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Roberts, R. A.

Publications and source records attributed to Roberts, R. A..

2 recordsLinked to original sources

Mammal niches are not conserved over continental scales

Summary paragraphThe niche conservatism hypothesis states that a species relationships to habitat and climate conditions are maintained across space and time1-6. Niche stationarity is assumed when ecologists estimate species habitat needs or transfer findings across geographic regions7,8. Recent studies show that some species associations with climate and habitat vary spatially, contradicting the niche conservatism hypothesis9-18. The sources of this nonstationarity are unknown and potential mechanisms remain untested. Here we show that the environmental niches of 36 common North American mammals vary spatially across dimensions of human influence, climate, and landscape. Spatial variation is not explained by known genetic subspecies lineages. Instead, niches vary at a relatively fine spatial scale consistent with adaptations by animals to local conditions, which may be explained by genetic or behavioral changes or by unmodeled interactions with unobserved variables. Spatially varying ecology means that static niche models are not appropriate at large scales and extrapolating species niches to novel contexts may be impossible19. This complicates management decisions based on transferring findings across space and projecting species current environmental associations to responses to future change, but may provide optimism if nonstationarity represents potential for rapid evolutionary rescue.

ecology↗

Prevention and treatment of noise-induced hearing loss and cochlear synapse degeneration by potassium channel blockers in vivo

Noise can induce hearing loss. In particularly, noise can induce cochlear synapse degeneration leading to hidden hearing loss, which is the most common type of hearing disorders in the clinic. Currently, there is no pharmacological treatment, particularly, no post-exposure (i.e., therapeutic) treatment available in the clinic. Here, we report that systematic administration of K+ channel blockers before or after noise exposure could significantly attenuate NIHL and synapse degeneration. After systematic administration of a general K-channel blocker tetraethylammonium (TEA), the elevation of auditory brainstem response (ABR) thresholds after noise-exposure significantly reduced, and the active cochlear mechanics significantly improved. The therapeutic effect was further improved as the post-exposure administration time extending to 3 days. BK channel is a predominant K+ channel in the inner hair cells. Systematic administration of a BK channel blocker GAL-021 after noise exposure also ameliorated hearing loss and improved hearing behavioral responses tested by acoustic startle response (ASR). Finally, both TEA and GAL-021 significantly attenuated noise-induced ribbon synapse degeneration. These data demonstrate that K+-channel blockers can prevent and treat NIHL and cochlear synapse degeneration. Our finding may aid in developing therapeutic strategies for post-exposure treatment of NIHL and synapse degeneration. Significance StatementNoise is a common deafness factor affecting more 100 million people in the United States. So far, there is no pharmacological treatment available. We show here that administration of K+ channel blockers after noise exposure could attenuate noise-induced hearing loss and synapse degeneration, and improved behavioral responses. This is the first time to real the K+ channel blockers that could treat noise-induced hearing loss and cochlear synaptopathy after noise exposure.

neuroscience↗