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Dually biofortified cisgenic tomatoes with increased flavonoids and branched‐chain amino acids content.

Authors :
Vazquez‐Vilar, Marta
Fernandez‐del‐Carmen, Asun
Garcia‐Carpintero, Victor
Drapal, Margit
Presa, Silvia
Ricci, Dorotea
Diretto, Gianfranco
Rambla, José Luis
Fernandez‐Muñoz, Rafael
Espinosa‐Ruiz, Ana
Fraser, Paul D.
Martin, Cathie
Granell, Antonio
Orzaez, Diego
Source :
Plant Biotechnology Journal. Dec2023, Vol. 21 Issue 12, p2683-2697. 15p.
Publication Year :
2023

Abstract

Summary: Higher dietary intakes of flavonoids may have a beneficial role in cardiovascular disease prevention. Additionally, supplementation of branched‐chain amino acids (BCAAs) in vegan diets can reduce risks associated to their deficiency, particularly in older adults, which can cause loss of skeletal muscle strength and mass. Most plant‐derived foods contain only small amounts of BCAAs, and those plants with high levels of flavonoids are not eaten broadly. Here we describe the generation of metabolically engineered cisgenic tomatoes enriched in both flavonoids and BCAAs. In this approach, coding and regulatory DNA elements, all derived from the tomato genome, were combined to obtain a herbicide‐resistant version of an acetolactate synthase (mSlALS) gene expressed broadly and a MYB12‐like transcription factor (SlMYB12) expressed in a fruit‐specific manner. The mSlALS played a dual role, as a selectable marker as well as being key enzyme in BCAA enrichment. The resulting cisgenic tomatoes were highly enriched in Leucine (21‐fold compared to wild‐type levels), Valine (ninefold) and Isoleucine (threefold) and concomitantly biofortified in several antioxidant flavonoids including kaempferol (64‐fold) and quercetin (45‐fold). Comprehensive metabolomic and transcriptomic analysis of the biofortified cisgenic tomatoes revealed marked differences to wild type and could serve to evaluate the safety of these biofortified fruits for human consumption. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14677644
Volume :
21
Issue :
12
Database :
Academic Search Index
Journal :
Plant Biotechnology Journal
Publication Type :
Academic Journal
Accession number :
173626704
Full Text :
https://doi.org/10.1111/pbi.14163