Palmer_2018_Nat.Commun_9_35

Reference

Title : Extreme sensitivity to ultraviolet light in the fungal pathogen causing white-nose syndrome of bats - Palmer_2018_Nat.Commun_9_35
Author(s) : Palmer JM , Drees KP , Foster JT , Lindner DL
Ref : Nat Commun , 9 :35 , 2018
Abstract :

Bat white-nose syndrome (WNS), caused by the fungal pathogen Pseudogymnoascus destructans, has decimated North American hibernating bats since its emergence in 2006. Here, we utilize comparative genomics to examine the evolutionary history of this pathogen in comparison to six closely related nonpathogenic species. P. destructans displays a large reduction in carbohydrate-utilizing enzymes (CAZymes) and in the predicted secretome (~50%), and an increase in lineage-specific genes. The pathogen has lost a key enzyme, UVE1, in the alternate excision repair (AER) pathway, which is known to contribute to repair of DNA lesions induced by ultraviolet (UV) light. Consistent with a nonfunctional AER pathway, P. destructans is extremely sensitive to UV light, as well as the DNA alkylating agent methyl methanesulfonate (MMS). The differential susceptibility of P. destructans to UV light in comparison to other hibernacula-inhabiting fungi represents a potential "Achilles' heel" of P. destructans that might be exploited for treatment of bats with WNS.

PubMedSearch : Palmer_2018_Nat.Commun_9_35
PubMedID: 29295979
Gene_locus related to this paper: 9pezi-a0a094ekb6 , 9pezi-a0a1b8fjc6 , 9pezi-a0a1b8e9u1 , 9pezi-a0a1b8gw19 , 9pezi-a0a1b8cgg5 , 9pezi-a0a2p2sws4 , 9pezi-a0a1b8elz6 , 9pezi-a0a1b8c046 , 9pezi-a0a1b8dcw7 , 9pezi-a0a094hn35 , 9pezi-a0a1b8dwu3

Citations formats

Palmer JM, Drees KP, Foster JT, Lindner DL (2018)
Extreme sensitivity to ultraviolet light in the fungal pathogen causing white-nose syndrome of bats
Nat Commun 9 :35

Palmer JM, Drees KP, Foster JT, Lindner DL (2018)
Nat Commun 9 :35