Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses
Abstract Background Parasites can either respond to differences in immune defenses that exist between individual hosts plastically or, alternatively, follow a genetically canalized (“hard wired”) program of infection. Assuming that large-scale functional plasticity would be discernible in the parasi...
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doaj-4d704b84b00e4322b29e1ebcc05a5cab2020-11-25T02:26:20ZengBMCBMC Genomics1471-21642017-09-0118111710.1186/s12864-017-4095-6Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defensesTotta Ehret0Simone Spork1Christoph Dieterich2Richard Lucius3Emanuel Heitlinger4Institute of Biology, Molecular Parasitology, Humboldt-Universität zu BerlinInstitute of Biology, Molecular Parasitology, Humboldt-Universität zu BerlinUniversity Hospital Heidelberg - German Center for Cardiovascular Research (DZHK), Analysezentrum IIIInstitute of Biology, Molecular Parasitology, Humboldt-Universität zu BerlinInstitute of Biology, Molecular Parasitology, Humboldt-Universität zu BerlinAbstract Background Parasites can either respond to differences in immune defenses that exist between individual hosts plastically or, alternatively, follow a genetically canalized (“hard wired”) program of infection. Assuming that large-scale functional plasticity would be discernible in the parasite transcriptome we have performed a dual RNA-seq study of the lifecycle of Eimeria falciformis using infected mice with different immune status as models for coccidian infections. Results We compared parasite and host transcriptomes (dual transcriptome) between naïve and challenge infected mice, as well as between immune competent and immune deficient ones. Mice with different immune competence show transcriptional differences as well as differences in parasite reproduction (oocyst shedding). Broad gene categories represented by differently abundant host genes indicate enrichments for immune reaction and tissue repair functions. More specifically, TGF-beta, EGF, TNF and IL-1 and IL-6 are examples of functional annotations represented differently depending on host immune status. Much in contrast, parasite transcriptomes were neither different between Coccidia isolated from immune competent and immune deficient mice, nor between those harvested from naïve and challenge infected mice. Instead, parasite transcriptomes have distinct profiles early and late in infection, characterized largely by biosynthesis or motility associated functional gene groups, respectively. Extracellular sporozoite and oocyst stages showed distinct transcriptional profiles and sporozoite transcriptomes were found enriched for species specific genes and likely pathogenicity factors. Conclusion We propose that the niche and host-specific parasite E. falciformis uses a genetically canalized program of infection. This program is likely fixed in an evolutionary process rather than employing phenotypic plasticity to interact with its host. This in turn might limit the potential of the parasite to adapt to new host species or niches, forcing it to coevolve with its host.http://link.springer.com/article/10.1186/s12864-017-4095-6Phenotypic plasticityParasite lifecycleTranscriptional plasticityApicomplexaDual RNA-seqDual transcriptomics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Totta Ehret Simone Spork Christoph Dieterich Richard Lucius Emanuel Heitlinger |
spellingShingle |
Totta Ehret Simone Spork Christoph Dieterich Richard Lucius Emanuel Heitlinger Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses BMC Genomics Phenotypic plasticity Parasite lifecycle Transcriptional plasticity Apicomplexa Dual RNA-seq Dual transcriptomics |
author_facet |
Totta Ehret Simone Spork Christoph Dieterich Richard Lucius Emanuel Heitlinger |
author_sort |
Totta Ehret |
title |
Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses |
title_short |
Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses |
title_full |
Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses |
title_fullStr |
Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses |
title_full_unstemmed |
Dual RNA-seq reveals no plastic transcriptional response of the coccidian parasite Eimeria falciformis to host immune defenses |
title_sort |
dual rna-seq reveals no plastic transcriptional response of the coccidian parasite eimeria falciformis to host immune defenses |
publisher |
BMC |
series |
BMC Genomics |
issn |
1471-2164 |
publishDate |
2017-09-01 |
description |
Abstract Background Parasites can either respond to differences in immune defenses that exist between individual hosts plastically or, alternatively, follow a genetically canalized (“hard wired”) program of infection. Assuming that large-scale functional plasticity would be discernible in the parasite transcriptome we have performed a dual RNA-seq study of the lifecycle of Eimeria falciformis using infected mice with different immune status as models for coccidian infections. Results We compared parasite and host transcriptomes (dual transcriptome) between naïve and challenge infected mice, as well as between immune competent and immune deficient ones. Mice with different immune competence show transcriptional differences as well as differences in parasite reproduction (oocyst shedding). Broad gene categories represented by differently abundant host genes indicate enrichments for immune reaction and tissue repair functions. More specifically, TGF-beta, EGF, TNF and IL-1 and IL-6 are examples of functional annotations represented differently depending on host immune status. Much in contrast, parasite transcriptomes were neither different between Coccidia isolated from immune competent and immune deficient mice, nor between those harvested from naïve and challenge infected mice. Instead, parasite transcriptomes have distinct profiles early and late in infection, characterized largely by biosynthesis or motility associated functional gene groups, respectively. Extracellular sporozoite and oocyst stages showed distinct transcriptional profiles and sporozoite transcriptomes were found enriched for species specific genes and likely pathogenicity factors. Conclusion We propose that the niche and host-specific parasite E. falciformis uses a genetically canalized program of infection. This program is likely fixed in an evolutionary process rather than employing phenotypic plasticity to interact with its host. This in turn might limit the potential of the parasite to adapt to new host species or niches, forcing it to coevolve with its host. |
topic |
Phenotypic plasticity Parasite lifecycle Transcriptional plasticity Apicomplexa Dual RNA-seq Dual transcriptomics |
url |
http://link.springer.com/article/10.1186/s12864-017-4095-6 |
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