4.7 Article

Identification of genes related to agarwood formation: transcriptome analysis of healthy and wounded tissues of Aquilaria sinensis

期刊

BMC GENOMICS
卷 14, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/1471-2164-14-227

关键词

Agarwood; Aquilaria sinensis; GC-MS; Sesquiterpenes; Transcriptome; Wound signal transduction

资金

  1. National Natural Science Foundation of China [31100220, 81173481, 31000136, 81001607]
  2. Program for New Century Excellent Talents in University
  3. Ministry of Education of China [2008]
  4. National Key Technology RD Program [2011BAI01B07]
  5. Program of Modernization for Traditional Chinese Medicine of Hainan Provincial of China [2012ZY002, 2010ZY001]
  6. Key Project in the Science & Technology Program of Hainan Provincial [ZDXM20120033, ZDZX20100006]

向作者/读者索取更多资源

Background: Agarwood is an expensive resinous heartwood derived from Aquilaria plants that is widely used in traditional medicines, incense and perfume. Only wounded trees can produce agarwood, and the huge demand for the agarwood products has led all Aquilaria spp. being endangered and listed in the Appendix II of the CITES (http://www.cites.org). The major components of agarwood are sesquiterpenes and phenylethyl chromones. Owing to a lack of genomic information, the molecular basis of wound-induced sesquiterpenes biosynthesis and agarwood formation remains unknown. Results: To identify the primary genes that maybe related to agarwood formation, we sequenced 2 cDNA libraries generated from healthy and wounded A. sinensis (Lour.) Gilg. A total of 89,137 unigenes with an average length of 678.65 bp were obtained, and they were annotated in detail at bioinformatics levels. Of those associated with agarwood formation, 30 putatively encoded enzymes in the sesquiterpene biosynthesis pathway, and a handful of transcription factors and protein kinases were related to wound signal transduction. Three full-length cDNAs of sesquiterpene synthases (ASS1-3) were cloned and expressed in Escherichia coli, and enzyme assays revealed that they are active enzymes, with the major products being delta-guaiene. A methyl jasmonate (MJ) induction experiment revealed that the expression of ASS was significantly induced by MJ, and the production of sesquiterpenes was elevated accordingly. The expression of some transcription factors and protein kinases, especially MYB4, WRKY4, MPKK2 and MAPK2, was also induced by MJ and coordinated with ASS expression, suggesting they maybe positive regulators of ASS. Conclusions: This study provides extensive transcriptome information for Aquilaria spp. and valuable clues for elucidating the mechanism of wound-induced agarwood sesquiterpenes biosynthesis and their regulation.

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