Myrmecologicalnews.org

  • Journal home
  • About – Aims and scope
  • About – Open access
  • Editorial information
  • Publisher
  • Author instructions
  • Submission
  • Current and past volumes (PDFs)
    • Current Volume
    • Volume 35 (2025)
    • Volume 34 (2024)
    • Volume 33 (2023)
    • Volume 32 (2022)
    • Volume 31 (2021)
    • Volume 30 (2020)
    • Volume 29 (2019)
    • Volume 28 (2018)
    • Volume 27 (2018)
    • Volume 26 (2018)
    • Volume 25 (2017)
    • Volume 24 (2017)
    • Volume 23 (2016)
    • Volume 22 (2016)
    • Volume 21 (2015)
    • Volume 20 (2014)
    • Volume 19 (2014)
    • Volume 18 (2013)
    • Volume 17 (2012)
    • Volume 16 (2012)
    • Volume 15 (2011)
    • Volume 14 (2011)
    • Volume 13 (2010)
    • Volume 12 (2009)
    • Volume 11 (2008)
    • Volume 10 (2007)
    • Volume 9 (2006)
    • Volume 8 (2006)
    • Volume 7 (2005)
    • Volume 6 (2004)
    • Volume 5 (2003)
    • Volume 4 (2001)
    • Volume 3 (1999)
    • Volume 2 (1998)
    • Volume 1 (1995)
  • Buy print version (Vol. 1 - 27)
  • Contact us
  • In the media
  • Imprint
  • Sign up to Newsletter
  • Visit our Blog
  • Follow us on Twitter
  • Follow us on Mastodon
  1. Journal Home
  2. Current and past volumes (PDFs)
  3. Volume 33 (2023)
  4. Myrmecol. News 33: 77-89

Myrmecol. News 33: 77-89

Download .pdf file (1271KB)

Export citation in TXT format

Export citation in RIS format

  • Interested in receiving weekly updates on Myrmecol. News & Myrmecol. News Blog? Sign up to Newsletter.
  • DOI: https://doi.org/10.25849/myrmecol.news_033:077
  • Open Access: CC BY 4.0
  • Author: Pohl, M., Frank, E.T. & Gadau, J.
  • Year: 2023
  • Title: Socio- and population-genetic analyses of two West-African ponerine species (Megaponera analis and Paltothyreus tarsatus) with winged and wingless queens (Hymenoptera: Formicidae)
  • Journal: Myrmecological News
  • Volume: 33
  • Pages: 77-89
  • Type of contribution: Original Article
  • Supplementary material: Yes
  • Abstract: Depending on the reproductive strategy of a species, the same environmental barrier can affect gene flow differently. In this study, we analyzed the effects of a river on the gene flow of two ant species, one with wingless queens (Megaponera analis) and one with winged queens (Paltothyreus tarsatus), both with winged males. Colonies were sampled in the Comoé National Park, Côte d’Ivoire, from April to June, in 2017 and 2019. A detailed sociogenetic analysis corroborated monogyny and monandry for M. analis (74 of 78 colonies), including 29 colonies with evidence of recent fission events. In contrast, the sociobiological structure of P. tarsatus was more heterogeneous. Nine colonies were monogynous and monandrous, 14 colonies were either polygynous and / or polyandrous, and worker genotypes in seven colonies can only be explained by polygyny. For both species, we quantified gene flow between four sympatric subpopulations that are separated by the Comoé river. Comparisons of the different populations using two mitochondrial genes showed a clear substructure in M. analis, separating the respective river sides, while no substructure was found in P. tarsatus. Microsatellites, as likely neutral nuclear markers, showed, in contrast to mitochondrial DNA analyses, no significant substructure between any of the four subpopulations for both species. Even though microsatellites have been mostly replaced in population genetics by large-scale single nucleotide polymorphism analyses (e.g., based on restriction site associated DNA or whole genome sequencing), they are still the most efficient way to determine the social structure of social insect colonies based on thousands of samples (in our case, approx. 2000) or revealing atypical reproductive systems like genetic caste determination. These microsatellite analyses allowed us to show that gene flow in M. analis through wingless queens is restricted but compensated for by male dispersal on the nuclear DNA level. This underlines the importance of having at least one winged sexual alate in the reproductive strategy of social insects to allow for sufficient gene flow across minor environmental barriers.
  • Key words: Alates, ergatoid queens, dispersal ability, population genetics, Ponerinae, natural barriers, colony fission.
  • Publisher: The Austrian Society of Entomofaunistics
  • ISSN: 1997-3500
  • Check out the accompanying blog contribution: https://blog.myrmecologicalnews.org/2023/02/02/how-population-genetics-uncovers-the-secret-lives-of-ants-and-why-it-matters/

Myrmecol. News 33: 77-89, Supplement

Download .pdf file (1586KB)

Export citation in TXT format

Export citation in RIS format

  • Interested in receiving weekly updates on Myrmecol. News & Myrmecol. News Blog? Sign up to Newsletter.
  • DOI: https://doi.org/10.25849/myrmecol.news_033:077
  • Open Access: CC BY 4.0
  • Author: Pohl, M., Frank, E.T. & Gadau, J.
  • Year: 2023
  • Title: Socio- and population-genetic analyses of two West-African ponerine species (Megaponera analis and Paltothyreus tarsatus) with winged and wingless queens (Hymenoptera: Formicidae)
  • Journal: Myrmecological News
  • Volume: 33
  • Pages: 77-89
  • Type of contribution: Original Article
  • Supplementary material: Yes
  • Abstract: Depending on the reproductive strategy of a species, the same environmental barrier can affect gene flow differently. In this study, we analyzed the effects of a river on the gene flow of two ant species, one with wingless queens (Megaponera analis) and one with winged queens (Paltothyreus tarsatus), both with winged males. Colonies were sampled in the Comoé National Park, Côte d’Ivoire, from April to June, in 2017 and 2019. A detailed sociogenetic analysis corroborated monogyny and monandry for M. analis (74 of 78 colonies), including 29 colonies with evidence of recent fission events. In contrast, the sociobiological structure of P. tarsatus was more heterogeneous. Nine colonies were monogynous and monandrous, 14 colonies were either polygynous and / or polyandrous, and worker genotypes in seven colonies can only be explained by polygyny. For both species, we quantified gene flow between four sympatric subpopulations that are separated by the Comoé river. Comparisons of the different populations using two mitochondrial genes showed a clear substructure in M. analis, separating the respective river sides, while no substructure was found in P. tarsatus. Microsatellites, as likely neutral nuclear markers, showed, in contrast to mitochondrial DNA analyses, no significant substructure between any of the four subpopulations for both species. Even though microsatellites have been mostly replaced in population genetics by large-scale single nucleotide polymorphism analyses (e.g., based on restriction site associated DNA or whole genome sequencing), they are still the most efficient way to determine the social structure of social insect colonies based on thousands of samples (in our case, approx. 2000) or revealing atypical reproductive systems like genetic caste determination. These microsatellite analyses allowed us to show that gene flow in M. analis through wingless queens is restricted but compensated for by male dispersal on the nuclear DNA level. This underlines the importance of having at least one winged sexual alate in the reproductive strategy of social insects to allow for sufficient gene flow across minor environmental barriers.
  • Key words: Alates, ergatoid queens, dispersal ability, population genetics, Ponerinae, natural barriers, colony fission.
  • Publisher: The Austrian Society of Entomofaunistics
  • ISSN: 1997-3500
  • Check out the accompanying blog contribution: https://blog.myrmecologicalnews.org/2023/02/02/how-population-genetics-uncovers-the-secret-lives-of-ants-and-why-it-matters/

© 2026 Myrmecologicalnews.org

To Top