Digest: Rare male offspring highlight an alternative pathway to obligate asexuality

Author:

Roy Scott William1ORCID

Affiliation:

1. Department of Biology, San Francisco State University , San Francisco, CA , United States

Abstract

Abstract Obligate asexuality has arisen many times in eukaryotes, often related to the disrupted function of the core meiotic machinery. For obligately asexual lineages that evolve from facultatively asexual ancestors, there exists another possibility, namely altered regulation of preexisting asexual reproductive processes to produce obligate asexuality. These different pathways leave different signatures in properties of meiosis and recombination that could provide insights into the origin of asexuality. A new study by Molinier et al. (2023) investigates this problem and finds largely typical recombination rates during spermatogenesis of rare, asexually produced sons of obligately asexual Daphnia pulex, suggesting that regulation of reproduction, rather than disruption of meiosis, underpins obligate asexuality in Daphnia.

Publisher

Oxford University Press (OUP)

Reference6 articles.

1. Parthenogenesis as a solution to hybrid sterility: The mechanistic basis of meiotic distortions in clonal and sterile hybrids;Dedukh,2020

2. The spread of a transposon insertion in Rec8 is associated with obligate asexuality in Daphnia;Eads,2012

3. The origin and genetic basis of obligate parthenogenesis in Daphnia pulex;Innes;Evolution,1988

4. No recombination suppression in asexually produced males of Daphnia pulex;Molinier,2023

5. Condition-dependent sex: Who does it, when and why;Ram,2016

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