Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes

Abstract Background The drivers of species co-existence in local communities are especially enigmatic for assemblages of morphologically cryptic species. Here we characterize the colonization dynamics and abundance of nine species of Caenorhabditis nematodes in neotropical French Guiana, the most sp...

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Main Authors: Céline Ferrari, Romain Salle, Nicolas Callemeyn-Torre, Richard Jovelin, Asher D. Cutter, Christian Braendle
Format: Article
Language:English
Published: BMC 2017-12-01
Series:BMC Ecology
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12898-017-0150-z
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spelling doaj-8d3ab7d4c03a4eff805f1024546242752021-09-02T12:03:09ZengBMCBMC Ecology1472-67852017-12-0117111310.1186/s12898-017-0150-zEphemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodesCéline Ferrari0Romain Salle1Nicolas Callemeyn-Torre2Richard Jovelin3Asher D. Cutter4Christian Braendle5CNRS, IBV, Inserm, Université Côte d’AzurCNRS, IBV, Inserm, Université Côte d’AzurCNRS, IBV, Inserm, Université Côte d’AzurDepartment of Ecology and Evolutionary Biology, University of TorontoDepartment of Ecology and Evolutionary Biology, University of TorontoCNRS, IBV, Inserm, Université Côte d’AzurAbstract Background The drivers of species co-existence in local communities are especially enigmatic for assemblages of morphologically cryptic species. Here we characterize the colonization dynamics and abundance of nine species of Caenorhabditis nematodes in neotropical French Guiana, the most speciose known assemblage of this genus, with resource use overlap and notoriously similar external morphology despite deep genomic divergence. Methods To characterize the dynamics and specificity of colonization and exploitation of ephemeral resource patches, we conducted manipulative field experiments and the largest sampling effort to date for Caenorhabditis outside of Europe. This effort provides the first in-depth quantitative analysis of substrate specificity for Caenorhabditis in natural, unperturbed habitats. Results We amassed a total of 626 strain isolates from nine species of Caenorhabditis among 2865 substrate samples. With the two new species described here (C. astrocarya and C. dolens), we estimate that our sampling procedures will discover few additional species of these microbivorous animals in this tropical rainforest system. We demonstrate experimentally that the two most prevalent species (C. nouraguensis and C. tropicalis) rapidly colonize fresh resource patches, whereas at least one rarer species shows specialist micro-habitat fidelity. Conclusion Despite the potential to colonize rapidly, these ephemeral patchy resources of rotting fruits and flowers are likely to often remain uncolonized by Caenorhabditis prior to their complete decay, implying dispersal-limited resource exploitation. We hypothesize that a combination of rapid colonization, high ephemerality of resource patches, and species heterogeneity in degree of specialization on micro-habitats and life histories enables a dynamic co-existence of so many morphologically cryptic species of Caenorhabditis.http://link.springer.com/article/10.1186/s12898-017-0150-zCaenorhabditis astrocaryaCaenorhabditis dolensCaenorhabditis elegansHabitat sharingMorphological crypsisMetapopulations
collection DOAJ
language English
format Article
sources DOAJ
author Céline Ferrari
Romain Salle
Nicolas Callemeyn-Torre
Richard Jovelin
Asher D. Cutter
Christian Braendle
spellingShingle Céline Ferrari
Romain Salle
Nicolas Callemeyn-Torre
Richard Jovelin
Asher D. Cutter
Christian Braendle
Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes
BMC Ecology
Caenorhabditis astrocarya
Caenorhabditis dolens
Caenorhabditis elegans
Habitat sharing
Morphological crypsis
Metapopulations
author_facet Céline Ferrari
Romain Salle
Nicolas Callemeyn-Torre
Richard Jovelin
Asher D. Cutter
Christian Braendle
author_sort Céline Ferrari
title Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes
title_short Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes
title_full Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes
title_fullStr Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes
title_full_unstemmed Ephemeral-habitat colonization and neotropical species richness of Caenorhabditis nematodes
title_sort ephemeral-habitat colonization and neotropical species richness of caenorhabditis nematodes
publisher BMC
series BMC Ecology
issn 1472-6785
publishDate 2017-12-01
description Abstract Background The drivers of species co-existence in local communities are especially enigmatic for assemblages of morphologically cryptic species. Here we characterize the colonization dynamics and abundance of nine species of Caenorhabditis nematodes in neotropical French Guiana, the most speciose known assemblage of this genus, with resource use overlap and notoriously similar external morphology despite deep genomic divergence. Methods To characterize the dynamics and specificity of colonization and exploitation of ephemeral resource patches, we conducted manipulative field experiments and the largest sampling effort to date for Caenorhabditis outside of Europe. This effort provides the first in-depth quantitative analysis of substrate specificity for Caenorhabditis in natural, unperturbed habitats. Results We amassed a total of 626 strain isolates from nine species of Caenorhabditis among 2865 substrate samples. With the two new species described here (C. astrocarya and C. dolens), we estimate that our sampling procedures will discover few additional species of these microbivorous animals in this tropical rainforest system. We demonstrate experimentally that the two most prevalent species (C. nouraguensis and C. tropicalis) rapidly colonize fresh resource patches, whereas at least one rarer species shows specialist micro-habitat fidelity. Conclusion Despite the potential to colonize rapidly, these ephemeral patchy resources of rotting fruits and flowers are likely to often remain uncolonized by Caenorhabditis prior to their complete decay, implying dispersal-limited resource exploitation. We hypothesize that a combination of rapid colonization, high ephemerality of resource patches, and species heterogeneity in degree of specialization on micro-habitats and life histories enables a dynamic co-existence of so many morphologically cryptic species of Caenorhabditis.
topic Caenorhabditis astrocarya
Caenorhabditis dolens
Caenorhabditis elegans
Habitat sharing
Morphological crypsis
Metapopulations
url http://link.springer.com/article/10.1186/s12898-017-0150-z
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