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Diet and mitonuclear haplotype interactions affect growth rate in a slime mould

Trait expression in metazoans is strongly influenced by the balance of macronutrients (i.e. protein, carbohydrate and fat) in the diet. At the same time, an individual's genetic background seems to regulate the magnitude of phenotypic response to a particular diet. It needs to be better underst...

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Autores principales: Nagarajan‐Radha, Venkatesh, Cordina, Natalie, Beekman, Madeleine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10477482/
https://www.ncbi.nlm.nih.gov/pubmed/37674651
http://dx.doi.org/10.1002/ece3.10508
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author Nagarajan‐Radha, Venkatesh
Cordina, Natalie
Beekman, Madeleine
author_facet Nagarajan‐Radha, Venkatesh
Cordina, Natalie
Beekman, Madeleine
author_sort Nagarajan‐Radha, Venkatesh
collection PubMed
description Trait expression in metazoans is strongly influenced by the balance of macronutrients (i.e. protein, carbohydrate and fat) in the diet. At the same time, an individual's genetic background seems to regulate the magnitude of phenotypic response to a particular diet. It needs to be better understood whether interactions between diet, genetic background and trait expression are found in unicellular eukaryotes. A protist—the slime mould, Physarum polycephalum can choose diets based on protein‐to‐carbohydrate (P:C) content to support optimal growth rate. Yet, the role of genetic background (variation in the mitochondrial and nuclear DNAs) in mediating growth rate response to dietary P:C ratios in the slime mould is unknown. Here, we studied the effects of interactions between mitochondrial and nuclear DNA haplotypes and diet (i.e. G × G × E interactions) on the growth rate of P. polycephalum. A genetic panel of six distinct strains of P. polycephalum that differ in their mitochondrial and nuclear DNA haplotypes was used to measure growth rate across five diets that varied in their P:C ratio and total calories. We first determined the strains' growth rate (total biomass and surface area) when grown on a set menu with access to a particular diet. We then assessed whether the growth rate of strains increased on a buffet menu with access to all diets. Our findings show that the growth rate of P. polycephalum is generally higher on diets containing more carbohydrates than protein and that total calories negatively affect the growth rate. Three‐way interactions between mitochondrial, nuclear haplotypes and dietary P:C ratios affected the strains' surface area of growth but not biomass. Intriguingly, strains did not increase their surface area and biomass when they had access to all diets on the buffet menu. Our findings have broad implications for our understanding of the effect of mitonuclear interactions on trait expression across diverse eukaryotic lineages.
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spelling pubmed-104774822023-09-06 Diet and mitonuclear haplotype interactions affect growth rate in a slime mould Nagarajan‐Radha, Venkatesh Cordina, Natalie Beekman, Madeleine Ecol Evol Research Articles Trait expression in metazoans is strongly influenced by the balance of macronutrients (i.e. protein, carbohydrate and fat) in the diet. At the same time, an individual's genetic background seems to regulate the magnitude of phenotypic response to a particular diet. It needs to be better understood whether interactions between diet, genetic background and trait expression are found in unicellular eukaryotes. A protist—the slime mould, Physarum polycephalum can choose diets based on protein‐to‐carbohydrate (P:C) content to support optimal growth rate. Yet, the role of genetic background (variation in the mitochondrial and nuclear DNAs) in mediating growth rate response to dietary P:C ratios in the slime mould is unknown. Here, we studied the effects of interactions between mitochondrial and nuclear DNA haplotypes and diet (i.e. G × G × E interactions) on the growth rate of P. polycephalum. A genetic panel of six distinct strains of P. polycephalum that differ in their mitochondrial and nuclear DNA haplotypes was used to measure growth rate across five diets that varied in their P:C ratio and total calories. We first determined the strains' growth rate (total biomass and surface area) when grown on a set menu with access to a particular diet. We then assessed whether the growth rate of strains increased on a buffet menu with access to all diets. Our findings show that the growth rate of P. polycephalum is generally higher on diets containing more carbohydrates than protein and that total calories negatively affect the growth rate. Three‐way interactions between mitochondrial, nuclear haplotypes and dietary P:C ratios affected the strains' surface area of growth but not biomass. Intriguingly, strains did not increase their surface area and biomass when they had access to all diets on the buffet menu. Our findings have broad implications for our understanding of the effect of mitonuclear interactions on trait expression across diverse eukaryotic lineages. John Wiley and Sons Inc. 2023-09-04 /pmc/articles/PMC10477482/ /pubmed/37674651 http://dx.doi.org/10.1002/ece3.10508 Text en © 2023 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Nagarajan‐Radha, Venkatesh
Cordina, Natalie
Beekman, Madeleine
Diet and mitonuclear haplotype interactions affect growth rate in a slime mould
title Diet and mitonuclear haplotype interactions affect growth rate in a slime mould
title_full Diet and mitonuclear haplotype interactions affect growth rate in a slime mould
title_fullStr Diet and mitonuclear haplotype interactions affect growth rate in a slime mould
title_full_unstemmed Diet and mitonuclear haplotype interactions affect growth rate in a slime mould
title_short Diet and mitonuclear haplotype interactions affect growth rate in a slime mould
title_sort diet and mitonuclear haplotype interactions affect growth rate in a slime mould
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10477482/
https://www.ncbi.nlm.nih.gov/pubmed/37674651
http://dx.doi.org/10.1002/ece3.10508
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