Literature DB >> 16019005

Larval helminths in intermediate hosts: does competition early in life determine the fitness of adult parasites?

B L Fredensborg1, R Poulin.   

Abstract

Density-dependent effects on parasite fitness have been documented from adult helminths in their definitive hosts. There have, however, been no studies on the cost of sharing an intermediate host with other parasites in terms of reduced adult parasite fecundity. Even if larval parasites suffer a reduction in size, caused by crowding, virtually nothing is known about longer-lasting effects after transmission to the definitive host. This study is the first to use in vitro cultivation with feeding of adult trematodes to investigate how numbers of parasites in the intermediate host affect the size and fecundity of adult parasites. For this purpose, we examined two different infracommunities of parasites in crustacean hosts. Firstly, we used experimental infections of Maritrema novaezealandensis in the amphipod, Paracalliope novizealandiae, to investigate potential density-dependent effects in single-species infections. Secondly, we used the crab, Macrophthalmus hirtipes (Ocypodidae), naturally infected by the trematodes, M. novaezealandensis and Levinseniella sp., the acanthocephalan, Profilicollis spp., and an acuariid nematode. These four helminths all develop and grow in their crustacean host before transmission to their bird definitive host by predation. In experimental infections, we found an intensity-dependent establishment success, with a decrease in the success rate of cercariae developing into infective metacercariae with an increasing dose of cercariae applied to each amphipod. In natural infections, we found that M. novaezealandensis-metacercariae achieved a smaller volume, on average, when infrapopulations of this parasite were large. Small metacercariae produced small in vitro-adult worms, which in turn produced fewer eggs. Crowding effects in the intermediate host thus were expressed at the adult stage in spite of the worms being cultured in a nutrient-rich medium. Furthermore, excystment success and egg-production in M. novaezealandensis in naturally infected crabs were influenced by the number of co-occurring Profilicollis cystacanths, indicating interspecific interactions between the two species. Our results thus indicate that the infracommunity of larval helminths in their intermediate host is interactive and that any density-dependent effect in the intermediate host may have lasting effects on individual parasite fitness.

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Year:  2005        PMID: 16019005     DOI: 10.1016/j.ijpara.2005.05.005

Source DB:  PubMed          Journal:  Int J Parasitol        ISSN: 0020-7519            Impact factor:   3.981


  11 in total

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3.  Larval size in acanthocephalan parasites: influence of intraspecific competition and effects on intermediate host behavioural changes.

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4.  Non-native gobies facilitate the transmission of Bucephalus polymorphus (Trematoda).

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5.  Assessing the effects of trematode infection on invasive green crabs in eastern north america.

Authors:  April M H Blakeslee; Carolyn L Keogh; Amy E Fowler; Blaine D Griffen
Journal:  PLoS One       Date:  2015-06-01       Impact factor: 3.240

6.  Establishment Success of the Beetle Tapeworm Hymenolepis diminuta Depends on Dose and Host Body Condition.

Authors:  Suraj Dhakal; Sebastian Micki Buss; Elizabeth Jane Cassidy; Nicolai Vitt Meyling; Brian Lund Fredensborg
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7.  Comparative analysis of helminth infectivity: growth in intermediate hosts increases establishment rates in the next host.

Authors:  Spencer Froelick; Laura Gramolini; Daniel P Benesh
Journal:  Proc Biol Sci       Date:  2021-03-17       Impact factor: 5.349

8.  Growth and ontogeny of the tapeworm Schistocephalus solidus in its copepod first host affects performance in its stickleback second intermediate host.

Authors:  Daniel P Benesh; Nina Hafer
Journal:  Parasit Vectors       Date:  2012-05-07       Impact factor: 3.876

9.  Influence of host nutritional condition on post-infection traits in the association between the manipulative acanthocephalan Pomphorhynchus laevis and the amphipod Gammarus pulex.

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Review 10.  Cooperation and conflict in host manipulation: interactions among macro-parasites and micro-organisms.

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