Systems approach for exploring the intricate associations between sweetness, color and aroma in melon fruits

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Abstract

Background: Melon (Cucumis melo) fruits exhibit phenotypic diversity in several key quality determinants such as taste, color and aroma. Sucrose, carotenoids and volatiles are recognized as the key compounds shaping the above corresponding traits yet the full network of biochemical events underlying their synthesis have not been comprehensively described. To delineate the cellular processes shaping fruit quality phenotypes, a population of recombinant inbred lines (RIL) was used as a source of phenotypic and genotypic variations. In parallel, ripe fruits were analyzed for both the quantified level of 77 metabolic traits directly associated with fruit quality and for RNA-seq based expression profiles generated for 27,000 unigenes. First, we explored inter-metabolite association patterns; then, we described metabolites versus gene association patterns; finally, we used the correlation-based associations for predicting uncharacterized synthesis pathways. Results: Based on metabolite versus metabolite and metabolite versus gene association patterns, we divided metabolites into two key groups: a group including ethylene and aroma determining volatiles whose accumulation patterns are correlated with the expression of genes involved in the glycolysis and TCA cycle pathways; and a group including sucrose and color determining carotenoids whose accumulation levels are correlated with the expression of genes associated with plastid formation. Conclusions: The study integrates multiple processes into a genome scale perspective of cellular activity. This lays a foundation for deciphering the role of gene markers associated with the determination of fruit quality traits.

Figures

  • Figure 1 Diversity of fruit quality associated traits within the RIL population. Top: Ripe fruit of the parental lines PI 414723 (left) and Dulce (right). Bottom: Distribution values of selected metabolites across the RILs population. Parental values are shown at green (PI 414723) and orange (Dulce). Accumulation values across RILs are provided at Additional file 3; units are as detailed for parental values. Parental values (PI 414723/Dulce): sucrose: 4.5/52.1 mg/g; β-carotene: 1.4/9.7 ug/g F.W.; pH: 4.6/6.6; ethylene: 235/54 ppm/kg/hour; methyl 3-(methylthio)propionate: 0/34 ng compound/gr F.W.; ethyl butanoate: 4.6/23.3 ng compound/gr F.W.
  • Table 1 Full name, abbreviation, and classification into metabolic category of the metabolites analyzed
  • Figure 2 (See legend on next page.)
  • Table 2 Gene-metabolite correlation values between alcohol metabolic association
  • Figure 3 (See legend on next page.)
  • Figure 4 (See legend on next page.)
  • Figure 5 Highlighting enzymes from three gene groups on top of the generic KEGG metabolic pathway. Genes were classified into three groups (black, red and green) according to their clustering pattern at the metabolites versus genes correlation matrix (Figure 4). Following mapping gene accessions to ECs (Methods), only ECs that were classified into a single gene group were further highlighted.

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Freilich, S., Lev, S., Gonda, I., Reuveni, E., Portnoy, V., Oren, E., … Katzir, N. (2015). Systems approach for exploring the intricate associations between sweetness, color and aroma in melon fruits. BMC Plant Biology, 15(1). https://doi.org/10.1186/s12870-015-0449-x

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