Ashes and Adaptations

Layers of Surivival: The Power of Thick Bark

10 min · 19 de nov de 2025
portada del episodio Layers of Surivival: The Power of Thick Bark

Descripción

In this episode of Ashes and Adaptations, we're discussing one of the most unassuming yet powerful fire-adapted traits: thick bark. Some trees are built with a natural armor that can protect them from the high temperatures caused by wildfires. We'll explore how fire shapes ecosystems, the science behind bark thickness, variation among species, and limitations regarding thick bark as an adaptation Sources: Fire behavior. US Forest Service Research and Development. (n.d.). https://research.fs.usda.gov/psw/fire/behavior [https://research.fs.usda.gov/psw/fire/behavior] Madrigal, J., Rodríguez de Rivera, Ó., Carrillo, C., Guijarro, M., Hernando, C., Vega, J. A., ... & Espinosa, J. (2023). Empirical Modelling of Stem Cambium Heating Caused by Prescribed Burning in Mediterranean Pine Forest. Fire, 6(11), 430. Rosell, J. A. (2016). Bark thickness across the angiosperms: more than just fire. New Phytologist, 211(1), 90-102.

Comentarios

0

Sé la primera persona en comentar

¡Regístrate ahora y forma parte de la comunidad de Ashes and Adaptations!

Prueba gratis

Empieza 7 días de prueba

$99 / mes después de la prueba. · Cancela cuando quieras.

  • Podcasts solo en Podimo
  • 20 horas de audiolibros al mes
  • Podcast gratuitos

Todos los episodios

5 episodios

episode Layers of Surivival: The Power of Thick Bark artwork

Layers of Surivival: The Power of Thick Bark

In this episode of Ashes and Adaptations, we're discussing one of the most unassuming yet powerful fire-adapted traits: thick bark. Some trees are built with a natural armor that can protect them from the high temperatures caused by wildfires. We'll explore how fire shapes ecosystems, the science behind bark thickness, variation among species, and limitations regarding thick bark as an adaptation Sources: Fire behavior. US Forest Service Research and Development. (n.d.). https://research.fs.usda.gov/psw/fire/behavior [https://research.fs.usda.gov/psw/fire/behavior] Madrigal, J., Rodríguez de Rivera, Ó., Carrillo, C., Guijarro, M., Hernando, C., Vega, J. A., ... & Espinosa, J. (2023). Empirical Modelling of Stem Cambium Heating Caused by Prescribed Burning in Mediterranean Pine Forest. Fire, 6(11), 430. Rosell, J. A. (2016). Bark thickness across the angiosperms: more than just fire. New Phytologist, 211(1), 90-102.

19 de nov de 202510 min
episode Overview of Evolution artwork

Overview of Evolution

Welcome to Ashes and Adaptations! This mini-series will be diving into various plant adaptations that have evolved in response to fire. This first episode explores evolution as a process, how adaptations arise, and corrects common misconceptions. Sources: Adaptation. (n.d.). Retrieved October 3, 2025, from https://evolution.berkeley.edu/evolution-101/mechanisms-the-processes-of-evolution/adaptation/ [https://evolution.berkeley.edu/evolution-101/mechanisms-the-processes-of-evolution/adaptation/] Bilyk, K. T., & DeVries, A. L. (2010). Freezing avoidance of the Antarctic icefishes (Channichthyidae) across thermal gradients in the Southern Ocean. Polar biology, 33(2), 203-213. Raman, V., Wang, M., Avula, B., Lee, J., Manfron, J., & Khan, I. A. (2025). Chemical mimicry in the corpse flower: Floral odor and phytochemical profiles of Amorphophallus titanum (Becc.) Becc. Biochemical Systematics and Ecology, 118, 104920.

19 de nov de 202514 min