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Evolutionary origin of the NCSI gene subfamily encoding norcoclaurine synthase is associated with the biosynthesis of benzylisoquinoline alkaloids in plants

Identifieur interne : 000228 ( Main/Exploration ); précédent : 000227; suivant : 000229

Evolutionary origin of the NCSI gene subfamily encoding norcoclaurine synthase is associated with the biosynthesis of benzylisoquinoline alkaloids in plants

Auteurs : Sornkanok Vimolmangkang [République populaire de Chine, Thaïlande] ; Xianbao Deng [République populaire de Chine] ; Albert Owiti [République populaire de Chine] ; Thitirat Meelaph [Thaïlande] ; Collins Ogutu [République populaire de Chine] ; Yuepeng Han [République populaire de Chine]

Source :

RBID : PMC:4870700

Abstract

Sacred lotus is rich in biologically active compounds, particularly benzylisoquinoline alkaloids (BIAs). Here, we report on isolation of genes encoding (S)-norcoclaurine synthase (NCS) in sacred lotus, which is a key entry-enzyme in BIA biosynthesis. Seven NCS genes, designated NnNCS1 through NnNCS7, were identified in the sacred lotus genome, and five are located next to each other within a 83 kb region on scaffold 8. The NCS genes are divided into two subfamilies, designated NCSI and NCSII. The NCSII genes are universal in plants, while the NCSI genes are only identified in a limited number of dicotyledonous taxa that produce BIAs. In sacred lotus, only NnNCS4 belongs to the NCSII subfamily, whilst the rest NCS genes within the NCSI subfamily. Overall, the NnNCS7 gene was predominantly expressed in all tested tissues, and its expression is significantly correlated with alkaloid content in leaf. In contrast, the NnNCS4 expression shows no significant correlation with alkaloid accumulation in leaf, and its lack of expression cannot inhibit alkaloid accumulation. Taken together, these results suggest that the NCSI subfamily is crucial for BIA biosynthesis, and its origin may represent an important evolutionary event that allows certain plant taxa to produce BIAs.


Url:
DOI: 10.1038/srep26323
PubMed: 27189519
PubMed Central: 4870700


Affiliations:


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Le document en format XML

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gene subfamily encoding norcoclaurine synthase is associated with the biosynthesis of benzylisoquinoline alkaloids in plants</title>
<author>
<name sortKey="Vimolmangkang, Sornkanok" sort="Vimolmangkang, Sornkanok" uniqKey="Vimolmangkang S" first="Sornkanok" last="Vimolmangkang">Sornkanok Vimolmangkang</name>
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<country xml:lang="fr">République populaire de Chine</country>
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<country xml:lang="fr">Thaïlande</country>
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<p>Sacred lotus is rich in biologically active compounds, particularly benzylisoquinoline alkaloids (BIAs). Here, we report on isolation of genes encoding (
<italic>S</italic>
)-norcoclaurine synthase (NCS) in sacred lotus, which is a key entry-enzyme in BIA biosynthesis. Seven
<italic>NCS</italic>
genes, designated
<italic>NnNCS1</italic>
through
<italic>NnNCS7</italic>
, were identified in the sacred lotus genome, and five are located next to each other within a 83 kb region on scaffold 8. The
<italic>NCS</italic>
genes are divided into two subfamilies, designated
<italic>NCSI</italic>
and
<italic>NCSII</italic>
. The
<italic>NCSII</italic>
genes are universal in plants, while the
<italic>NCSI</italic>
genes are only identified in a limited number of dicotyledonous taxa that produce BIAs. In sacred lotus, only
<italic>NnNCS4</italic>
belongs to the
<italic>NCSII</italic>
subfamily, whilst the rest
<italic>NCS</italic>
genes within the
<italic>NCSI</italic>
subfamily. Overall, the
<italic>NnNCS7</italic>
gene was predominantly expressed in all tested tissues, and its expression is significantly correlated with alkaloid content in leaf. In contrast, the
<italic>NnNCS4</italic>
expression shows no significant correlation with alkaloid accumulation in leaf, and its lack of expression cannot inhibit alkaloid accumulation. Taken together, these results suggest that the
<italic>NCSI</italic>
subfamily is crucial for BIA biosynthesis, and its origin may represent an important evolutionary event that allows certain plant taxa to produce BIAs.</p>
</div>
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<country>
<li>République populaire de Chine</li>
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