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Influence of mating strategies on seminal material investment in crabs
Pretterebner, K.; Pardo, L.M.; Paschke, K.; Riveros, M.P. (2022). Influence of mating strategies on seminal material investment in crabs. NPG Scientific Reports 12(1): 18376. https://dx.doi.org/10.1038/s41598-022-21116-4
In: Scientific Reports (Nature Publishing Group). Nature Publishing Group: London. ISSN 2045-2322; e-ISSN 2045-2322, meer
Peer reviewed article  

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Trefwoorden
    Homalaspis plana (H. Milne Edwards, 1834) [WoRMS]; Romaleon setosum (Molina, 1782) [WoRMS]
    Marien/Kust

Auteurs  Top 
  • Pretterebner, K.
  • Pardo, L.M.
  • Paschke, K.
  • Riveros, M.P.

Abstract
    Reproduction involves high energetic costs which are related to behaviour and gamete production. In females energy allocation to gamete production has been well documented. However, estimations of male investment in seminal material are scarce. The present study aims to assess and compare male investment in four brachyuran species by determining biochemical substrates present in the vasa deferentia to subsequently estimate energetic investment during the reproductive cycle. We identified two groups with contrasting energy investments. Two species, Homalaspis plana and Romaleon setosum, showed high investment due to significant quantities of proteins and lipids. Both species are characterised by large and complex vasa deferentia, and the formation of a remarkably large sperm plug deposited to the female after copulation as a sperm competition avoidance strategy. In contrast, Metacarcinus edwardsii and Taliepus dentatus invested little energy in their smaller-sized and simpler vasa deferentia. Morpho-functional traits may play a key role in determining the investment, which may also be influenced by mechanisms (i.e. mating tactics) to prevent sperm competition and the intensity of polygyny. This study emphasises the high amount of energy males invest in seminal material and highlights the diversity of mating strategies in Brachyura, which are reflected even on the physiological level.

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