Cargando…

De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms

BACKGROUND: Grapevine phylloxera, an insect related to true aphids, is a major historic pest of viticulture only controlled through the selection of resistant rootstocks or through quarantine regulations where grapevine is cultivated own-rooted. Transcriptomic data could help understand the bases of...

Descripción completa

Detalles Bibliográficos
Autores principales: Rispe, Claude, Legeai, Fabrice, Papura, Daciana, Bretaudeau, Anthony, Hudaverdian, Sylvie, Le Trionnaire, Gaël, Tagu, Denis, Jaquiéry, Julie, Delmotte, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4787006/
https://www.ncbi.nlm.nih.gov/pubmed/26968158
http://dx.doi.org/10.1186/s12864-016-2530-8
_version_ 1782420639504662528
author Rispe, Claude
Legeai, Fabrice
Papura, Daciana
Bretaudeau, Anthony
Hudaverdian, Sylvie
Le Trionnaire, Gaël
Tagu, Denis
Jaquiéry, Julie
Delmotte, François
author_facet Rispe, Claude
Legeai, Fabrice
Papura, Daciana
Bretaudeau, Anthony
Hudaverdian, Sylvie
Le Trionnaire, Gaël
Tagu, Denis
Jaquiéry, Julie
Delmotte, François
author_sort Rispe, Claude
collection PubMed
description BACKGROUND: Grapevine phylloxera, an insect related to true aphids, is a major historic pest of viticulture only controlled through the selection of resistant rootstocks or through quarantine regulations where grapevine is cultivated own-rooted. Transcriptomic data could help understand the bases of its original life-traits, including a striking case of polyphenism, with forms feeding on roots and forms feeding in leaf-galls. Comparisons with true aphids (for which complete genomes have been sequenced) should also allow to link differences in life-traits of the two groups with changes in gene repertoires or shifts in patterns of expression. RESULTS: We sequenced transcriptomes of the grapevine phylloxera (Illumina technology), choosing three life-stages (adults on roots or on leaf galls, and eggs) to cover a large catalogue of transcripts, and performed a de novo assembly. This resulted in 105,697 contigs, which were annotated: most contigs had a best blastx hit to the pea aphid (phylogenetically closest complete genome), while very few bacterial hits were recorded (except for Probionibacterium acnes). Coding sequences were predicted from this data set (17,372 sequences), revealing an extremely high AT-bias (at the third codon position). Differential expression (DE) analysis among root-feeding and gall-feeding showed that i) the root-feeding form displayed a much larger number of differentially expressed transcripts ii) root-feeding biased genes were enriched in some categories, for example cuticular proteins and genes associated with cell-cell signaling iii) leaf-galling-biased genes were enriched in genes associated with the nucleus and DNA-replication, suggesting a metabolism more oriented towards fast and active multiplication. We also identified a gene family with a very high expression level (copies totaling nearly 10 % of the reads) in the grapevine phylloxera (both in root and leaf galling forms), but usually expressed at very low levels in true aphids (except in sexual oviparous females). These transcripts thus appear to be associated with oviparity. CONCLUSIONS: Our study illustrated major intraspecific changes in transcriptome profiles, related with different life-styles (and the feeding on roots versus in leaf-galls). At a different scale, we could also illustrate one major shift in expression levels associated with changes in life-traits that occurred along evolution and that respectively characterize (strictly oviparous) grapevine phylloxera and (mostly viviparous) true aphids. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12864-016-2530-8) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-4787006
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-47870062016-03-12 De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms Rispe, Claude Legeai, Fabrice Papura, Daciana Bretaudeau, Anthony Hudaverdian, Sylvie Le Trionnaire, Gaël Tagu, Denis Jaquiéry, Julie Delmotte, François BMC Genomics Research Article BACKGROUND: Grapevine phylloxera, an insect related to true aphids, is a major historic pest of viticulture only controlled through the selection of resistant rootstocks or through quarantine regulations where grapevine is cultivated own-rooted. Transcriptomic data could help understand the bases of its original life-traits, including a striking case of polyphenism, with forms feeding on roots and forms feeding in leaf-galls. Comparisons with true aphids (for which complete genomes have been sequenced) should also allow to link differences in life-traits of the two groups with changes in gene repertoires or shifts in patterns of expression. RESULTS: We sequenced transcriptomes of the grapevine phylloxera (Illumina technology), choosing three life-stages (adults on roots or on leaf galls, and eggs) to cover a large catalogue of transcripts, and performed a de novo assembly. This resulted in 105,697 contigs, which were annotated: most contigs had a best blastx hit to the pea aphid (phylogenetically closest complete genome), while very few bacterial hits were recorded (except for Probionibacterium acnes). Coding sequences were predicted from this data set (17,372 sequences), revealing an extremely high AT-bias (at the third codon position). Differential expression (DE) analysis among root-feeding and gall-feeding showed that i) the root-feeding form displayed a much larger number of differentially expressed transcripts ii) root-feeding biased genes were enriched in some categories, for example cuticular proteins and genes associated with cell-cell signaling iii) leaf-galling-biased genes were enriched in genes associated with the nucleus and DNA-replication, suggesting a metabolism more oriented towards fast and active multiplication. We also identified a gene family with a very high expression level (copies totaling nearly 10 % of the reads) in the grapevine phylloxera (both in root and leaf galling forms), but usually expressed at very low levels in true aphids (except in sexual oviparous females). These transcripts thus appear to be associated with oviparity. CONCLUSIONS: Our study illustrated major intraspecific changes in transcriptome profiles, related with different life-styles (and the feeding on roots versus in leaf-galls). At a different scale, we could also illustrate one major shift in expression levels associated with changes in life-traits that occurred along evolution and that respectively characterize (strictly oviparous) grapevine phylloxera and (mostly viviparous) true aphids. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12864-016-2530-8) contains supplementary material, which is available to authorized users. BioMed Central 2016-03-11 /pmc/articles/PMC4787006/ /pubmed/26968158 http://dx.doi.org/10.1186/s12864-016-2530-8 Text en © Rispe et al. 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Rispe, Claude
Legeai, Fabrice
Papura, Daciana
Bretaudeau, Anthony
Hudaverdian, Sylvie
Le Trionnaire, Gaël
Tagu, Denis
Jaquiéry, Julie
Delmotte, François
De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
title De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
title_full De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
title_fullStr De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
title_full_unstemmed De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
title_short De novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
title_sort de novo transcriptome assembly of the grapevine phylloxera allows identification of genes differentially expressed between leaf- and root-feeding forms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4787006/
https://www.ncbi.nlm.nih.gov/pubmed/26968158
http://dx.doi.org/10.1186/s12864-016-2530-8
work_keys_str_mv AT rispeclaude denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT legeaifabrice denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT papuradaciana denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT bretaudeauanthony denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT hudaverdiansylvie denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT letrionnairegael denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT tagudenis denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT jaquieryjulie denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms
AT delmottefrancois denovotranscriptomeassemblyofthegrapevinephylloxeraallowsidentificationofgenesdifferentiallyexpressedbetweenleafandrootfeedingforms