a 2013

Functional studies on transcriptone profiles of Drosophila larvae infected by entomopathogenic nematodes

AREFIN, Badrul, Lucie KUČEROVÁ, Pavel DOBEŠ, Robert MARKUS, Hynek STRNAD et. al.

Základní údaje

Originální název

Functional studies on transcriptone profiles of Drosophila larvae infected by entomopathogenic nematodes

Název česky

Functional studies on transcriptone profiles of Drosophila larvae infected by entomopathogenic nematodes

Autoři

AREFIN, Badrul (752 Švédsko), Lucie KUČEROVÁ (203 Česká republika), Pavel DOBEŠ (203 Česká republika, domácí), Robert MARKUS (348 Maďarsko), Hynek STRNAD (203 Česká republika), Zhi WANG (752 Švédsko), Pavel HYRŠL (203 Česká republika, garant, domácí), Michal ŽUROVEC (203 Česká republika) a Ulrich THEOPOLD (752 Švédsko)

Vydání

Integrated Insect Immunology: From Basic Biology To Environmental Applications, 2013

Další údaje

Jazyk

angličtina

Typ výsledku

Konferenční abstrakt

Obor

30102 Immunology

Stát vydavatele

Polsko

Utajení

není předmětem státního či obchodního tajemství

Kód RIV

RIV/00216224:14310/13:00069819

Organizační jednotka

Přírodovědecká fakulta

Klíčová slova česky

Drosophila; entomopatogenní hlístovky

Klíčová slova anglicky

Drosophila; entomopathogenic nematodes

Příznaky

Mezinárodní význam, Recenzováno
Změněno: 30. 1. 2016 23:24, Mgr. Pavel Dobeš, Ph.D.

Anotace

V originále

Entomopathogenic nematodes (EPN) Heterorhabditis bacteriophora are parasitic worms, which are associated with their gut symbiotic bacteria Photorhabdus luminescens. They are generally lethal to insects and used as biocontrol agents. Nematodes can enter to the host via the mouth, anus, spiracles or penetrating through the cuticle. Once they entered into host, they release their gut bacteria and then work in concert with the bacteria to kill the host. Nematode infection in Drosophila is a natural infection, in contrast to many kinds of bacterial infection (through injection). Drosophila lacks an adaptive immune system of the vertebrate style and therefore relies on innate immunity to combat infection against different invaders like bacteria, fungi, viruses and other parasites. Until now, our knowledge on Drosophila immunity mostly comes from studies of bacterial and fungal infections. To obtain a complete picture of Drosophila response to EPN, we performed a genome-wide transcriptional analysis of the Drosophila larvae (approximately 88 hour after egg laying) infected by EPN. We compared the transcriptome profile between infected and non-infected larvae. A total of 642 transcripts were found significantly differentially regulated upon nematode infection. Gene ontology (GO) analysis of the top 100 most significantly upregulated genes identified one-quarter immune-related genes. To test their contribution to the response against nematodes, we used RNAi lines and mutants for candidate genes identified in the arrays and examined the viability of such larvae upon EPN infection. As a criterion for selecting candidate defense genes from the list of induced transcripts we focused on those for which a function in immunity had been established in other infection models, as well as on their paralogs, which had not yet been implicated in immune reactions.

Česky

Entomopathogenic nematodes (EPN) Heterorhabditis bacteriophora are parasitic worms, which are associated with their gut symbiotic bacteria Photorhabdus luminescens. They are generally lethal to insects and used as biocontrol agents. Nematodes can enter to the host via the mouth, anus, spiracles or penetrating through the cuticle. Once they entered into host, they release their gut bacteria and then work in concert with the bacteria to kill the host. Nematode infection in Drosophila is a natural infection, in contrast to many kinds of bacterial infection (through injection). Drosophila lacks an adaptive immune system of the vertebrate style and therefore relies on innate immunity to combat infection against different invaders like bacteria, fungi, viruses and other parasites. Until now, our knowledge on Drosophila immunity mostly comes from studies of bacterial and fungal infections. To obtain a complete picture of Drosophila response to EPN, we performed a genome-wide transcriptional analysis of the Drosophila larvae (approximately 88 hour after egg laying) infected by EPN. We compared the transcriptome profile between infected and non-infected larvae. A total of 642 transcripts were found significantly differentially regulated upon nematode infection. Gene ontology (GO) analysis of the top 100 most significantly upregulated genes identified one-quarter immune-related genes. To test their contribution to the response against nematodes, we used RNAi lines and mutants for candidate genes identified in the arrays and examined the viability of such larvae upon EPN infection. As a criterion for selecting candidate defense genes from the list of induced transcripts we focused on those for which a function in immunity had been established in other infection models, as well as on their paralogs, which had not yet been implicated in immune reactions.

Návaznosti

CZ.1.07/2.3.00/30.0009, interní kód MU
(Kód CEP: EE2.3.30.0009)
Název: Zaměstnáním čerstvých absolventů doktorského studia k vědecké excelenci (Akronym: Postdoc I.)
Investor: Ministerstvo školství, mládeže a tělovýchovy ČR, Zaměstnáním čerstvých absolventů doktorského studia k vědecké excelenci, 2.3 Lidské zdroje ve výzkumu a vývoji