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Candidate Enzymes for Saffron Crocin Biosynthesis Are Localized in Multiple Cellular Compartments.

Plant Physiol.. 2018; 
DemurtasOlivia Costantina,FruscianteSarah,FerrantePaola,DirettoGianfranco,AzadNoraddin Hosseinpour,PietrellaMarco,ApreaGiuseppe,TaddeiAnna Rita,RomanoElena,MiJianing,Al-BabiliSalim,FrigerioLorenzo,GiulianoGiov
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Peptide Synthesis For all experiments, PVDF membranes were incubated 2 h at room temperature with 1 µg/ml of a polyclonal anti-CsCCD2, anti-CsALDH3I1 or anti-CsUGT74AD1 antibodies (affinity purified sera of rabbits immunized with the synthetic peptides MANKEEAEKRKKKP,YGGKRDEKRLKIAP, or EVMDGERSGKIREN, respectively, from GenScript Co., USA),followed by incubation for 1 h with a secondary anti-rabbit antibody (GE-Healthcare) at 1:15,000 dilution. Get A Quote
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摘要

Saffron is the dried stigmas of and is the most expensive spice in the world. Its red color is due to crocins, which are apocarotenoid glycosides that accumulate in the vacuole to a level up to 10% of the stigma dry weight. Previously, we characterized the first dedicated enzyme in the crocin biosynthetic pathway, carotenoid cleavage dioxygenase2 (CsCCD2), which cleaves zeaxanthin to yield crocetin dialdehyde. In this work, we identified six putative () genes expressed in stigmas. Heterologous expression in showed that only one of corresponding proteins (CsALDH3I1) was able to convert crocetin dialdehyde into the crocin precursor crocetin. CsALDH3I1 carries a carboxyl-terminal hydrophobic domain... More

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