Cargando…

Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species

The Caucasian lynx, Lynx lynx dinniki, has one of the southernmost distributions in the Eurasian lynx range, covering Anatolian Turkey, the Caucasus and Iran. Little is known about the biology and the genetic status of this subspecies. To collect baseline genetic, ecological and behavioural data and...

Descripción completa

Detalles Bibliográficos
Autores principales: Mengüllüoğlu, Deniz, Fickel, Jörns, Hofer, Heribert, Förster, Daniel W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6510455/
https://www.ncbi.nlm.nih.gov/pubmed/31075125
http://dx.doi.org/10.1371/journal.pone.0216549
_version_ 1783417427990675456
author Mengüllüoğlu, Deniz
Fickel, Jörns
Hofer, Heribert
Förster, Daniel W.
author_facet Mengüllüoğlu, Deniz
Fickel, Jörns
Hofer, Heribert
Förster, Daniel W.
author_sort Mengüllüoğlu, Deniz
collection PubMed
description The Caucasian lynx, Lynx lynx dinniki, has one of the southernmost distributions in the Eurasian lynx range, covering Anatolian Turkey, the Caucasus and Iran. Little is known about the biology and the genetic status of this subspecies. To collect baseline genetic, ecological and behavioural data and benefit future conservation of L. l. dinniki, we monitored 11 lynx territories (396 km(2)) in northwestern Anatolia. We assessed genetic diversity of this population by non-invasively collecting 171 faecal samples and trapped and sampled 12 lynx individuals using box traps. We observed high allelic variation at 11 nuclear microsatellite markers, and found no signs of inbreeding despite the potential isolation of this population. We obtained similar numbers of distinct genotypes from the two sampling sources. Our results indicated that first order female relatives occupy neighbouring territories (female philopatry) and that territorial male lynx were highly unrelated to each other and to female territorial lynx, suggesting long distance male dispersal. Particular male and female resident territorial lynx and their offspring (kittens and subadults) were more likely to be trapped than resident floaters or dispersing (unrelated) lynx. Conversely, we obtained more data for unrelated lynx and higher numbers of territorials using non-invasive sampling (faeces). When invasive and non-invasive samples were analysed separately, the spatial organisation of lynx (in terms of female philopatry and females and males occupying permanent ranges) affected measures of genetic diversity in such a way that estimates of genetic diversity were reduced if only invasive samples were considered. It appears that, at small spatial scales, invasive sampling using box traps may underestimate the genetic diversity in carnivores with permanent ranges and philopatry such as the Eurasian lynx. As non-invasive sampling can also provide additional data on diet and spatial organisation, we advocate the use of such samples for conservation genetic studies of vulnerable, endangered or data deficient territorial species.
format Online
Article
Text
id pubmed-6510455
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-65104552019-05-23 Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species Mengüllüoğlu, Deniz Fickel, Jörns Hofer, Heribert Förster, Daniel W. PLoS One Research Article The Caucasian lynx, Lynx lynx dinniki, has one of the southernmost distributions in the Eurasian lynx range, covering Anatolian Turkey, the Caucasus and Iran. Little is known about the biology and the genetic status of this subspecies. To collect baseline genetic, ecological and behavioural data and benefit future conservation of L. l. dinniki, we monitored 11 lynx territories (396 km(2)) in northwestern Anatolia. We assessed genetic diversity of this population by non-invasively collecting 171 faecal samples and trapped and sampled 12 lynx individuals using box traps. We observed high allelic variation at 11 nuclear microsatellite markers, and found no signs of inbreeding despite the potential isolation of this population. We obtained similar numbers of distinct genotypes from the two sampling sources. Our results indicated that first order female relatives occupy neighbouring territories (female philopatry) and that territorial male lynx were highly unrelated to each other and to female territorial lynx, suggesting long distance male dispersal. Particular male and female resident territorial lynx and their offspring (kittens and subadults) were more likely to be trapped than resident floaters or dispersing (unrelated) lynx. Conversely, we obtained more data for unrelated lynx and higher numbers of territorials using non-invasive sampling (faeces). When invasive and non-invasive samples were analysed separately, the spatial organisation of lynx (in terms of female philopatry and females and males occupying permanent ranges) affected measures of genetic diversity in such a way that estimates of genetic diversity were reduced if only invasive samples were considered. It appears that, at small spatial scales, invasive sampling using box traps may underestimate the genetic diversity in carnivores with permanent ranges and philopatry such as the Eurasian lynx. As non-invasive sampling can also provide additional data on diet and spatial organisation, we advocate the use of such samples for conservation genetic studies of vulnerable, endangered or data deficient territorial species. Public Library of Science 2019-05-10 /pmc/articles/PMC6510455/ /pubmed/31075125 http://dx.doi.org/10.1371/journal.pone.0216549 Text en © 2019 Mengüllüoğlu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Mengüllüoğlu, Deniz
Fickel, Jörns
Hofer, Heribert
Förster, Daniel W.
Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species
title Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species
title_full Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species
title_fullStr Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species
title_full_unstemmed Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species
title_short Non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: Caucasian lynx as a case species
title_sort non-invasive faecal sampling reveals spatial organization and improves measures of genetic diversity for the conservation assessment of territorial species: caucasian lynx as a case species
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6510455/
https://www.ncbi.nlm.nih.gov/pubmed/31075125
http://dx.doi.org/10.1371/journal.pone.0216549
work_keys_str_mv AT mengulluogludeniz noninvasivefaecalsamplingrevealsspatialorganizationandimprovesmeasuresofgeneticdiversityfortheconservationassessmentofterritorialspeciescaucasianlynxasacasespecies
AT fickeljorns noninvasivefaecalsamplingrevealsspatialorganizationandimprovesmeasuresofgeneticdiversityfortheconservationassessmentofterritorialspeciescaucasianlynxasacasespecies
AT hoferheribert noninvasivefaecalsamplingrevealsspatialorganizationandimprovesmeasuresofgeneticdiversityfortheconservationassessmentofterritorialspeciescaucasianlynxasacasespecies
AT forsterdanielw noninvasivefaecalsamplingrevealsspatialorganizationandimprovesmeasuresofgeneticdiversityfortheconservationassessmentofterritorialspeciescaucasianlynxasacasespecies