A Radiotelemetric Study of Activity and Movements of the Blanding's Turtle (Emydoidea blandingi) in Northeastern Illinois

1991 ◽  
Vol 25 (2) ◽  
pp. 178 ◽  
Author(s):  
John W. Rowe ◽  
Edward O. Moll
2008 ◽  
pp. 015.1-015.12 ◽  
Author(s):  
Justin Congdon ◽  
Terry Graham ◽  
Tom Herman ◽  
Jeffrey Lang

2015 ◽  
Vol 93 (7) ◽  
pp. 509-514 ◽  
Author(s):  
Caleb T. Hasler ◽  
Kevin Robinson ◽  
Nick Stow ◽  
Shawn R. Taylor

Between 2010 and 2011, an arterial road was constructed within provincially significant wetlands in the South March Highlands (SMH) located in Ottawa, Ontario, Canada. The wetlands and adjacent upland areas were determined to be sensitive habitat for Blanding’s Turtles (Emydoidea blandingii (Holbrook, 1838)) during the approval and permitting process, and a population study was required as part of the road construction project. The study consisted of a 4-year mark–recapture program and a movement study of radio-tagged adult turtles. General findings included the identification of 27 adult males and 55 females and a population estimate of 93 adults (95% Cl: 86–118). A 1:2.32 male to female sex bias was also found. Mean home-range size was 19.06 ha and tagged turtles moved, on average, more per observation in 2013 (191.40 m compared with 89.75 and 123.04 m in 2011 and 2012, respectively). Previously reported differences in movement patterns between males, females, and gravid females were not observed. The SMH Blanding’s Turtle population should be closely monitored because urban development continues in the area, which may further reduce the population size. Understanding the biology of imperiled populations across species’ ranges is necessary to promote conservation and adaptive wildlife management.


Genome ◽  
2020 ◽  
Author(s):  
Tzitziki Loeza-Quintana ◽  
Steven Crookes ◽  
Pei Yuan Li ◽  
Darrin P Reid ◽  
Matthew Smith ◽  
...  

The use of environmental DNA (eDNA) allows the early detection of aquatic species at low densities (e.g. elusive and invasive species), which otherwise could be challenging to monitor using conventional techniques. Here, we assess the ability of eDNA sampling to detect the presence/absence of one species-at-risk (Blanding’s Turtle) and two invasive species (Chain Pickerel and Smallmouth Bass) in Kejimkujik National Park and National Historic site, Nova Scotia, where the aquatic system is highly acidic and rich in organic compounds. Five replicates of 1L water samples were taken per sampling site. Water filtration and eDNA extractions were performed on-site, while qPCR reactions were performed in the laboratory using species-specific assays. Samples were treated with an inhibition removal kit and analyzed pre- and post-inhibition removal. Despite the low pH and PCR inhibitors in water samples, our results showed positive eDNA detections in almost all expected positive sites (except in one site for Blanding’s Turtle). Detections of the target species were also observed at sites where their presence was previously unknown. Our study supports the advantage of eDNA to monitor species at low densities, revealing new distributions or recently invaded areas. We also demonstrate how eDNA can directly instruct management strategies in Kejimkujik.


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