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Brassicaceae plants contain glucosinolates, which are hydrolysed by myrosinases to toxic products such as isothiocyanates and nitriles, acting as defences. Herbivores have evolved various detoxification strategies, which are reviewed here. Larvae of Phaedon cochleariae (Coleoptera: Chrysomelidae) me...
2022-11-11 | MTBLS3565 | MetaboLights
Not available
ORGANISM(S): Danio rerio 
Parasites can facilitate their own spread and reproduction by manipulating insect hosts behavior, as seen in the interaction between Thitarodes xiaojinensis and Ophiocordyceps sinensis. Infection by O. sinensis leads to the mummification of T. xiaojinensis larvae, but the underlying mechanisms remai...
2024-08-23 | MTBLS10848 | MetaboLights

Parasites can manipulate host behavior to facilitate parasite transmission. One such host-pathogen interaction occurs between the fungus Ophiocordyceps sinensis (O. sinensis) and the ghost moth Thitarodes xiaojinensis. O. sinensis is involved in the mummification process of infected host larvae. ...

2024-08-05 | MTBLS9929 | MetaboLights

Parasites can manipulate host behavior to facilitate parasite transmission. One such host-pathogen interaction occurs between the fungus Ophiocordyceps sinensis (O. sinensis) and the ghost moth Thitarodes xiaojinensis. O. sinensis is involved in the mummification process of infected host larvae. ...

2024-08-05 | MTBLS9930 | MetaboLights

The protection of associated microbiota for their animal hosts against pathogen infection has been studied widely over the last 100 years. However, how those microbes protect the animal host is limitedly investigated. In former studies, body surface microbes of one insect, Delia antiqua,...

2020-11-12 | MTBLS2074 | MetaboLights
Tenebrio molitor is increasingly used as a sustainable source of nutrients for food and feed production, yet their lipid metabolic responses to dietary protein remain poorly characterized at the molecular species level. Here, we report a targeted UPLC–MS/MS lipidomics dataset of Tenebrio molitor lar...
2026-05-20 | MTBLS14531 | MetaboLights
Not available
ORGANISM(S): Centroptilum triangulifer;Atherix;Megaloptera 
The samples used in this study originated from colonies of managed European honey bees (A. mellifera) that were at the epicenter of an AFB outbreak in 2020. The colonies were officially examined by the State Veterinary Administration of the Czech Republic. For our analyses, we targeted brood samples...
ORGANISM(S): Paenibacillus Larvae Apis Mellifera 
2022-04-11 | MSV000089235 | MassIVE
The following strains of Paenibacillus larvae classified as ERIC I-IV genotypes (pl1-pl4) were used in the study: ERIC I - DSM-7030; ERIC II - DSM-25430; ERIC III - LMG-16252; and ERIC IV - DSM-3615. The 7 biological replicates (a-g) of the exoprotein fractions prepared from each ERIC genotype were ...
ORGANISM(S): Paenibacillus Larvae (ncbitaxon:1464) 
2019-03-27 | MSV000083636 | MassIVE
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