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An in vitro system for the rapid functional characterization of genes involved in carotenoid biosynthesis and accumulation
Authors:Chao Bai  Sol M Rivera  Vicente Medina  Rui Alves  Ester Vilaprinyo  Albert Sorribas  Ramon Canela  Teresa Capell  Gerhard Sandmann  Paul Christou  Changfu Zhu
Institution:1. Department of Plant Production and Forestry Science, School of Agrifood and Forestry Science and Engineering (ETSEA), University of Lleida Agrotecnio Center, , 25198 Lleida, Spain;2. Department of Chemistry, School of Agrifood and Forestry Science and Engineering (ETSEA), University of Lleida Agrotecnio Center, , 25198 Lleida, Spain;3. Department Ciències Mèdiques Bàsiques, Universitat de Lleida & Institut de Recerca Biomédica de Lleida, Edifici Recerca Biomédica I, , 25198 Lleida, Spain;4. Institute of Molecular Bioscience, J.W. Goethe University Frankfurt, , 60438 Frankfurt, Germany;5. Institució Catalana de Recerca i Estudis Avancats, , 08010 Barcelona, Spain
Abstract:We have developed an assay based on rice embryogenic callus for rapid functional characterization of metabolic genes. We validated the assay using a selection of well‐characterized genes with known functions in the carotenoid biosynthesis pathway, allowing rapid visual screening of callus phenotypes based on tissue color. We then used the system to identify the functions of two uncharacterized genes: a chemically synthesized β–carotene ketolase gene optimized for maize codon usage, and a wild‐type Arabidopsis thaliana ortholog of the cauliflower Orange gene. In contrast to previous reports (Lopez, A.B., Van Eck, J., Conlin, B.J., Paolillo, D.J., O'Neill, J. and Li, L. ( 2008 ) J. Exp. Bot. 59, 213–223; Lu, S., Van Eck, J., Zhou, X., Lopez, A.B., O'Halloran, D.M., Cosman, K.M., Conlin, B.J., Paolillo, D.J., Garvin, D.F., Vrebalov, J., Kochian, L.V., Küpper, H., Earle, E.D., Cao, J. and Li, L. ( 2006 ) Plant Cell 18, 3594–3605), we found that the wild‐type Orange allele was sufficient to induce chromoplast differentiation. We also found that chromoplast differentiation was induced by increasing the availability of precursors and thus driving flux through the pathway, even in the absence of Orange. Remarkably, we found that diverse endosperm‐specific promoters were highly active in rice callus despite their restricted activity in mature plants. Our callus system provides a unique opportunity to predict the effect of metabolic engineering in complex pathways, and provides a starting point for quantitative modeling and the rational design of engineering strategies using synthetic biology. We discuss the impact of our data on analysis and engineering of the carotenoid biosynthesis pathway.
Keywords:carotenoids  gene function  rice (Oryza sativa)  1–  deoxy‐d–  xylulose 5–  phosphate synthase  β  ‐carotene ketolase  technical advance
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