Literature DB >> 21707799

Genomic clustering of cyanogenic glucoside biosynthetic genes aids their identification in Lotus japonicus and suggests the repeated evolution of this chemical defence pathway.

Adam M Takos1, Camilla Knudsen, Daniela Lai, Rubini Kannangara, Lisbeth Mikkelsen, Mohammed S Motawia, Carl E Olsen, Shusei Sato, Satoshi Tabata, Kirsten Jørgensen, Birger L Møller, Fred Rook.   

Abstract

Cyanogenic glucosides are amino acid-derived defence compounds found in a large number of vascular plants. Their hydrolysis by specific β-glucosidases following tissue damage results in the release of hydrogen cyanide. The cyanogenesis deficient1 (cyd1) mutant of Lotus japonicus carries a partial deletion of the CYP79D3 gene, which encodes a cytochrome P450 enzyme that is responsible for the first step in cyanogenic glucoside biosynthesis. The genomic region surrounding CYP79D3 contains genes encoding the CYP736A2 protein and the UDP-glycosyltransferase UGT85K3. In combination with CYP79D3, these genes encode the enzymes that constitute the entire pathway for cyanogenic glucoside biosynthesis. The biosynthetic genes for cyanogenic glucoside biosynthesis are also co-localized in cassava (Manihot esculenta) and sorghum (Sorghum bicolor), but the three gene clusters show no other similarities. Although the individual enzymes encoded by the biosynthetic genes in these three plant species are related, they are not necessarily orthologous. The independent evolution of cyanogenic glucoside biosynthesis in several higher plant lineages by the repeated recruitment of members from similar gene families, such as the CYP79s, is a likely scenario.
© 2011 The Authors. The Plant Journal © 2011 Blackwell Publishing Ltd.

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Year:  2011        PMID: 21707799     DOI: 10.1111/j.1365-313X.2011.04685.x

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  50 in total

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Journal:  Plant Physiol       Date:  2017-02-22       Impact factor: 8.340

Review 2.  Plant P450s as versatile drivers for evolution of species-specific chemical diversity.

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4.  Comparative analysis of benzoxazinoid biosynthesis in monocots and dicots: independent recruitment of stabilization and activation functions.

Authors:  Regina Dick; Thomas Rattei; Martin Haslbeck; Wilfried Schwab; Alfons Gierl; Monika Frey
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5.  Occurrence of sarmentosin and other hydroxynitrile glucosides in Parnassius (papilionidae) butterflies and their food plants.

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6.  Modularity of plant metabolic gene clusters: a trio of linked genes that are collectively required for acylation of triterpenes in oat.

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7.  The Amaryllidaceae alkaloids: biosynthesis and methods for enzyme discovery.

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8.  Lotus japonicus flowers are defended by a cyanogenic β-glucosidase with highly restricted expression to essential reproductive organs.

Authors:  Daniela Lai; Martina Pičmanová; Maher Abou Hachem; Mohammed Saddik Motawia; Carl Erik Olsen; Birger Lindberg Møller; Fred Rook; Adam M Takos
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Review 10.  Evolution of Gene Duplication in Plants.

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Journal:  Plant Physiol       Date:  2016-06-10       Impact factor: 8.340

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