4.4 Article

Dynamics of annatto pigment synthesis and accumulation in seeds of Bixa orellana L. revealed by integrated chemical, anatomical, and RNA-Seq analyses

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PROTOPLASMA
卷 260, 期 4, 页码 1207-1219

出版社

SPRINGER WIEN
DOI: 10.1007/s00709-023-01842-w

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Apocarotenoids; Bixa orellana; Bixin; Carotenoid; Transcriptome

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By combining chemical, anatomical, and transcriptomic data, this study provides insights into the dynamics and regulation of Bixin biosynthesis and accumulation during B. orellana seed development. Bixin accumulated in large quantities in seeds, reached a peak at the S4 stage, and gradually decreased thereafter. Anatomical analysis revealed that bixin accumulated in the central vacuole of specialized cells in the developing mesotesta. Transcriptomic analysis identified 312 genes involved in the DOXP/MEP, carotenoid, and bixin biosynthesis pathways, with 50 of them being sequentially and differentially expressed throughout seed development.
Bixin is a commercially valuable apocarotenoid pigment found in the seed aril of Bixa orellana. The dynamics and regulation of its biosynthesis and accumulation during seed development remain largely unknown. Here, we combined chemical, anatomical, and transcriptomic data to provide stage-specific resolution of the cellular and molecular events occurring during B. orellana seed development. Seeds at five developmental stages (S1-S5) were used for analysis of bixin content and seed anatomy, and three of them (S1, S3, and S4) were selected for Illumina HiSeq sequencing. Bixin accumulated in large quantities in seeds compared with other tissues analyzed, particularly during the S2 stage, peaking at the S4 stage, and then decreasing slightly in the S5 stage. Anatomical analysis revealed that bixin accumulated in the large central vacuole of specialized cells, which were scattered throughout the developing mesotesta at the S2 stage, but enlarged progressively at later stages, until they occupied most of the parenchyma in the aril. A total of 13 million reads were generated and assembled into 73,381 protein-encoding contigs, from which 312 were identified as containing 1-deoxy-D-xylulose-5-phosphate/2-C-methyl-D-erythritol-4-phosphate (DOXP/MEP), carotenoid, and bixin pathways genes. Differential transcriptome expression analysis of these genes revealed that 50 of them were sequentially and differentially expressed through the seed developmental stages analyzed, including seven carotenoid cleavage dioxygenases, eight aldehyde dehydrogenases, and 22 methyltransferases. Taken together, these results show that bixin synthesis and accumulation in seeds of B. orellana are a developmentally regulated process involving the coordinated expression of DOXP/MEP, carotenoid, and bixin biosynthesis genes.

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