4.7 Article

A genome-wide analysis of the flax (Linum usitatissimum L.) dirigent protein family: from gene identification and evolution to differential regulation

期刊

PLANT MOLECULAR BIOLOGY
卷 97, 期 1-2, 页码 73-101

出版社

SPRINGER
DOI: 10.1007/s11103-018-0725-x

关键词

Dirigent proteins; Lignans; Lignins; Secondary cell wall; Gene expression regulation; Linum usitatissimum L.

资金

  1. Region Centre Val de Loire
  2. Conseil Departemental d'Eure et Loir
  3. Ligue contre le Cancer (Comite d'Eure et Loir)
  4. French Ministry Enseignement Superieur et Recherche
  5. Chemical Sciences, Geosciences and Biosciences Division, DOE Office of Basic Energy Sciences [DE-FG-0397ER20259]
  6. Office of Biological and Environmental Research

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Dirigent proteins (DIRs) were discovered during 8-8' lignan biosynthesis studies, through identification of stereoselective coupling to afford either (+)- or (-)-pinoresinols from E-coniferyl alcohol. DIRs are also involved or potentially involved in terpenoid, allyl/propenyl phenol lignan, pterocarpan and lignin biosynthesis. DIRs have very large multigene families in different vascular plants including flax, with most still of unknown function. DIR studies typically focus on a small subset of genes and identification of biochemical/physiological functions. Herein, a genome-wide analysis and characterization of the predicted flax DIR 44-membered multigene family was performed, this species being a rich natural grain source of 8-8' linked secoisolariciresinol-derived lignan oligomers. All predicted DIR sequences, including their promoters, were analyzed together with their public gene expression datasets. Expression patterns of selected DIRs were examined using qPCR, as well as through clustering analysis of DIR gene expression. These analyses further implicated roles for specific DIRs in (-)-pinoresinol formation in seed-coats, as well as (+)-pinoresinol in vegetative organs and/or specific responses to stress. Phylogeny and gene expression analysis segregated flax DIRs into six distinct clusters with new cluster-specific motifs identified. We propose that these findings can serve as a foundation to further systematically determine functions of DIRs, i.e. other than those already known in lignan biosynthesis in flax and other species. Given the differential expression profiles and inducibility of the flax DIR family, we provisionally propose that some DIR genes of unknown function could be involved in different aspects of secondary cell wall biosynthesis and plant defense.

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