Parasite infestation influences life history but not boldness behavior in placental live-bearing fish

被引:0
作者
Andres Hagmayer
Andrew I. Furness
Bart J. A. Pollux
机构
[1] Wageningen University,Experimental Zoology Group, Department of Animal Sciences
[2] University of California,Department of Ecology and Evolutionary Biology
[3] University of Hull,Department of Biological and Marine Sciences
来源
Oecologia | 2020年 / 194卷
关键词
Matrotrophy; Parasites; Placenta; Poeciliidae;
D O I
暂无
中图分类号
学科分类号
摘要
Parasites can negatively affect the reproductive success of hosts. Placental species may be particularly susceptible, because parasite-induced stress during pregnancy could potentially influence embryo development. Here, we examine the consequences of a trematode infestation (black spot disease, BSD) for fetal development and adult behavior in 19 natural populations of the placental live-bearing fish species Poeciliopsis retropinna (Poeciliidae) in Costa Rica. First, we observed substantial variation in parasite infestation among populations which correlated with a number of local environmental conditions (elevation, river width, depth, and flow velocity). Furthermore, we observed substantial variation in parasite infestation among females within populations associated with maternal age and size. We found that the infestation rate significantly influenced embryonic development, with more heavily parasitized females producing smaller and worse-conditioned offspring at birth, possibly, because a costly immune response during pregnancy limits, either directly or indirectly, nourishment to developing embryos. Finally, a behavioral experiment in the field showed that the infestation rate did not affect an individual’s boldness. Our study indicates that in placental live-bearing fish parasite infestation leads to reduced embryo provisioning during pregnancy, resulting in a smaller offspring size and quality at birth potentially with negative implications for offspring fitness.
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页码:635 / 648
页数:13
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  • [1] Abràmoff MD(2004)Image processing with image J Biophotonics Int 11 36-41
  • [2] Magalhães PJ(2002)Maternal malaria: plasmodium falciparum sequestration in the placenta Parasitol Res 88 715-723
  • [3] Ram SJ(2010)Is mom in charge? Implications of resource provisioning on the evolution of the placenta Evolution (N Y) 64 3172-3182
  • [4] Andrews KT(2010)Parasitism and the evolutionary ecology of animal personality Philos Trans R Soc B Biol Sci 365 4077-4088
  • [5] Lanzer M(2000)Effects of parasites on fish behaviour: a review and evolutionary perspective Rev Fish Biol Fish 10 131-165
  • [6] Banet AI(2006)Cross-generational environmental effects and the evolution of offspring size in the Trinidadian Guppy Evolution (N Y) 60 348-361
  • [7] Au AG(2015)Evolution of vertebrate viviparity and specializations for fetal nutrition: a quantitative and qualitative analysis J Morphol 276 961-990
  • [8] Reznick DN(1982)Parasite-induced susceptibility to predation in diplostomiasis Parasitology 85 495-501
  • [9] Barber I(2017)glmmTMB balances speed and flexibility among packages for zero-inflated generalized linear mixed modeling R J 9 378-400
  • [10] Dingemanse NJ(1986)Ectoparasitism as a cost of coloniality in cliff swallows ( Ecology 67 1206-1218