The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase

One goal of potato breeding is to reduce the accumulation of toxic solanidane glycoalkaloids. Here the authors show that potato DPS, a 2-oxoglutarate dependent dioxygenase, catalyzes ring rearrangement of a biosynthetic precursor to differentiate solanidanes from spirosolanes that are found in other...

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Main Authors: Ryota Akiyama, Bunta Watanabe, Masaru Nakayasu, Hyoung Jae Lee, Junpei Kato, Naoyuki Umemoto, Toshiya Muranaka, Kazuki Saito, Yukihiro Sugimoto, Masaharu Mizutani
Format: Article
Language:English
Published: Nature Portfolio 2021-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-21546-0
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author Ryota Akiyama
Bunta Watanabe
Masaru Nakayasu
Hyoung Jae Lee
Junpei Kato
Naoyuki Umemoto
Toshiya Muranaka
Kazuki Saito
Yukihiro Sugimoto
Masaharu Mizutani
author_facet Ryota Akiyama
Bunta Watanabe
Masaru Nakayasu
Hyoung Jae Lee
Junpei Kato
Naoyuki Umemoto
Toshiya Muranaka
Kazuki Saito
Yukihiro Sugimoto
Masaharu Mizutani
author_sort Ryota Akiyama
collection DOAJ
description One goal of potato breeding is to reduce the accumulation of toxic solanidane glycoalkaloids. Here the authors show that potato DPS, a 2-oxoglutarate dependent dioxygenase, catalyzes ring rearrangement of a biosynthetic precursor to differentiate solanidanes from spirosolanes that are found in other solanaceous plants.
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spelling doaj.art-a979c63a4d054a6391ecae62f87f29bb2022-12-21T21:27:24ZengNature PortfolioNature Communications2041-17232021-02-0112111010.1038/s41467-021-21546-0The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenaseRyota Akiyama0Bunta Watanabe1Masaru Nakayasu2Hyoung Jae Lee3Junpei Kato4Naoyuki Umemoto5Toshiya Muranaka6Kazuki Saito7Yukihiro Sugimoto8Masaharu Mizutani9Graduate School of Agricultural Science, Kobe UniversityInstitute for Chemical Research, Kyoto UniversityGraduate School of Agricultural Science, Kobe UniversityGraduate School of Agricultural Science, Kobe UniversityGraduate School of Agricultural Science, Kobe UniversityRIKEN Center for Sustainable Resource ScienceDepartment of Biotechnology, Graduate School of Engineering, Osaka UniversityRIKEN Center for Sustainable Resource ScienceGraduate School of Agricultural Science, Kobe UniversityGraduate School of Agricultural Science, Kobe UniversityOne goal of potato breeding is to reduce the accumulation of toxic solanidane glycoalkaloids. Here the authors show that potato DPS, a 2-oxoglutarate dependent dioxygenase, catalyzes ring rearrangement of a biosynthetic precursor to differentiate solanidanes from spirosolanes that are found in other solanaceous plants.https://doi.org/10.1038/s41467-021-21546-0
spellingShingle Ryota Akiyama
Bunta Watanabe
Masaru Nakayasu
Hyoung Jae Lee
Junpei Kato
Naoyuki Umemoto
Toshiya Muranaka
Kazuki Saito
Yukihiro Sugimoto
Masaharu Mizutani
The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
Nature Communications
title The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
title_full The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
title_fullStr The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
title_full_unstemmed The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
title_short The biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
title_sort biosynthetic pathway of potato solanidanes diverged from that of spirosolanes due to evolution of a dioxygenase
url https://doi.org/10.1038/s41467-021-21546-0
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