scholarly journals Spatial genetic analysis reveals high connectivity of tiger (Panthera tigris) populations in the Satpura-Maikal landscape of Central India

2013 ◽  
Vol 3 (1) ◽  
pp. 48-60 ◽  
Author(s):  
Sandeep Sharma ◽  
Trishna Dutta ◽  
Jesús E. Maldonado ◽  
Thomas C. Wood ◽  
Hemendra Singh Panwar ◽  
...  
2013 ◽  
Vol 58 (10) ◽  
pp. 2102-2113 ◽  
Author(s):  
Elizabeth A. James ◽  
Rebecca Jordan ◽  
Philippa C. Griffin

2016 ◽  
Vol 62 (5) ◽  
pp. 537-547 ◽  
Author(s):  
M. S. Sarkar ◽  
K. Ramesh ◽  
J. A. Johnson ◽  
S. Sen ◽  
P. Nigam ◽  
...  

PLoS ONE ◽  
2013 ◽  
Vol 8 (11) ◽  
pp. e77980 ◽  
Author(s):  
Aditya Joshi ◽  
Srinivas Vaidyanathan ◽  
Samrat Mondol ◽  
Advait Edgaonkar ◽  
Uma Ramakrishnan

Genetika ◽  
2020 ◽  
Vol 52 (1) ◽  
pp. 409-410
Author(s):  
E Editorial

The authors of the article: Stefanovic M., N. Karaiskou, N. Velickovic, M. Kovacevic, Z. Ristic, M. Djan (2019): Spatial genetic analysis of roe deer from the northern Serbian province of Vojvodina.- Genetika, Vol 51, No.3, 1127-1138 have informed the Editorial Office of the errors: 1. On page 1130 line 19 instead GenBank accession numbers:KY114497-KY114515 should be GenBank accession numbers KY114497 - KY114512. 2. On page 1133 in Table 2 instead of ? should be letter ?. 3. On page 1134 line 37 instead Fu's FST should be Fu's FS. <br><br><font color="red"><b> Link to the corrected article <u><a href="http://dx.doi.org/10.2298/GENSR1903127S">10.2298/GENSR1903127S</a></b></u>


2019 ◽  
Vol 43 (1) ◽  
pp. 21-30
Author(s):  
Leah K. Berkman ◽  
Jacqueline L. Frair ◽  
Paula E. Marquardt ◽  
Deahn M. Donner ◽  
John C. Kilgo ◽  
...  

Genetika ◽  
2019 ◽  
Vol 51 (3) ◽  
pp. 1127-1138
Author(s):  
Milomir Stefanovic ◽  
Nikoleta Karaiskou ◽  
Nevena Velickovic ◽  
Milutin Kovacevic ◽  
Zoran Ristic ◽  
...  

PeerJ ◽  
2017 ◽  
Vol 5 ◽  
pp. e3920 ◽  
Author(s):  
Mriganka Shekhar Sarkar ◽  
Ramesh Krishnamurthy ◽  
Jeyaraj A. Johnson ◽  
Subharanjan Sen ◽  
Goutam Kumar Saha

Background Large carnivores influence ecosystem functions at various scales. Thus, their local extinction is not only a species-specific conservation concern, but also reflects on the overall habitat quality and ecosystem value. Species-habitat relationships at fine scale reflect the individuals’ ability to procure resources and negotiate intraspecific competition. Such fine scale habitat choices are more pronounced in large carnivores such as tiger (Panthera tigris), which exhibits competitive exclusion in habitat and mate selection strategies. Although landscape level policies and conservation strategies are increasingly promoted for tiger conservation, specific management interventions require knowledge of the habitat correlates at fine scale. Methods We studied nine radio-collared individuals of a successfully reintroduced tiger population in Panna Tiger Reserve, central India, focussing on the species-habitat relationship at fine scales. With 16 eco-geographical variables, we performed Manly’s selection ratio and K-select analyses to define population-level and individual-level variation in resource selection, respectively. We analysed the data obtained during the exploratory period of six tigers and during the settled period of eight tigers separately, and compared the consequent results. We further used the settled period characteristics to model and map habitat suitability based on the Mahalanobis D2 method and the Boyce index. Results There was a clear difference in habitat selection by tigers between the exploratory and the settled period. During the exploratory period, tigers selected dense canopy and bamboo forests, but also spent time near villages and relocated village sites. However, settled tigers predominantly selected bamboo forests in complex terrain, riverine forests and teak-mixed forest, and totally avoided human settlements and agriculture areas. There were individual variations in habitat selection between exploratory and settled periods. Based on threshold limits of habitat selection by the Boyce Index, we established that 83% of core and 47% of buffer areas are now suitable habitats for tiger in this reserve. Discussion Tiger management often focuses on large-scale measures, but this study for the first time highlights the behaviour and fine-scale individual-specific habitat selection strategies. Such knowledge is vital for management of critical tiger habitats and specifically for the success of reintroduction programs. Our spatially explicit habitat suitability map provides a baseline for conservation planning and optimizing carrying capacity of the tiger population in this reserve.


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