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Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis

The stress of living conditions, similar to infections, alters animal immunity. High population density is empirically considered to induce prophylactic immunity to reduce the infection risk, which was challenged by a model of low connectivity between infectious and susceptible individuals in crowde...

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Autores principales: Wang, Yundan, Yang, Pengcheng, Cui, Feng, Kang, Le
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3542111/
https://www.ncbi.nlm.nih.gov/pubmed/23326229
http://dx.doi.org/10.1371/journal.ppat.1003102
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author Wang, Yundan
Yang, Pengcheng
Cui, Feng
Kang, Le
author_facet Wang, Yundan
Yang, Pengcheng
Cui, Feng
Kang, Le
author_sort Wang, Yundan
collection PubMed
description The stress of living conditions, similar to infections, alters animal immunity. High population density is empirically considered to induce prophylactic immunity to reduce the infection risk, which was challenged by a model of low connectivity between infectious and susceptible individuals in crowded animals. The migratory locust, which exhibits polyphenism through gregarious and solitary phases in response to population density and displays different resistance to fungal biopesticide (Metarhizium anisopliae), was used to observe the prophylactic immunity of crowded animals. We applied an RNA-sequencing assay to investigate differential expression in fat body samples of gregarious and solitary locusts before and after infection. Solitary locusts devoted at least twice the number of genes for combating M. anisopliae infection than gregarious locusts. The transcription of immune molecules such as pattern recognition proteins, protease inhibitors, and anti-oxidation proteins, was increased in prophylactic immunity of gregarious locusts. The differentially expressed transcripts reducing gregarious locust susceptibility to M. anisopliae were confirmed at the transcriptional and translational level. Further investigation revealed that locust GNBP3 was susceptible to proteolysis while GNBP1, induced by M. anisopliae infection, resisted proteolysis. Silencing of gnbp3 by RNAi significantly shortened the life span of gregarious locusts but not solitary locusts. By contrast, gnbp1 silencing did not affect the life span of both gregarious and solitary locusts after M. anisopliae infection. Thus, the GNBP3-dependent immune responses were involved in the phenotypic resistance of gregarious locusts to fungal infection, but were redundant in solitary locusts. Our results indicated that gregarious locusts prophylactically activated upstream modulators of immune cascades rather than downstream effectors, preferring to quarantine rather than eliminate pathogens to conserve energy meanwhile increasing the “distance” of infectious and target individuals. Our study has obvious implications for bio-pesticides management of crowded pests, and for understanding disease epidemics and adaptiveness of pathogens.
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spelling pubmed-35421112013-01-16 Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis Wang, Yundan Yang, Pengcheng Cui, Feng Kang, Le PLoS Pathog Research Article The stress of living conditions, similar to infections, alters animal immunity. High population density is empirically considered to induce prophylactic immunity to reduce the infection risk, which was challenged by a model of low connectivity between infectious and susceptible individuals in crowded animals. The migratory locust, which exhibits polyphenism through gregarious and solitary phases in response to population density and displays different resistance to fungal biopesticide (Metarhizium anisopliae), was used to observe the prophylactic immunity of crowded animals. We applied an RNA-sequencing assay to investigate differential expression in fat body samples of gregarious and solitary locusts before and after infection. Solitary locusts devoted at least twice the number of genes for combating M. anisopliae infection than gregarious locusts. The transcription of immune molecules such as pattern recognition proteins, protease inhibitors, and anti-oxidation proteins, was increased in prophylactic immunity of gregarious locusts. The differentially expressed transcripts reducing gregarious locust susceptibility to M. anisopliae were confirmed at the transcriptional and translational level. Further investigation revealed that locust GNBP3 was susceptible to proteolysis while GNBP1, induced by M. anisopliae infection, resisted proteolysis. Silencing of gnbp3 by RNAi significantly shortened the life span of gregarious locusts but not solitary locusts. By contrast, gnbp1 silencing did not affect the life span of both gregarious and solitary locusts after M. anisopliae infection. Thus, the GNBP3-dependent immune responses were involved in the phenotypic resistance of gregarious locusts to fungal infection, but were redundant in solitary locusts. Our results indicated that gregarious locusts prophylactically activated upstream modulators of immune cascades rather than downstream effectors, preferring to quarantine rather than eliminate pathogens to conserve energy meanwhile increasing the “distance” of infectious and target individuals. Our study has obvious implications for bio-pesticides management of crowded pests, and for understanding disease epidemics and adaptiveness of pathogens. Public Library of Science 2013-01-10 /pmc/articles/PMC3542111/ /pubmed/23326229 http://dx.doi.org/10.1371/journal.ppat.1003102 Text en © 2013 Wang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wang, Yundan
Yang, Pengcheng
Cui, Feng
Kang, Le
Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis
title Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis
title_full Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis
title_fullStr Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis
title_full_unstemmed Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis
title_short Altered Immunity in Crowded Locust Reduced Fungal (Metarhizium anisopliae) Pathogenesis
title_sort altered immunity in crowded locust reduced fungal (metarhizium anisopliae) pathogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3542111/
https://www.ncbi.nlm.nih.gov/pubmed/23326229
http://dx.doi.org/10.1371/journal.ppat.1003102
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