Lignin characterization of rice CONIFERALDEHYDE 5-HYDROXYLASE loss-of-function mutants generated with the CRISPR/Cas9 system.


Journal

The Plant journal : for cell and molecular biology
ISSN: 1365-313X
Titre abrégé: Plant J
Pays: England
ID NLM: 9207397

Informations de publication

Date de publication:
02 2019
Historique:
received: 06 08 2018
revised: 17 10 2018
accepted: 22 10 2018
pubmed: 31 10 2018
medline: 21 1 2020
entrez: 31 10 2018
Statut: ppublish

Résumé

The aromatic composition of lignin is an important trait that greatly affects the usability of lignocellulosic biomass. We previously identified a rice (Oryza sativa) gene encoding coniferaldehyde 5-hydroxylase (OsCAld5H1), which was effective in modulating syringyl (S)/guaiacyl (G) lignin composition ratio in rice, a model grass species. Previously characterized OsCAld5H1-knockdown rice lines, which were produced via an RNA-interference approach, showed augmented G lignin units yet contained considerable amounts of residual S lignin units. In this study, to further investigate the effect of suppression of OsCAld5H1 on rice lignin structure, we generated loss-of-function mutants of OsCAld5H1 using the CRISPR/Cas9-mediated genome editing system. Homozygous OsCAld5H1-knockout lines harboring anticipated frame-shift mutations in OsCAld5H1 were successfully obtained. A series of wet-chemical and two-dimensional NMR analyses on cell walls demonstrated that although lignins in the mutant were predictably enriched in G units all the tested mutant lines produced considerable numbers of S units. Intriguingly, lignin γ-p-coumaroylation analysis by the derivatization followed by reductive cleavage method revealed that enrichment of G units in lignins of the mutants was limited to the non-γ-p-coumaroylated units, whereas grass-specific γ-p-coumaroylated lignin units were almost unaffected. Gene expression analysis indicated that no homologous genes of OsCAld5H1 were overexpressed in the mutants. These data suggested that CAld5H is mainly involved in the production of non-γ-p-coumaroylated S lignin units, common in both eudicots and grasses, but not in the production of grass-specific γ-p-coumaroylated S units in rice.

Identifiants

pubmed: 30375064
doi: 10.1111/tpj.14141
doi:

Substances chimiques

Coumaric Acids 0
Plant Proteins 0
Propionates 0
coniferaldehyde 06TPT01AD5
lignocellulose 11132-73-3
Acrolein 7864XYD3JJ
Lignin 9005-53-2
Mixed Function Oxygenases EC 1.-
p-coumaric acid IBS9D1EU3J

Banques de données

GENBANK
['AK067847']

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

543-554

Informations de copyright

© 2018 The Authors The Plant Journal © 2018 John Wiley & Sons Ltd.

Auteurs

Yuri Takeda (Y)

Research Institute for Sustainable Humanosphere, Kyoto University, Uji, Kyoto, 611-0011, Japan.

Shiro Suzuki (S)

Research Institute for Sustainable Humanosphere, Kyoto University, Uji, Kyoto, 611-0011, Japan.

Yuki Tobimatsu (Y)

Research Institute for Sustainable Humanosphere, Kyoto University, Uji, Kyoto, 611-0011, Japan.

Keishi Osakabe (K)

Faculty of Bioscience and Bioindustry, Tokushima University, Kuramoto-cho, Tokushima, 770-8503, Japan.

Yuriko Osakabe (Y)

Faculty of Bioscience and Bioindustry, Tokushima University, Kuramoto-cho, Tokushima, 770-8503, Japan.

Safendrri K Ragamustari (SK)

Research Institute for Sustainable Humanosphere, Kyoto University, Uji, Kyoto, 611-0011, Japan.
Research Unit for Development of Global Sustainability, Kyoto University, Uji, Kyoto, 611-0011, Japan.

Masahiro Sakamoto (M)

Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto, 606-8502, Japan.

Toshiaki Umezawa (T)

Research Institute for Sustainable Humanosphere, Kyoto University, Uji, Kyoto, 611-0011, Japan.
Research Unit for Development of Global Sustainability, Kyoto University, Uji, Kyoto, 611-0011, Japan.

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Classifications MeSH