Investigating brown rat Rattus norvegicus egg predation using experimental nests and camera traps

Author(s):  
Nina J. O’Hanlon ◽  
Mark S. Lambert
2020 ◽  
Vol 54 (29-30) ◽  
pp. 1813-1826
Author(s):  
Giovany A. González-Desales ◽  
Luis A. Tello-Sahagún ◽  
Cynthia P. Cadena-Ramírez ◽  
Marco A. López-Luna ◽  
Alejandra Buenrostro-Silva ◽  
...  
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1951 ◽  
Vol 49 (1) ◽  
pp. 22-25 ◽  
Author(s):  
S. A. Barnett

Small enclosed populations of the common brown rat (ten to twenty-six rats), each with access to one ton of sacked wheat for 12–28 weeks, caused a loss in weight of 4·4% of the wheat. 70·4% of the wheat was fouled and had to be cleaned before use. The main monetary loss was due to damage to sacks. Total monetary loss was 18·23% of the original value of the wheat and sacks.


2020 ◽  
Author(s):  
Siti Md Saad ◽  
Roy Sanderson ◽  
Peter Robertson ◽  
Mark Lambert

Abstract Brown rats are widespread in agroecosystems, but our understanding of factors affecting their activity is incomplete due to cryptic, nocturnal behaviours. Indirect monitoring methods include tracking plates and camera traps. Supplementary feeding of game birds may provide resources for rats away from farm buildings, allowing them to persist in winter when there is little other food available. Developing reliable methods to monitor such populations will facilitate landscape-scale studies of rat populations in farm environments and aid ecologically based approaches for controlling rats on farms. We compared camera traps and tracking plates to monitor brown rat activity near game bird feeders at a mixed farm in Northumberland, UK. Generalized linear models (GLM) were used to compare rat incidence estimated from camera traps and tracking plates. A strong positive relationship was found between the two methods, although tracking plate estimates were less reliable when rat activity was very low. Factors that affected populations of brown rats near game bird feeders were assessed via linear mixed-effect models (LMM) of monthly tracking plate data (October 2017 to September 2018). Populations were highest at the feeders (0 m) compared with further away (10 m, 20 m) and were also higher in periods of cold, wet weather and when more food was available from the feeders. Rodenticide application near feeders did not significantly affect activity, nor did land cover 100 m around each feeder. A highly significant relationship was detected with food supply, suggesting that the use of game bird feeders could potentially have major impacts on rat population dynamics.


2016 ◽  
Vol 283 (1841) ◽  
pp. 20161762 ◽  
Author(s):  
Emily E. Puckett ◽  
Jane Park ◽  
Matthew Combs ◽  
Michael J. Blum ◽  
Juliet E. Bryant ◽  
...  

Native to China and Mongolia, the brown rat ( Rattus norvegicus ) now enjoys a worldwide distribution. While black rats and the house mouse tracked the regional development of human agricultural settlements, brown rats did not appear in Europe until the 1500s, suggesting their range expansion was a response to relatively recent increases in global trade. We inferred the global phylogeography of brown rats using 32 k SNPs, and detected 13 evolutionary clusters within five expansion routes. One cluster arose following a southward expansion into Southeast Asia. Three additional clusters arose from two independent eastward expansions: one expansion from Russia to the Aleutian Archipelago, and a second to western North America. Westward expansion resulted in the colonization of Europe from which subsequent rapid colonization of Africa, the Americas and Australasia occurred, and multiple evolutionary clusters were detected. An astonishing degree of fine-grained clustering between and within sampling sites underscored the extent to which urban heterogeneity shaped genetic structure of commensal rodents. Surprisingly, few individuals were recent migrants, suggesting that recruitment into established populations is limited. Understanding the global population structure of R. norvegicus offers novel perspectives on the forces driving the spread of zoonotic disease, and aids in development of rat eradication programmes.


2004 ◽  
Vol 35 (3) ◽  
pp. 283-290 ◽  
Author(s):  
Chiu-Chen Huang ◽  
Chen-Hsiung Yang ◽  
Yuko Watanabe ◽  
Yung-Kung Liao ◽  
Hong-Kean Ooi
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2017 ◽  
Vol 62 (4) ◽  
Author(s):  
Katarzyna Buńkowska-Gawlik ◽  
Agnieszka Perec-Matysiak ◽  
Klaudia Burzyńska ◽  
Joanna Hildebrand

Abstractis a parasitic nematode found primarily in rodents but known to infect numerous other mammal species, and causing in humans the hepatic calodiasis. Herein, we present the first finding of


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