Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.

The larvae of the common green bottle fly Lucilia sericata (Diptera: Calliphoridae) have been used for centuries to promote wound healing, but the molecular basis of their antimicrobial, debridement and healing functions remains largely unknown. The analysis of differential gene expression in specif...

Full description

Bibliographic Details
Main Authors: Andre Baumann, Rüdiger Lehmann, Annika Beckert, Andreas Vilcinskas, Zdeněk Franta
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4529112?pdf=render
id doaj-e8db4b8aab324c75b06a0d61bd8d258f
record_format Article
spelling doaj-e8db4b8aab324c75b06a0d61bd8d258f2020-11-25T02:12:58ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01108e013509310.1371/journal.pone.0135093Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.Andre BaumannRüdiger LehmannAnnika BeckertAndreas VilcinskasZdeněk FrantaThe larvae of the common green bottle fly Lucilia sericata (Diptera: Calliphoridae) have been used for centuries to promote wound healing, but the molecular basis of their antimicrobial, debridement and healing functions remains largely unknown. The analysis of differential gene expression in specific larval tissues before and after immune challenge could be used to identify key molecular factors, but the most sensitive and reproducible method qRT-PCR requires validated reference genes. We therefore selected 10 candidate reference genes encoding products from different functional classes (18S rRNA, 28S rRNA, actin, β-tubulin, RPS3, RPLP0, EF1α, PKA, GAPDH and GST1). Two widely applied algorithms (GeNorm and Normfinder) were used to analyze reference gene candidates in different larval tissues associated with secretion, digestion, and antimicrobial activity (midgut, hindgut, salivary glands, crop and fat body). The Gram-negative bacterium Pseudomonas aeruginosa was then used to boost the larval immune system and the stability of reference gene expression was tested in comparison to three immune genes (lucimycin, defensin-1 and attacin-2), which target different pathogen classes. We observed no differential expression of the antifungal peptide lucimycin, whereas the representative targeting Gram-positive bacteria (defensin-1) was upregulated in salivary glands, crop, nerve ganglion and reached its maximum in fat body (up to 300-fold). The strongest upregulation in all immune challenged tissues (over 50,000-fold induction in the fat body) was monitored for attacin-2, the representative targeting Gram-negative bacteria. Here we identified and validated a set of reference genes that allows the accurate normalization of gene expression in specific tissues of L. sericata after immune challenge.http://europepmc.org/articles/PMC4529112?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Andre Baumann
Rüdiger Lehmann
Annika Beckert
Andreas Vilcinskas
Zdeněk Franta
spellingShingle Andre Baumann
Rüdiger Lehmann
Annika Beckert
Andreas Vilcinskas
Zdeněk Franta
Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.
PLoS ONE
author_facet Andre Baumann
Rüdiger Lehmann
Annika Beckert
Andreas Vilcinskas
Zdeněk Franta
author_sort Andre Baumann
title Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.
title_short Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.
title_full Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.
title_fullStr Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.
title_full_unstemmed Selection and Evaluation of Tissue Specific Reference Genes in Lucilia sericata during an Immune Challenge.
title_sort selection and evaluation of tissue specific reference genes in lucilia sericata during an immune challenge.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description The larvae of the common green bottle fly Lucilia sericata (Diptera: Calliphoridae) have been used for centuries to promote wound healing, but the molecular basis of their antimicrobial, debridement and healing functions remains largely unknown. The analysis of differential gene expression in specific larval tissues before and after immune challenge could be used to identify key molecular factors, but the most sensitive and reproducible method qRT-PCR requires validated reference genes. We therefore selected 10 candidate reference genes encoding products from different functional classes (18S rRNA, 28S rRNA, actin, β-tubulin, RPS3, RPLP0, EF1α, PKA, GAPDH and GST1). Two widely applied algorithms (GeNorm and Normfinder) were used to analyze reference gene candidates in different larval tissues associated with secretion, digestion, and antimicrobial activity (midgut, hindgut, salivary glands, crop and fat body). The Gram-negative bacterium Pseudomonas aeruginosa was then used to boost the larval immune system and the stability of reference gene expression was tested in comparison to three immune genes (lucimycin, defensin-1 and attacin-2), which target different pathogen classes. We observed no differential expression of the antifungal peptide lucimycin, whereas the representative targeting Gram-positive bacteria (defensin-1) was upregulated in salivary glands, crop, nerve ganglion and reached its maximum in fat body (up to 300-fold). The strongest upregulation in all immune challenged tissues (over 50,000-fold induction in the fat body) was monitored for attacin-2, the representative targeting Gram-negative bacteria. Here we identified and validated a set of reference genes that allows the accurate normalization of gene expression in specific tissues of L. sericata after immune challenge.
url http://europepmc.org/articles/PMC4529112?pdf=render
work_keys_str_mv AT andrebaumann selectionandevaluationoftissuespecificreferencegenesinluciliasericataduringanimmunechallenge
AT rudigerlehmann selectionandevaluationoftissuespecificreferencegenesinluciliasericataduringanimmunechallenge
AT annikabeckert selectionandevaluationoftissuespecificreferencegenesinluciliasericataduringanimmunechallenge
AT andreasvilcinskas selectionandevaluationoftissuespecificreferencegenesinluciliasericataduringanimmunechallenge
AT zdenekfranta selectionandevaluationoftissuespecificreferencegenesinluciliasericataduringanimmunechallenge
_version_ 1724907054087274496