Discover how the accidental introduction of Balcha indica wasp may help save West Virginia's ash forests from the emerald ash borer invasion.
Exploring the intricate coupling of carbon, nitrogen, and water cycles in terrestrial ecosystems and their biological regulation mechanisms.
Exploring how plants are being used to create silver nanoparticles for advanced medical and agricultural applications.
Discover how HRG-1, the heme transporter, safely moves this essential but toxic molecule across cellular membranes in organisms from worms to humans.
Explore the engineering discipline of Solution Conceptual Design of Chemical Processes (SCDCP) - the blueprint transforming raw materials into modern products.
Explore how quantitative mass spectrometry revolutionizes proteomics by measuring protein abundance with precision, revealing dynamic cellular processes.
Discover how mushroom spawn quality and substrate selection impact fungal cultivation yields and sustainability in modern agriculture.
Discover how the salt-resistant mustard mutant SR-3 could transform agriculture in saline-affected regions through plastomic engineering.
Exploring the frontier of in vitro microvascular engineering - where biologists meet Lego masters at the cellular level.
Discover how extracellular microRNAs facilitate cross-kingdom communication and drive co-evolution between species, from plants to mammals.