The immediate metabolomic effects of whole‐genome duplication in the greater duckweed, Spirodela polyrhiza

Author:

Wu Tian12ORCID,Bafort Quinten123ORCID,Mortier Frederik123ORCID,Almeida‐Silva Fabricio12ORCID,Natran Annelore2ORCID,Van de Peer Yves1245ORCID

Affiliation:

1. Department of Plant Biotechnology and Bioinformatics Ghent University Ghent 9000 Belgium

2. VIB Center for Plant Systems Biology, VIB Ghent 9052 Belgium

3. Department of Biology Ghent University Ghent 9000 Belgium

4. College of Horticulture, Academy for Advanced Interdisciplinary Studies Nanjing Agricultural University Biochemistry Nanjing 210095 China

5. Centre for Microbial Ecology and Genomics, Department of Biochemistry, Genetics and Microbiology University of Pretoria Pretoria 0028 South Africa

Abstract

AbstractPremiseIn plants, whole‐genome duplication (WGD) is a common mutation with profound evolutionary potential. Given the costs associated with a superfluous genome copy, polyploid establishment is enigmatic. However, in the right environment, immediate phenotypic changes following WGD can facilitate establishment. Metabolite abundances are the direct output of the cell's regulatory network and determine much of the impact of environmental and genetic change on the phenotype. While it is well known that an increase in the bulk amount of genetic material can increase cell size, the impact of gene dosage multiplication on the metabolome remains largely unknown.MethodsWe used untargeted metabolomics on four genetically distinct diploid‐neoautotetraploid pairs of the greater duckweed, Spirodela polyrhiza, to investigate how WGD affects metabolite abundances per cell and per biomass.ResultsAutopolyploidy increased metabolite levels per cell, but the response of individual metabolites varied considerably. However, the impact on metabolite level per biomass was restricted because the increased cell size reduced the metabolite concentration per cell. Nevertheless, we detected both quantitative and qualitative effects of WGD on the metabolome. Many effects were strain‐specific, but some were shared by all four strains.ConclusionsThe nature and impact of metabolic changes after WGD depended strongly on the genotype. Dosage effects have the potential to alter the plant metabolome qualitatively and quantitatively, but were largely balanced out by the reduction in metabolite concentration due to an increase in cell size in this species.

Publisher

Wiley

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