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1.
Food Chem ; 366: 130531, 2022 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-34284182

RESUMO

Phytochemical electrophiles are drawing significant attention due to their properties to modulate signaling pathways related to cellular homeostasis. The aim of this study was to develop new tools to examine the electrophilic activity in food and predict their beneficial effects on health. We developed a spectrophotometric assay based on the nitrobenzenethiol (NBT) reactivity, as a thiol-reactive nucleophile, to screen electrophiles in tomato fruits. The method is robust, simple, inexpensive, and could be applied to other types of food. We quantified the electrophile activity in a tomato collection and associated this activity with the pigment composition. Thus, we identified lycopene, ß- and γ-carotenes, 16 by-products of carotenoid oxidation and 18 unknown compounds as NBT-reactive by HPLC-MS/MS. The potential benefits of NBT-reactive compounds on health were evaluated in the in vivo model of C. elegans where they activated the SKN-1/Nrf2 pathway, evidencing the ability of electrophilic compounds to induce a biological response.


Assuntos
Proteínas de Caenorhabditis elegans , Solanum lycopersicum , Animais , Caenorhabditis elegans/genética , Proteínas de Ligação a DNA , Suplementos Nutricionais , Fator 2 Relacionado a NF-E2/genética , Espectrometria de Massas em Tandem , Fatores de Transcrição
2.
J Sci Food Agric ; 98(11): 4128-4134, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-29393974

RESUMO

BACKGROUND: The fruits of most commercial tomato cultivars (Solanum lycopersicum L.) are deficient in flavour. In contrast, traditional 'criollo' tomato varieties are appreciated for fruit of excellent organoleptic quality. Small farmers from the Andean valleys in Argentina have maintained their own tomato varieties, which were selected mainly for flavour. This work aims to correlate the chemical composition of the fruit with the sensory attributes of eight heirloom tomato varieties. The long-term goal is to identify potential candidate genes capable of altering the chemicals involved in flavour. RESULTS: A sensory analysis was conducted and the metabolomics of fruit were determined. The data revealed that defined tomato aroma and sourness correlated with citrate and several volatile organic compounds (VOC), such as α-terpineol, p-menth-1-en-9-al, linalool and 3,6-dimethyl-2,3,3a,4,5,7a-hexahydrobenzofuran (DMHEX), a novel volatile recently identified in tomato. Two sensory attributes - sweetness and a not-acidic taste - correlated with the characteristic tomato taste, and also with fructose, glucose, and two VOCs, benzaldehyde, and 2-methyl-2-octen-4-one. CONCLUSIONS: These data provide new evidence of the complex chemical combination that induced the flavour and aroma of the good-tasting 'criollo' tomato fruit. That is, the compounds that correlated with defined tomato aroma and acidic taste did not correlate with sweetness, or with characteristic tomato taste. © 2018 Society of Chemical Industry.


Assuntos
Solanum lycopersicum/química , Adulto , Argentina , Carotenoides/química , Carotenoides/metabolismo , Feminino , Aromatizantes/química , Aromatizantes/metabolismo , Frutas/química , Frutas/classificação , Frutas/economia , Frutas/metabolismo , Humanos , Solanum lycopersicum/classificação , Solanum lycopersicum/economia , Solanum lycopersicum/metabolismo , Masculino , Metaboloma , Pessoa de Meia-Idade , Odorantes/análise , Paladar , Compostos Orgânicos Voláteis/química , Compostos Orgânicos Voláteis/metabolismo , Adulto Jovem
3.
Plant Biotechnol J ; 9(2): 136-50, 2011 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-20497372

RESUMO

It is expected that the next generation of biotech crops displaying enhanced quality traits with benefits to both farmers and consumers will have a better acceptance than first generation biotech crops and will improve public perception of genetic engineering. This will only be true if they are proven to be as safe as traditionally bred crops. In contrast with the first generation of biotech crops where only a single trait is modified, the next generation of biotech crops will add a new level of complexity inherent to the mechanisms underlying their output traits. In this study, a comprehensive evaluation of the comparative safety approach on a quality-improved biotech crop with metabolic modifications is presented. Three genetically engineered potato lines with silenced polyphenol oxidase (Ppo) transcripts and reduced tuber browning were characterized at both physiological and molecular levels and showed to be equivalent to wild-type (WT) plants when yield-associated traits and photosynthesis were evaluated. Analysis of the primary metabolism revealed several unintended metabolic modifications in the engineered tubers, providing evidence for potential compositional inequivalence between transgenic lines and WT controls. The silencing construct sequence was in silico analysed for potential allergenic cross-reactivity, and no similarities to known allergenic proteins were identified. Moreover, in vivo intake safety evaluation showed no adverse effects in physiological parameters. Taken together, these results provide the first evidence supporting that the safety of next generation biotech crops can be properly assessed following the current evaluation criterion, even if the transgenic and WT crops are not substantially equivalent.


Assuntos
Inocuidade dos Alimentos , Engenharia Genética , Solanum tuberosum/genética , Alérgenos/análise , Animais , Catecol Oxidase/genética , Biologia Computacional , Feminino , Inativação Gênica , Camundongos , Camundongos Endogâmicos BALB C , Fotossíntese
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