Publisher Correction: Divergent multifunctional P450s-empowered biosynthesis of bioactive tripterifordin and cryptic atiserenoids in Aconitum implies convergent evolution
Исправление издателя: Дивергентный многофункциональный биосинтез, опосредованный P450, биоактивного триптерифордина и скрытых атисереноидов в Aconitum указывает на конвергентную эволюцию
2026-07-01
SCID: 54.1/b6tpmnxv
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AconitumGA3P450satiserenoidschemical structure correctionconvergent evolutionforskolinmultifunctional P450sstevioltripterifordin biosynthesis
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Abstract (AI)
In the original version of this Article, in Fig. 1, oxygen groups labelled red were missing from the chemical structures for forskolin, steviol and GA3. This has now been corrected in the PDF and HTML versions of the Article.
Key Findings
1
A publisher correction was issued: oxygen groups labelled red were missing from chemical structures of forskolin, steviol, and GA3 in Fig. 1 and have been corrected
2
Divergent multifunctional P450 enzymes enable biosynthesis of bioactive tripterifordin and previously cryptic atiserenoids in Aconitum
3
The findings imply convergent evolution in the biosynthetic pathways involving these P450s
Research Object
Divergent multifunctional cytochrome P450 enzymes in Aconitum involved in biosynthesis of tripterifordin and atiserenoids
Research Subject
Their role in enabling biosynthesis pathways of bioactive tripterifordin and cryptic atiserenoids, implying convergent evolution
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2026-07-01
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