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Hydroxyl carlactone derivatives are predominant strigolactones in Arabidopsis

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posted on 2024-06-17, 20:25 authored by K Yoneyama, K Akiyama, Philip B Brewer, N Mori, M Kawano-Kawada, S Haruta, H Nishiwaki, S Yamauchi, X Xie, M Umehara, CA Beveridge, T Nomura
Strigolactones (SLs) regulate important aspects of plant growth and stress responses. Many diverse types of SL occur in plants, but a complete picture of biosynthesis remains unclear. In Arabidopsis thaliana, we have demonstrated that MAX1, a cytochrome P450 monooxygenase, converts carlactone (CL) into carlactonoic acid (CLA) and that LBO, a 2-oxoglutarate-dependent dioxygenase, can convert methyl carlactonoate (MeCLA) into a metabolite called [MeCLA + 16 Da]. In the present study, feeding experiments with deuterated MeCLAs revealed that [MeCLA + 16 Da] is hydroxymethyl carlactonoate (1'-HO-MeCLA). Importantly, this LBO metabolite was detected in plants. Interestingly, other related compounds, methyl 4-hydroxycarlactonoate (4-HO-MeCLA) and methyl 16-hydroxycarlactonoate (16-HO-MeCLA), were also found to accumulate in lbo mutants. 3-HO-, 4-HO-, and 16-HO-CL were detected in plants, but their expected corresponding metabolites, HO-CLAs, were absent in max1 mutants. These results suggest that HO-CL derivatives may be predominant SLs in Arabidopsis, produced through MAX1 and LBO.

Funding

Category 1 - Australian Competitive Grants (this includes ARC, NHMRC)

History

Volume

4

Issue

5

Start Page

1

End Page

14

Number of Pages

14

eISSN

2475-4455

ISSN

2475-4455

Publisher

Wiley

Publisher License

CC BY

Additional Rights

CC BY 4.0

Language

en

Peer Reviewed

  • Yes

Open Access

  • Yes

Acceptance Date

2020-03-31

Author Research Institute

  • Institute for Future Farming Systems

Era Eligible

  • Yes

Medium

Electronic-eCollection

Journal

Plant Direct

Article Number

e00219

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