LONG-TERM SURVIVAL OF PSEUDOGYMNOASCUS DESTRUCTANS AT ELEVATED TEMPERATURES

被引:29
作者
Campbell, Lewis J. [1 ,2 ]
Walsh, Daniel P. [1 ]
Blehert, David S. [1 ]
Lorch, Jeffrey M. [1 ]
机构
[1] US Geol Survey, Natl Wildlife Hlth Ctr, 6006 Schroeder Rd, Madison, WI 53711 USA
[2] Univ Wisconsin, Dept Pathobiol Sci, 1656 Linden Dr, Madison, WI 53706 USA
关键词
Fungal pathogens; pathogen survival; persistence; Pseudogymnoascus distructans; temperature; white-nose syndrome; WHITE-NOSE SYNDROME; GEOMYCES-DESTRUCTANS; INFECTIOUS-DISEASES; BATS; GROWTH; HIBERNACULA; THREATS; AGENT;
D O I
10.7589/2019-04-106
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
White-nose syndrome is an emerging fungal disease that has devastated hibernating bat populations across eastern North America. The causal pathogen, Pseudogymnoascus dectructans (PD), is a psychrophilic fungus with a known maximal growth temperature of 20 C. Although it is widely speculated that PD is primarily spread between hibernacula by the movement of bats, experimental evidence is lacking to demonstrate that PD can endure temperatures experienced by active bats for periods of time that would facilitate dispersal of viable fungus. We used an in vitro culture-based approach to study the survival of PD conidia on three artificial growth media and bat fur. The fungus was incubated at three temperatures it might realistically be exposed to on nonhibernating bats or in the environment outside of caves and mines (24 C, 30 C, and 37 C). When incubated on artificial media, we found that PD conidia were able to survive for a maximum of 150 d when exposed to temperatures of 24 C, 60 d at 30 C, and 15 d at 37 C. At all temperatures, maximal survival duration was recorded when conidia were incubated on brain-heart infusion agar with 10% volume of sheep (Ovis cries) blood. When incubated on bat fur, viable PD was recovered at 180 d, 60 d, and 5 d when exposed to temperatures of 24 C, 30 C, and 37 C, respectively. Our results suggest that viable PD conidia may be able to survive on or within the bodies of bats, which may facilitate long-distance dispersal. The longterm viability of the fungus on various fomites may differ, and therefore must be assessed for each potential substrate.
引用
收藏
页码:278 / 287
页数:10
相关论文
共 45 条
[1]  
Altringham J.D., 2011, BATS EVOLUTION CONSE
[2]   DISPERSAL HAZARDS OF PSEUDOGYMNOASCUS DESTRUCTANS BY BATS AND HUMAN ACTIVITY AT HIBERNACULA IN SUMMER [J].
Ballmann, Anne E. ;
Torkelson, Miranda R. ;
Bohuski, Elizabeth A. ;
Russell, Robin E. ;
Blehert, David S. .
JOURNAL OF WILDLIFE DISEASES, 2017, 53 (04) :725-735
[3]   Evolution of bacterial and fungal growth media [J].
Basu, Srijoni ;
Bose, Chandra ;
Ojha, Nupur ;
Das, Nabajit ;
Das, Jagaree ;
Pal, Mrinmoy ;
Khurana, Sukant .
BIOINFORMATION, 2015, 11 (04) :182-184
[4]   Bat White-Nose Syndrome: An Emerging Fungal Pathogen? [J].
Blehert, David S. ;
Hicks, Alan C. ;
Behr, Melissa ;
Meteyer, Carol U. ;
Berlowski-Zier, Brenda M. ;
Buckles, Elizabeth L. ;
Coleman, Jeremy T. H. ;
Darling, Scott R. ;
Gargas, Andrea ;
Niver, Robyn ;
Okoniewski, Joseph C. ;
Rudd, Robert J. ;
Stone, Ward B. .
SCIENCE, 2009, 323 (5911) :227-227
[5]   WHITE-NOSE SYNDROME-AFFECTED LITTLE BROWN MYOTIS (MYOTIS LUCIFUGUS) INCREASE GROOMING AND OTHER ACTIVE BEHAVIORS DURING AROUSALS FROM HIBERNATION [J].
Brownlee-Bouboulis, Sarah A. ;
Reeder, DeeAnn M. .
JOURNAL OF WILDLIFE DISEASES, 2013, 49 (04) :850-859
[6]   Electrolyte Depletion in White-nose Syndrome Bats [J].
Cryan, Paul M. ;
Meteyer, Carol Uphoff ;
Blehert, David S. ;
Lorch, Jeffrey M. ;
Reeder, DeeAnn M. ;
Turner, Gregory G. ;
Webb, Julie ;
Behr, Melissa ;
Verant, Michelle ;
Russe, Robin E. ;
Castle, Kevin T. .
JOURNAL OF WILDLIFE DISEASES, 2013, 49 (02) :398-402
[7]   EFFECTS OF SPORULATION MEDIUM AND AGE ON FUNGUS SPORE PHYSIOLOGY [J].
DARBY, RT ;
MANDELS, GR .
PLANT PHYSIOLOGY, 1955, 30 (04) :360-366
[8]   Wildlife ecology - Emerging infectious diseases of wildlife - Threats to biodiversity and human health [J].
Daszak, P ;
Cunningham, AA ;
Hyatt, AD .
SCIENCE, 2000, 287 (5452) :443-449
[9]   Little Brown Myotis Persist Despite Exposure to White-Nose Syndrome [J].
Dobony, Christopher A. ;
Hicks, Alan C. ;
Langwig, Kate E. ;
von Linden, Ryan I. ;
Okoniewski, Joseph C. ;
Rainbolt, Raymond E. .
JOURNAL OF FISH AND WILDLIFE MANAGEMENT, 2011, 2 (02) :190-195
[10]   The White-Nose Syndrome Transcriptome: Activation of Anti-fungal Host Responses in Wing Tissue of Hibernating Little Brown Myotis [J].
Field, Kenneth A. ;
Johnson, Joseph S. ;
Lilley, Thomas M. ;
Reeder, Sophia M. ;
Rogers, Elizabeth J. ;
Behr, Melissa J. ;
Reeder, DeeAnn M. .
PLOS PATHOGENS, 2015, 11 (10)