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An alternative, zeaxanthin epoxidase-independent abscisic acid biosynthetic pathway in plants,
, Molecular Plant, Jan-01-2022, Volume 15, Issue 1, Number 1, p.151 - 166, (2022)
Several geranylgeranyl diphosphate synthase isoforms supply metabolic substrates for carotenoid biosynthesis in tomato,
, New Phytologist, Volume 231, Number 1, p.255-272, (2021)
Tomato yellow leaf curl Sardinia virus-resistant tomato plants expressing the multifunctional N-terminal domain of the replication-associated protein show transcriptional changes resembling stress-related responses,
, Molecular Plant Pathology, 2014, Volume 15, p.31 - 43, (2014)
A quadruple mutant of Arabidopsis reveals a β-carotene hydroxylation activity for LUT1/CYP97C1 and a regulatory role of xanthophylls on determination of the PSI/PSII ratio,
, BMC Plant Biology, Volume 12, (2012)
The radiation bystander effect and its potential implications for human health,
, Current Molecular Medicine, Volume 12, Number 5, p.613-624, (2012)
The tomato genome sequence provides insights into fleshy fruit evolution,
, Nature, Volume 485, Number 7400, p.635-641, (2012)
Functional diversity inside the Arabidopsis polyamine oxidase gene family.,
, Journal of experimental botany, 2011 Jan, Volume 62, p.1155-68, (2011)
LC-MS/MS methods for absolute quantification and identification of proteins associated with chimeric plant oil bodies,
, Analytical Chemistry, Volume 83, Number 24, p.9267-9272, (2011)
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)
Different roles of α- and β-branch xanthophylls in photosystem assembly and photoprotection,
, Journal of Biological Chemistry, Volume 282, Number 48, p.35056-35068, (2007)
Elucidation of the β-carotene hydroxylation pathway in Arabidopsis thaliana,
, FEBS Letters, Volume 580, Number 19, p.4718-4722, (2006)
The Effect of Zeaxanthin As the only Xanthophyll on the Structure and Function of the Photosynthetic Apparatus in Arabidopsis thaliana,
, Journal of Biological Chemistry, Volume 279, Number 14, p.13878-13888, (2004)
Targeted modification of homogalacturonan by transgenic expression of a fungal polygalacturonase alters plant growth,
, Plant Physiology, 2004, Volume 135, p.1294 - 1304, (2004)
Carotenoid isomerase: A tale of light and isomers,
, Trends in Plant Science, Volume 7, Number 10, p.427-429, (2002)
Metabolic engineering of xanthophyll content in tomato fruits,
, FEBS Letters, Volume 519, Number 1-3, p.30-34, (2002)
Genetic dissection of blue-light sensing in tomato using mutants deficient in cryptochrome 1 and phytochromes A, B1 and B2,
, Plant Journal, Volume 25, Number 4, p.427-440, (2001)
Tomato and barley contain duplicated copies of cryptochrome 1,
, Plant, Cell and Environment, Volume 24, Number 9, p.991-998, (2001)
Metabolic engineering of beta-carotene and lycopene content in tomato fruit,
, Plant Journal, Volume 24, Number 3, p.413-419, (2000)
Tomato contains homologues of Arabidopsis cryptochromes 1 and 2,
, Plant Molecular Biology, Volume 42, Number 5, p.765-773, (2000)
Cryptochrome 1 controls tomato development in response to blue light,
, Plant Journal, Volume 18, Number 5, p.551-556, (1999)
Light-dependent regulation of carotenoid biosynthesis occurs at the level of phytoene synthase expression and is mediated by phytochrome in Sinapis alba and Arabidopsis thaliana seedlings,
, Plant Journal, Volume 12, Number 3, p.625-634, (1997)
Multiple isoforms of arabidopsis casein kinase I combine conserved catalytic domains with variable carboxyl-terminal extensions,
, Plant Physiology, Volume 109, Number 2, p.687-696, (1995)