4.7 Article

Influence of harvesting pressure on demographic tactics: implications for wildlife management

期刊

JOURNAL OF APPLIED ECOLOGY
卷 48, 期 4, 页码 835-843

出版社

WILEY
DOI: 10.1111/j.1365-2664.2011.02017.x

关键词

comparative analysis; demography; hunting; life history; life table response experiment; prospective analysis; retrospective analysis; Sus scrofa; ungulate; wild boar

资金

  1. French ANR [ANR-08-JCJC-0028-01]
  2. ONCFS
  3. ANR 'Rare'
  4. Segretariato per la Presidenza della Repubblica
  5. Agence Nationale de la Recherche (ANR) [ANR-08-JCJC-0028] Funding Source: Agence Nationale de la Recherche (ANR)

向作者/读者索取更多资源

1. Demographic tactics within animal populations are shaped by selective pressures. Exploitation exerts additional pressures so that differing demographic tactics might be expected among populations with differences in levels of exploitation. Yet little has been done so far to assess the possible consequences of exploitation on the demographic tactics of mammals, even though such information could influence the choice of effective management strategies. 2. Compared with similar-sized ungulate species, wild boar Sus scrofa has high reproductive capabilities, which complicates population management. Using a perturbation analysis, we investigated how population growth rates (lambda) and critical life-history stages differed between two wild boar populations monitored for several years, one of which was heavily harvested and the other lightly harvested. 3. Asymptotic lambda was 1 242 in the lightly hunted population and 1 115 in the heavily hunted population, while the ratio between the elasticity of adult survival and juvenile survival was 2 63 and 1 27, respectively. A comparative analysis including 21 other ungulate species showed that the elasticity ratio in the heavily hunted population was the lowest ever observed. 4. Compared with expected generation times of similar-sized ungulates (more than 6 years), wild boar has a fast life-history speed, especially when facing high hunting pressure. This is well illustrated by our results, where generation times were 3 6 years in the lightly hunted population and only 2 3 years in the heavily hunted population. High human-induced mortality combined with non-limiting food resources accounted for the accelerated life history of the hunted population because of earlier reproduction. 5. Synthesis and applications. For wild boar, we show that when a population is facing a high hunting pressure, increasing the mortality in only one age-class (e. g. adults or juveniles) may not allow managers to limit population growth. We suggest that simulations of management strategies based on context-specific demographic models are useful for selecting interventions for population control. This type of approach allows the assessment of population response to exploitation by considering a range of plausible scenarios, improving the chance of selecting appropriate management actions.

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