Biochemical Characterization of Black and Green Mutant Elderberry during Fruit Ripening

Author:

Mikulic-Petkovsek Maja1ORCID,Ivancic Anton2,Gacnik Sasa1ORCID,Veberic Robert1ORCID,Hudina Metka1ORCID,Marinovic Silvija3,Molitor Christian3ORCID,Halbwirth Heidi3

Affiliation:

1. Chair for Fruit Growing, Viticulture and Vegetable Growing, Department of Agronomy, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, SI-1000 Ljubljana, Slovenia

2. 2 Chair for Genetics, Faculty of Agriculture and Life Sciences, University of Maribor, Pivola 10, SI-2311 Hoce, Slovenia

3. Institute of Chemical, Environmental and Bioscience Engineering, Technische Universität Wien, Getreidemarkt 9, A-1060 Vienna, Austria

Abstract

The content of sugars, organic acids, phenolic compounds and selected enzyme activities in the anthocyanin pathway were analyzed in NIGRA (Sambucus nigra var. nigra—black fruits) and VIRIDIS (S. nigra var. viridis—green fruits) fruits over four stages of ripening. The share of glucose and fructose in green fruits was higher than in colored fruits, and the sugar content increased significantly until the third developmental stage. Ripe NIGRA berries had 47% flavonol glycosides, 34% anthocyanins, 3% hydroxycinnamic acids and 14% flavanols, whereas the major phenolic group in the VIRIDIS fruits, making up 88% of the total analyzed polyphenols, was flavonols. NIGRA fruits were rich in anthocyanins (6020 µg g−1 FW), showing strong activation of the late anthocyanin pathway (dihydroflavonol 4-reductase, anthocyanidin synthase). In both color types, phenylalanine ammonia lyase and chalcone synthase/chalcone isomerase activities were highest in the first stage and decreased during ripening. In VIRIDIS fruit, no anthocyanins and only one flavanol (procyanidin dimer) were found. This was most likely caused by a lack of induction of the late anthocyanin pathway in the last period of fruit ripening. The VIRIDIS genotype may be useful in studying the regulatory structures of anthocyanin biosynthesis and the contribution of distinct flavonoid classes to the health benefits of elderberries.

Funder

Slovenian Research Agency

FWF Austrian Science Fund

Austrian Agency for Education and Internationalism

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference52 articles.

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3. da Silva, R.F.R., Barreira, J.C.M., Heleno, S.A., Barros, L., Calhelha, R.C., and Ferreira, I.C.F.R. (2019). Anthocyanin profile of elderberry juice: A natural-based bioactive colouring ingredient with potential food application. Molecules, 24.

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5. Weston, R. (1775). The English flora: Or, A catalogue of Trees, Shrubs, Plants and Fruits, Natives as Well as Exotics, Cultivated, for Use or Ornament, in the English Nurseries, Greenhouses and Stoves: Arranged according to the Linnaean system: With the Latin Trivial and Common English Names and an English Index Referring to the Latin Names: Also a General Catalogue of Seeds for the Kitchen-garden, Flower-garden, Grass-lands, &c. Usually Raised for Sale, and Those Annually Imported from America, Harvard University.

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