The biosynthetic gene cluster for the cyanogenic glucoside dhurrin in Sorghum bicolor contains its co-expressed vacuolar MATE transporter
نویسندگان
چکیده
Genomic gene clusters for the biosynthesis of chemical defence compounds are increasingly identified in plant genomes. We previously reported the independent evolution of biosynthetic gene clusters for cyanogenic glucoside biosynthesis in three plant lineages. Here we report that the gene cluster for the cyanogenic glucoside dhurrin in Sorghum bicolor additionally contains a gene, SbMATE2, encoding a transporter of the multidrug and toxic compound extrusion (MATE) family, which is co-expressed with the biosynthetic genes. The predicted localisation of SbMATE2 to the vacuolar membrane was demonstrated experimentally by transient expression of a SbMATE2-YFP fusion protein and confocal microscopy. Transport studies in Xenopus laevis oocytes demonstrate that SbMATE2 is able to transport dhurrin. In addition, SbMATE2 was able to transport non-endogenous cyanogenic glucosides, but not the anthocyanin cyanidin 3-O-glucoside or the glucosinolate indol-3-yl-methyl glucosinolate. The genomic co-localisation of a transporter gene with the biosynthetic genes producing the transported compound is discussed in relation to the role self-toxicity of chemical defence compounds may play in the formation of gene clusters.
منابع مشابه
The Biosynthesis of Cyanogenic Glucosides in Higher Plants IDENTIFICATION OF THREE HYDROXYLATION STEPS IN THE BIOSYNTHESIS OF DHURRIN IN SORGHUM BICOLOR (L.) MOENCH AND THE INVOLVEMENT
s of the 11th Federation of European Biochemical Societies Meeting, Copenhagen, August 14-19, 1977, Abstr. LB-400. by gest on O cber 8, 2017 hp://w w w .jb.org/ D ow nladed from 21116 Biosynthesis of the Cyanogenic Glucoside Dhurrin in Sorghum FIG. 1. Biosynthetic pathway for tyrosine-derived cyanogenic glucoside dhurrin from S. bicolor. The double arrows indicate potential multistep conversion...
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