RRC ID 58290
著者 Mori N, Nomura T, Akiyama K.
タイトル Identification of two oxygenase genes involved in the respective biosynthetic pathways of canonical and non-canonical strigolactones in Lotus japonicus.
ジャーナル Planta
Abstract MAIN CONCLUSION:A cytochrome P450 and a 2-oxoglutarate-dependent dioxygenase genes responsible, respectively, for the biosyntheses of canonical and non-canonical strigolactones in Lotus japonicus were identified by transcriptome profiling and mutant screening. Strigolactones (SLs) are a group of apocarotenoids with diverse structures that act as phytohormones and rhizosphere signals. The model legume Lotus japonicus produces both canonical and non-canonical SLs, 5-deoxystrigol (5DS) and lotuslactone (LL), respectively, through oxidation of a common intermediate carlactone by the cytochrome P450 (CYP) enzyme MAX1. However, the pathways downstream of MAX1 and the branching point in the biosyntheses of 5DS and LL have not been elucidated. Here, we identified a CYP and a 2-oxoglutarate-dependent dioxygenase (2OGD) genes responsible, respectively, for the formation of Lotus SLs by transcriptome profiling using RNA-seq and screening of SL-deficient mutants from the Lotus retrotransposon 1 (LORE1) insertion mutant resource. The CYP and 2OGD genes were named DSD and LLD, respectively, after 5DS or LL defective phenotype of the mutants. The involvements of the genes in Lotus SL biosyntheses were confirmed by restoration of the mutant phenotype using Agrobacterium rhizogenes-mediated transformation to generate transgenic roots expressing the coding sequence. The transcript levels of DSD and LLD in roots as well as the levels of 5DS and LL in root exudates were reduced by phosphate fertilization and gibberellin treatment. This study can provide the opportunity to investigate how and why plants produce the two classes of SLs.
巻・号 251(2)
ページ 40
公開日 2020-1-6
DOI 10.1007/s00425-019-03332-x
PII 10.1007/s00425-019-03332-x
PMID 31907631
MeSH Biosynthetic Pathways Cytochrome P-450 Enzyme System / metabolism Gene Expression Regulation, Plant / genetics Gene Expression Regulation, Plant / physiology Heterocyclic Compounds, 3-Ring / metabolism Lactones / metabolism Lotus / genetics Lotus / metabolism* Oxygenases / genetics Oxygenases / metabolism* Plant Proteins / genetics Plant Proteins / metabolism
IF 3.39
引用数 3
リソース情報
ミヤコグサ・ダイズ Lotus japonicus Gifu B-129