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Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets

Mass rearing of insects, used both as biological control agents and for food and feed, is receiving increasing attention. Efforts are being made to improve diets that are currently in use, and to identify alternative diets, as is the case with the predatory flower bug (Orius majusculus) and other he...

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Autores principales: Montoro, Marta, Jensen, Per M., Sigsgaard, Lene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240723/
https://www.ncbi.nlm.nih.gov/pubmed/32325938
http://dx.doi.org/10.3390/insects11040255
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author Montoro, Marta
Jensen, Per M.
Sigsgaard, Lene
author_facet Montoro, Marta
Jensen, Per M.
Sigsgaard, Lene
author_sort Montoro, Marta
collection PubMed
description Mass rearing of insects, used both as biological control agents and for food and feed, is receiving increasing attention. Efforts are being made to improve diets that are currently in use, and to identify alternative diets, as is the case with the predatory flower bug (Orius majusculus) and other heteropteran predators, due to the high costs of their current diet, the eggs of the Mediterranean flour moth (E. kuehniella). The assessment of alternative diets may include measurements of the predator’s fitness-related traits (development time, weight, etc.), and biochemical analyses such as lipid and protein content in the diet and the insects. However, assessing diet quality via the predator’s fitness-related traits is laborious, and biochemical composition is often difficult to relate to the measured traits. Isotope analysis, previously used for diet reconstruction studies, can also serve as a tool for the assessment of diet quality. Here, the variation in discrimination factors or isotope enrichment (Δ(15)N and Δ(13)C) indicates the difference in isotopic ratio between the insect and its diet. In this study, we investigated the link between Δ(15)N and diet quality in the predatory bug Orius majusculus. Three groups of bugs were fed different diets: Ephestia kuehniella eggs, protein-rich Drosophila melanogaster and lipid-rich D. melanogaster. The isotopic enrichment and fitness-related measurements were assessed for each group. Results show a relation between Δ(15)N and fitness-related measurements, which conform to the idea that lower Δ(15)N indicates a higher diet quality.
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spelling pubmed-72407232020-06-11 Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets Montoro, Marta Jensen, Per M. Sigsgaard, Lene Insects Communication Mass rearing of insects, used both as biological control agents and for food and feed, is receiving increasing attention. Efforts are being made to improve diets that are currently in use, and to identify alternative diets, as is the case with the predatory flower bug (Orius majusculus) and other heteropteran predators, due to the high costs of their current diet, the eggs of the Mediterranean flour moth (E. kuehniella). The assessment of alternative diets may include measurements of the predator’s fitness-related traits (development time, weight, etc.), and biochemical analyses such as lipid and protein content in the diet and the insects. However, assessing diet quality via the predator’s fitness-related traits is laborious, and biochemical composition is often difficult to relate to the measured traits. Isotope analysis, previously used for diet reconstruction studies, can also serve as a tool for the assessment of diet quality. Here, the variation in discrimination factors or isotope enrichment (Δ(15)N and Δ(13)C) indicates the difference in isotopic ratio between the insect and its diet. In this study, we investigated the link between Δ(15)N and diet quality in the predatory bug Orius majusculus. Three groups of bugs were fed different diets: Ephestia kuehniella eggs, protein-rich Drosophila melanogaster and lipid-rich D. melanogaster. The isotopic enrichment and fitness-related measurements were assessed for each group. Results show a relation between Δ(15)N and fitness-related measurements, which conform to the idea that lower Δ(15)N indicates a higher diet quality. MDPI 2020-04-20 /pmc/articles/PMC7240723/ /pubmed/32325938 http://dx.doi.org/10.3390/insects11040255 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Montoro, Marta
Jensen, Per M.
Sigsgaard, Lene
Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets
title Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets
title_full Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets
title_fullStr Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets
title_full_unstemmed Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets
title_short Stable Isotope Enrichment (Δ(15)N) in the Predatory Flower Bug (Orius majusculus) Predicts Fitness-Related Differences between Diets
title_sort stable isotope enrichment (δ(15)n) in the predatory flower bug (orius majusculus) predicts fitness-related differences between diets
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240723/
https://www.ncbi.nlm.nih.gov/pubmed/32325938
http://dx.doi.org/10.3390/insects11040255
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