Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction

The current population of brown bear (Ursus arctos) in Trentino is the result of a reintroduction which aimed at rescuing autochthonous individuals from the near extinction. Between 1999 and 2002, 10 bears were trapped in neighbouring Slovenia and released in Trentino. Since then, the population has...

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Main Authors: Marinangeli, L., Rossi, C., Crestanello, B., Pedrotti, L., Groff, C., Mucci, N., Davoli, F., Nonnis Marzano, F., Hauffe, H. C.
Other Authors: Hauffe, H.C.
Format: Conference Object
Language:English
Published: country:IT 2022
Subjects:
Online Access:https://hdl.handle.net/10449/88195
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author Marinangeli, L.
Rossi, C.
Crestanello, B.
Pedrotti, L.
Groff, C.
Mucci, N.
Davoli, F.
Nonnis Marzano, F.
Hauffe, H. C.
author2 Marinangeli, L.
Rossi, C.
Crestanello, B.
Pedrotti, L.
Groff, C.
Mucci, N.
Davoli, F.
Nonnis Marzano, F.
Hauffe, H.C.
author_facet Marinangeli, L.
Rossi, C.
Crestanello, B.
Pedrotti, L.
Groff, C.
Mucci, N.
Davoli, F.
Nonnis Marzano, F.
Hauffe, H. C.
author_sort Marinangeli, L.
collection Fondazione Edmund Mach: IRIS-OpenPub
description The current population of brown bear (Ursus arctos) in Trentino is the result of a reintroduction which aimed at rescuing autochthonous individuals from the near extinction. Between 1999 and 2002, 10 bears were trapped in neighbouring Slovenia and released in Trentino. Since then, the population has increased faster than expected, but remained isolated in a small geographical area. The population has been monitored genetically since 2003, and a study by de Barba et al. (2010), using non-invasive samples collected in 2002-2008 and 10 microsatellite (STR) loci, found a significant decrease in expected heterozygosity (He) and allelic richness (A) compared to founders. Here, we studied the genetic variation of the same population for a longer time period analysing the 174 genotypes at 15 STR loci observed until 2019. Changes in diversity indices were estimated according to different subdivisions of the population based on: 1. Year (considering both 15 and 10 STR loci in order to compare the two studies). 2. Generation (founder population F0, first generation F1, etc.) 3. Cohort (individuals born in the same 5-year period, the generation time calculated for this species). 4. Group (30 randomly-chosen individuals from 3-year periods to test if standard population genetic studies would accurately estimate genetic diversity). All the subdivision strategies showed an early increase in diversity indices He and A, followed by a rapid reduction through time and a stabilization of the values in recent years; trend more significant for 15 than 10 STR. Interestingly, levels of inbreeding (Fis) increased, but not as dramatically as expected, given the small number of founders and males which contributed to the gene pool. Simulations indicate that genetic diversity will continue to decrease, although management strategies such as exchanging individuals with or a new reintroduction of few individuals from Slovenia could reverse the trend. These results underline the importance of costantly monitoring small reintroduced ...
format Conference Object
genre Ursus arctos
genre_facet Ursus arctos
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language English
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op_relation ispartofbook:SIBE 2022: 9° Congresso della Società Italiana di Biologia Evoluzionistica, Ancona, 4-7 September 2022
SIBE Evoluzione 2022: 9° Congresso della Società Italiana di Biologia Evoluzionistica
firstpage:37
https://hdl.handle.net/10449/88195
op_rights info:eu-repo/semantics/openAccess
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spelling ftiasma:oai:openpub.fmach.it:10449/88195 2025-02-09T14:39:27+00:00 Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction Marinangeli, L. Rossi, C. Crestanello, B. Pedrotti, L. Groff, C. Mucci, N. Davoli, F. Nonnis Marzano, F. Hauffe, H. C. Marinangeli, L. Rossi, C. Crestanello, B. Pedrotti, L. Groff, C. Mucci, N. Davoli, F. Nonnis Marzano, F. Hauffe, H.C. 2022 https://hdl.handle.net/10449/88195 eng eng country:IT ispartofbook:SIBE 2022: 9° Congresso della Società Italiana di Biologia Evoluzionistica, Ancona, 4-7 September 2022 SIBE Evoluzione 2022: 9° Congresso della Società Italiana di Biologia Evoluzionistica firstpage:37 https://hdl.handle.net/10449/88195 info:eu-repo/semantics/openAccess Settore BIOS-08/A - Biologia molecolare info:eu-repo/semantics/conferenceObject 2022 ftiasma 2025-01-14T15:51:43Z The current population of brown bear (Ursus arctos) in Trentino is the result of a reintroduction which aimed at rescuing autochthonous individuals from the near extinction. Between 1999 and 2002, 10 bears were trapped in neighbouring Slovenia and released in Trentino. Since then, the population has increased faster than expected, but remained isolated in a small geographical area. The population has been monitored genetically since 2003, and a study by de Barba et al. (2010), using non-invasive samples collected in 2002-2008 and 10 microsatellite (STR) loci, found a significant decrease in expected heterozygosity (He) and allelic richness (A) compared to founders. Here, we studied the genetic variation of the same population for a longer time period analysing the 174 genotypes at 15 STR loci observed until 2019. Changes in diversity indices were estimated according to different subdivisions of the population based on: 1. Year (considering both 15 and 10 STR loci in order to compare the two studies). 2. Generation (founder population F0, first generation F1, etc.) 3. Cohort (individuals born in the same 5-year period, the generation time calculated for this species). 4. Group (30 randomly-chosen individuals from 3-year periods to test if standard population genetic studies would accurately estimate genetic diversity). All the subdivision strategies showed an early increase in diversity indices He and A, followed by a rapid reduction through time and a stabilization of the values in recent years; trend more significant for 15 than 10 STR. Interestingly, levels of inbreeding (Fis) increased, but not as dramatically as expected, given the small number of founders and males which contributed to the gene pool. Simulations indicate that genetic diversity will continue to decrease, although management strategies such as exchanging individuals with or a new reintroduction of few individuals from Slovenia could reverse the trend. These results underline the importance of costantly monitoring small reintroduced ... Conference Object Ursus arctos Fondazione Edmund Mach: IRIS-OpenPub
spellingShingle Settore BIOS-08/A - Biologia molecolare
Marinangeli, L.
Rossi, C.
Crestanello, B.
Pedrotti, L.
Groff, C.
Mucci, N.
Davoli, F.
Nonnis Marzano, F.
Hauffe, H. C.
Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction
title Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction
title_full Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction
title_fullStr Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction
title_full_unstemmed Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction
title_short Changes in neutral genetic variability of the isolated brown bear (Ursus arctos) population of Trentino (Italy) two decades after its reintroduction
title_sort changes in neutral genetic variability of the isolated brown bear (ursus arctos) population of trentino (italy) two decades after its reintroduction
topic Settore BIOS-08/A - Biologia molecolare
topic_facet Settore BIOS-08/A - Biologia molecolare
url https://hdl.handle.net/10449/88195