Produzione scientifica
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Filtri: Parola Chiave is Carotenoid [Clear All Filters]
The Impact of Growing Area on the Expression of Fruit Traits Related to Sensory Perception in Two Tomato Cultivars,
, International Journal of Molecular Sciences, Volume 25, Number 16, (2024)
Engineering the production of crocins and picrocrocin in heterologous plant systems,
, Industrial Crops and Products, Volume 194, (2023)
A xanthophyll-derived apocarotenoid regulates carotenogenesis in tomato chromoplasts,
, Plant Science, Volume 328, (2023)
Heterologous expression of Bixa orellana cleavage dioxygenase 4-3 drives crocin but not bixin biosynthesis,
, Plant Physiology, Volume 188, Number 3, p.1469-1482, (2022)
Subfunctionalization of D27 Isomerase Genes in Saffron,
, International Journal of Molecular Sciences, Volume 23, Number 18, (2022)
A new glycosyltransferase enzyme from family 91, ugt91p3, is responsible for the final glucosylation step of crocins in saffron (Crocus sativus l.),
, International Journal of Molecular Sciences, Volume 22, Number 16, (2021)
Several geranylgeranyl diphosphate synthase isoforms supply metabolic substrates for carotenoid biosynthesis in tomato,
, New Phytologist, Volume 231, Number 1, p.255-272, (2021)
Carotenoid biofortification in crop plants: citius, altius, fortius,
, Biochimica et Biophysica Acta - Molecular and Cell Biology of Lipids, Volume 1865, Number 11, (2020)
Determination of In Vitro and In Vivo Activities of Plant Carotenoid Cleavage Oxygenases,
, Methods in molecular biology (Clifton, N.J.), Volume 2083, p.63-74, (2020)
Efficient production of saffron crocins and picrocrocin in Nicotiana benthamiana using a virus-driven system,
, Metabolic Engineering, Volume 61, p.238-250, (2020)
Tandem gene duplications drive divergent evolution of caffeine and crocin biosynthetic pathways in plants,
, BMC Biology, Volume 18, Number 1, p.1–14, (2020)
Transportomics for the Characterization of Plant Apocarotenoid Transmembrane Transporters,
, Methods in molecular biology (Clifton, N.J.), Volume 2083, p.89-99, (2020)
ABCC Transporters Mediate the Vacuolar Accumulation of Crocins in Saffron Stigmas,
, THE PLANT CELL, Volume 31, Number 11, p.2789–2804, (2019)
Candidate enzymes for saffron crocin biosynthesis are localized in multiple cellular compartments,
, Plant Physiology, Volume 177, Number 3, p.990-1006, (2018)
Transcriptome analysis in tissue sectors with contrasting crocins accumulation provides novel insights into apocarotenoid biosynthesis and regulation during chromoplast biogenesis,
, Scientific Reports, Volume 8, Number 1, (2018)
Evolutionarily distinct carotenoid cleavage dioxygenases are responsible for crocetin production in Buddleja davidii,
, Journal of Experimental Botany, Volume 68, Number 16, p.4663-4677, (2017)
Molecular and biochemical characterization of a potato collection with contrasting tuber carotenoid content,
, PLoS ONE, Volume 12, Number 9, p.e0184143, (2017)
Potential of golden potatoes to improve vitamin A and vitamin E status in developing countries,
, PLoS ONE, Volume 12, Number 11, (2017)
Provitamin A biofortification of crop plants: a gold rush with many miners,
, Current Opinion in Biotechnology, Volume 44, p.169-180, (2017)
Unraveling massive crocins transport and accumulation through proteome and microscopy tools during the development of saffron stigma,
, International Journal of Molecular Sciences, Volume 18, Number 1, (2017)
The chimeric repressor version of an Ethylene Response Factor (ERF) family member, Sl-ERF.B3, shows contrasting effects on tomato fruit ripening.,
, The New phytologist, 2014 Jul, Volume 203, Number 1, p.206-18, (2014)
Plant carotenoids: Genomics meets multi-gene engineering,
, Current Opinion in Plant Biology, Volume 19, p.111-117, (2014)
Dissection of Tomato Lycopene Biosynthesis through Virus-Induced Gene Silencing.,
, Plant physiology, 2013 Oct, Volume 163, Number 2, p.986-98, (2013)
Biosynthesis and engineering of carotenoids and apocarotenoids in plants: State of the art and future prospects,
, Biotechnology and Genetic Engineering Reviews, Volume 26, Number 1, p.139-162, (2009)
Diurnal and circadian rhythms in the tomato transcriptome and their modulation by cryptochrome photoreceptors,
, PLoS ONE, Volume 3, Number 7, (2008)