A Call for Tiger Management Using "Reserves" of Genetic Diversity

Bay, R. A. ; Ramakrishnan, U. ; Hadly, E. A. (2014) A Call for Tiger Management Using "Reserves" of Genetic Diversity Journal of Heredity, 105 (3). pp. 295-302. ISSN 0022-1503

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Official URL: http://doi.org/10.1093/jhered/est086

Related URL: http://dx.doi.org/10.1093/jhered/est086

Abstract

Tigers (Panthera tigris), like many large carnivores, are threatened by anthropogenic impacts, primarily habitat loss and poaching. Current conservation plans for tigers focus on population expansion, with the goal of doubling census size in the next 10 years. Previous studies have shown that because the demographic decline was recent, tiger populations still retain a large amount of genetic diversity. Although maintaining this diversity is extremely important to avoid deleterious effects of inbreeding, management plans have yet to consider predictive genetic models. We used coalescent simulations based on previously sequenced mitochondrial fragments (n = 125) from 5 of 6 extant subspecies to predict the population growth needed to maintain current genetic diversity over the next 150 years. We found that the level of gene flow between populations has a large effect on the local population growth necessary to maintain genetic diversity, without which tigers may face decreases in fitness. In the absence of gene flow, we demonstrate that maintaining genetic diversity is impossible based on known demographic parameters for the species. Thus, managing for the genetic diversity of the species should be prioritized over the riskier preservation of distinct subspecies. These predictive simulations provide unique management insights, hitherto not possible using existing analytical methods.

Item Type:Article
Source:Copyright of this article belongs to Oxford University Press
Keywords:carnivore conservation; coalescent simulation; Panthera tigris
ID Code:127923
Deposited On:31 Oct 2022 05:00
Last Modified:31 Oct 2022 05:00

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