigations of the etiologies of ciliopathies.




animal kingdom

Prominins control ciliary length throughout the animal kingdom: New lessons from human prominin-1 and zebrafish prominin-3 [Cell Biology]

Prominins (proms) are transmembrane glycoproteins conserved throughout the animal kingdom. They are associated with plasma membrane protrusions, such as primary cilia, as well as extracellular vesicles derived thereof. Primary cilia host numerous signaling pathways affected in diseases known as ciliopathies. Human PROM1 (CD133) is detected in both somatic and cancer stem cells and is also expressed in terminally differentiated epithelial and photoreceptor cells. Genetic mutations in the PROM1 gene result in retinal degeneration by impairing the proper formation of the outer segment of photoreceptors, a modified cilium. Here, we investigated the impact of proms on two distinct examples of ciliogenesis. First, we demonstrate that the overexpression of a dominant-negative mutant variant of human PROM1 (i.e. mutation Y819F/Y828F) significantly decreases ciliary length in Madin–Darby canine kidney cells. These results contrast strongly to the previously observed enhancing effect of WT PROM1 on ciliary length. Mechanistically, the mutation impeded the interaction of PROM1 with ADP-ribosylation factor–like protein 13B, a key regulator of ciliary length. Second, we observed that in vivo knockdown of prom3 in zebrafish alters the number and length of monocilia in the Kupffer's vesicle, resulting in molecular and anatomical defects in the left-right asymmetry. These distinct loss-of-function approaches in two biological systems reveal that prom proteins are critical for the integrity and function of cilia. Our data provide new insights into ciliogenesis and might be of particular interest for investigations of the etiologies of ciliopathies.




animal kingdom

Prominins control ciliary length throughout the animal kingdom: New lessons from human prominin-1 and zebrafish prominin-3 [Cell Biology]

Prominins (proms) are transmembrane glycoproteins conserved throughout the animal kingdom. They are associated with plasma membrane protrusions, such as primary cilia, as well as extracellular vesicles derived thereof. Primary cilia host numerous signaling pathways affected in diseases known as ciliopathies. Human PROM1 (CD133) is detected in both somatic and cancer stem cells and is also expressed in terminally differentiated epithelial and photoreceptor cells. Genetic mutations in the PROM1 gene result in retinal degeneration by impairing the proper formation of the outer segment of photoreceptors, a modified cilium. Here, we investigated the impact of proms on two distinct examples of ciliogenesis. First, we demonstrate that the overexpression of a dominant-negative mutant variant of human PROM1 (i.e. mutation Y819F/Y828F) significantly decreases ciliary length in Madin–Darby canine kidney cells. These results contrast strongly to the previously observed enhancing effect of WT PROM1 on ciliary length. Mechanistically, the mutation impeded the interaction of PROM1 with ADP-ribosylation factor–like protein 13B, a key regulator of ciliary length. Second, we observed that in vivo knockdown of prom3 in zebrafish alters the number and length of monocilia in the Kupffer's vesicle, resulting in molecular and anatomical defects in the left-right asymmetry. These distinct loss-of-function approaches in two biological systems reveal that prom proteins are critical for the integrity and function of cilia. Our data provide new insights into ciliogenesis and might be of particular interest for investigations of the etiologies of ciliopathies.




animal kingdom

Taylor not-so-Swift: Pop music evolves no faster the animal kingdom, say scientists

By comparing cultural evolutionary samples with biological ones, a UK research team suggests popular culture, including pop music, literature and cars, evolves no faster than the animal kingdom.




animal kingdom

Basics of animal communication: interaction, signalling and sensemaking in the animal kingdom / by Dario Martinelli

Hayden Library - QL776.M35 2017




animal kingdom

Plight of the living dead: what the animal kingdom's real-life zombies reveal about nature--and ourselves / Matt Simon

Hayden Library - QL757.S48 2018