Engineering high levels of saffron apocarotenoids in tomato

Author:

Ahrazem Oussama1,Diretto Gianfranco2,Rambla José Luis3,Rubio-Moraga Ángela1,Lobato-Gómez María4,Frusciante Sarah2,Argandoña Javier1,Presa Silvia4,Granell Antonio4,Gómez-Gómez Lourdes1

Affiliation:

1. Universidad de Castilla-La Mancha Instituto Botánico, Departamento de Ciencia y Tecnología Agroforestal y Genética, , Campus Universitario s/n, Albacete 02071, Spain

2. Casaccia Research Centre Italian National Agency for New Technologies, Energy, and Sustainable Development (ENEA), Biotechnology laboratory, , 00123 Rome, Italy

3. Universitat Jaume I Departamento de Ciencias Agrarias y del Medio Natural, , 12006 Castellón de la Plana, Spain

4. Consejo Superior de Investigaciones Científicas-Universidad Politécnica de València Instituto de Biología Molecular y Celular de Plantas, , Valencia 46022, Spain

Abstract

Abstract Crocins and picrocrocin are high-value hydrophilic pigments produced in saffron and used commercially in the food and pharmaceutical industries. These apocarotenoids are derived from the oxidative cleavage of zeaxanthin by specific carotenoid cleavage dioxygenases. The pathway for crocins and picrocrocin biosynthesis was introduced into tomato using fruit specific and constitutive promoters and resulted in 14.48 mg/g of crocins and 2.92 mg/g of picrocrocin in the tomato DW, without compromising plant growth. The strategy involved expression of CsCCD2L to produce crocetin dialdehyde and 2,6,6-trimethyl-4-hydroxy-1-carboxaldehyde-1-cyclohexene, and of glycosyltransferases UGT709G1 and CsUGT2 for picrocrocin and crocins production, respectively. Metabolic analyses of the engineered fruits revealed picrocrocin and crocetin-(β-D-gentiobiosyl)-(β-D-glucosyl)-ester, as the predominant crocin molecule, as well as safranal, at the expense of the usual tomato carotenoids. The results showed the highest crocins content ever obtained by metabolic engineering in heterologous systems. In addition, the engineered tomatoes showed higher antioxidant capacity and were able to protect against neurological disorders in a Caenorhabditis elegans model of Alzheimer’s disease. Therefore, these new developed tomatoes could be exploited as a new platform to produce economically competitive saffron apocarotenoids with health-promoting properties.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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