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The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification

In sorghum (Sorghum bicolor) and other C(4) grasses, brown midrib (bmr) mutants have long been associated with plants impaired in their ability to synthesize lignin. The brown midrib 30 (Bmr30) gene, identified using a bulk segregant analysis and next-generation sequencing, was determined to encode...

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Autores principales: Tetreault, Hannah M., Gries, Tammy, Liu, Sarah, Toy, John, Xin, Zhanguo, Vermerris, Wilfred, Ralph, John, Funnell-Harris, Deanna L., Sattler, Scott E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8674566/
https://www.ncbi.nlm.nih.gov/pubmed/34925394
http://dx.doi.org/10.3389/fpls.2021.732307
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author Tetreault, Hannah M.
Gries, Tammy
Liu, Sarah
Toy, John
Xin, Zhanguo
Vermerris, Wilfred
Ralph, John
Funnell-Harris, Deanna L.
Sattler, Scott E.
author_facet Tetreault, Hannah M.
Gries, Tammy
Liu, Sarah
Toy, John
Xin, Zhanguo
Vermerris, Wilfred
Ralph, John
Funnell-Harris, Deanna L.
Sattler, Scott E.
author_sort Tetreault, Hannah M.
collection PubMed
description In sorghum (Sorghum bicolor) and other C(4) grasses, brown midrib (bmr) mutants have long been associated with plants impaired in their ability to synthesize lignin. The brown midrib 30 (Bmr30) gene, identified using a bulk segregant analysis and next-generation sequencing, was determined to encode a chalcone isomerase (CHI). Two independent mutations within this gene confirmed that loss of its function was responsible for the brown leaf midrib phenotype and reduced lignin concentration. Loss of the Bmr30 gene function, as shown by histochemical staining of leaf midrib and stalk sections, resulted in altered cell wall composition. In the bmr30 mutants, CHI activity was drastically reduced, and the accumulation of total flavonoids and total anthocyanins was impaired, which is consistent with its function in flavonoid biosynthesis. The level of the flavone lignin monomer tricin was reduced 20-fold in the stem relative to wild type, and to undetectable levels in the leaf tissue of the mutants. The bmr30 mutant, therefore, harbors a mutation in a phenylpropanoid biosynthetic gene that is key to the interconnection between flavonoids and monolignols, both of which are utilized for lignin synthesis in the grasses.
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spelling pubmed-86745662021-12-17 The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification Tetreault, Hannah M. Gries, Tammy Liu, Sarah Toy, John Xin, Zhanguo Vermerris, Wilfred Ralph, John Funnell-Harris, Deanna L. Sattler, Scott E. Front Plant Sci Plant Science In sorghum (Sorghum bicolor) and other C(4) grasses, brown midrib (bmr) mutants have long been associated with plants impaired in their ability to synthesize lignin. The brown midrib 30 (Bmr30) gene, identified using a bulk segregant analysis and next-generation sequencing, was determined to encode a chalcone isomerase (CHI). Two independent mutations within this gene confirmed that loss of its function was responsible for the brown leaf midrib phenotype and reduced lignin concentration. Loss of the Bmr30 gene function, as shown by histochemical staining of leaf midrib and stalk sections, resulted in altered cell wall composition. In the bmr30 mutants, CHI activity was drastically reduced, and the accumulation of total flavonoids and total anthocyanins was impaired, which is consistent with its function in flavonoid biosynthesis. The level of the flavone lignin monomer tricin was reduced 20-fold in the stem relative to wild type, and to undetectable levels in the leaf tissue of the mutants. The bmr30 mutant, therefore, harbors a mutation in a phenylpropanoid biosynthetic gene that is key to the interconnection between flavonoids and monolignols, both of which are utilized for lignin synthesis in the grasses. Frontiers Media S.A. 2021-12-02 /pmc/articles/PMC8674566/ /pubmed/34925394 http://dx.doi.org/10.3389/fpls.2021.732307 Text en Copyright © 2021 Tetreault, Gries, Liu, Toy, Xin, Vermerris, Ralph, Funnell-Harris and Sattler. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Tetreault, Hannah M.
Gries, Tammy
Liu, Sarah
Toy, John
Xin, Zhanguo
Vermerris, Wilfred
Ralph, John
Funnell-Harris, Deanna L.
Sattler, Scott E.
The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification
title The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification
title_full The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification
title_fullStr The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification
title_full_unstemmed The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification
title_short The Sorghum (Sorghum bicolor) Brown Midrib 30 Gene Encodes a Chalcone Isomerase Required for Cell Wall Lignification
title_sort sorghum (sorghum bicolor) brown midrib 30 gene encodes a chalcone isomerase required for cell wall lignification
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8674566/
https://www.ncbi.nlm.nih.gov/pubmed/34925394
http://dx.doi.org/10.3389/fpls.2021.732307
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