Metabolomics,Multiomics

Dataset Information

0

Prediction of complex phenotypes using the Drosophila melanogaster metabolome


ABSTRACT: Understanding the genotype-phenotype map and how variation at different levels of biological organization is associated are central topics in modern biology. Fast developments in sequencing technologies and other molecular omic tools enable researchers to obtain detailed information on variation at DNA level and on intermediate endophenotypes, such as RNA, proteins and metabolites. This can facilitate our understanding of the link between genotypes and molecular and functional organismal phenotypes. Here, we use the Drosophila melanogaster Genetic Reference Panel and nuclear magnetic resonance (NMR) metabolomics to investigate the ability of the metabolome to predict organismal phenotypes. We performed NMR metabolomics on four replicate pools of male flies from each of 170 different isogenic lines. Our results show that metabolite profiles are variable among the investigated lines and that this variation is highly heritable. Second, we identify genes associated with metabolome variation. Third, using the metabolome gave better prediction accuracies than genomic information for four of five quantitative traits analyzed. Our comprehensive characterization of population-scale diversity of metabolomes and its genetic basis illustrates that metabolites have large potential as predictors of organismal phenotypes. This finding is of great importance, e.g., in human medicine, evolutionary biology and animal and plant breeding.

OTHER RELATED OMICS DATASETS IN: PRJNA354621

INSTRUMENT(S): Nuclear Magnetic Resonance (NMR) -

SUBMITTER: Anders Malmendal 

PROVIDER: MTBLS2060 | MetaboLights | 2021-08-05

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
MTBLS2060 Other
FILES Other
a_MTBLS2060_NMR___metabolite_profiling.txt Txt
i_Investigation.txt Txt
m_MTBLS2060_NMR___metabolite_profiling_v2_maf.tsv Tabular
Items per page:
1 - 5 of 6
altmetric image

Publications

Prediction of complex phenotypes using the Drosophila melanogaster metabolome.

Rohde Palle Duun PD   Kristensen Torsten Nygaard TN   Sarup Pernille P   Muñoz Joaquin J   Malmendal Anders A  

Heredity 20210128 5


Understanding the genotype-phenotype map and how variation at different levels of biological organization is associated are central topics in modern biology. Fast developments in sequencing technologies and other molecular omic tools enable researchers to obtain detailed information on variation at DNA level and on intermediate endophenotypes, such as RNA, proteins and metabolites. This can facilitate our understanding of the link between genotypes and molecular and functional organismal phenoty  ...[more]

Similar Datasets

2020-02-28 | GSE117850 | GEO
2007-08-30 | GSE8892 | GEO
2008-03-13 | E-GEOD-8892 | biostudies-arrayexpress
2022-10-26 | GSE213689 | GEO
2024-11-19 | GSE273478 | GEO
2020-06-23 | GSE138197 | GEO
2011-11-10 | GSE26924 | GEO
2017-08-01 | GSE101431 | GEO
2015-09-30 | GSE51284 | GEO
2017-02-09 | GSE83756 | GEO