Abundance, density, and social structure of African forest elephants (Loxodonta cyclotis) in a human-modified landscape in southwestern Gabon

Abstract The noninvasive monitoring of population size and demography is critical to effective conservation, but forest living taxa can be difficult to directly observe due to elusiveness and/or inaccessible habitat. This has been true of African forest elephants (Loxodonta cyclotis), for which we have limited information regarding population size and social behavior despite their threatened conservation status. In this study, we estimated demographic parameters focusing specifically on population size and density using genetic capture-recapture of forest elephants in the southern Industrial Corridor of the Gamba Complex of Protected Areas, which is considered a global stronghold for forest elephants in southwestern Gabon. Additionally, we examined forest elephant sociality through analysis of social networks, predicting that we would find matrilineal structure as exhibited by savanna elephants and other forest elephants. Given 95% confidence intervals, we estimate the size of the population in the sampled area to be between 754 and 1,502 individuals and our best density estimate ranges from 0.47 to 0.80 elephants per km2. When extrapolated across the entire Industrial Corridor, this estimate suggests an elephant population size of 3,033 to 6,043 in this area based on abundance or 1,684 to 2,832 based on density, which is 40 – 83% smaller than previously suggested. Furthermore, our social network analysis revealed approximately half of network components included females with different mitochondrial haplotypes; this suggests a wider range of variation in forest elephant sociality than has previously been reported. This study emphasizes the threatened status of forest elephants and demonstrates the need to further refine baseline estimates of population size and knowledge on social behavior in this taxon, both of which will aid in determining how population dynamics in this keystone species may be changing through time in relation to increasing conservation threats..

Medienart:

Preprint

Erscheinungsjahr:

2020

Erschienen:

2020

Enthalten in:

bioRxiv.org - (2020) vom: 10. Juli Zur Gesamtaufnahme - year:2020

Sprache:

Englisch

Beteiligte Personen:

Brand, Colin M. [VerfasserIn]
Johnson, Mireille B. [VerfasserIn]
Parker, Lillian D. [VerfasserIn]
Maldonado, Jesús E. [VerfasserIn]
Korte, Lisa [VerfasserIn]
Vanthomme, Hadrien [VerfasserIn]
Alonso, Alfonso [VerfasserIn]
Ruiz-Lopez, Maria Jose [VerfasserIn]
Wells, Caitlin P. [VerfasserIn]
Ting, Nelson [VerfasserIn]

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doi:

10.1101/827188

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

XBI000660760