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The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics

In woody crop plants, the oligosaccharide components of the cell wall are essential for important traits such as bioenergy content, growth, and structural wood properties. UDP-glucuronate decarboxylase (UXS) is a key enzyme in the synthesis of UDP-xylose for the formation of xylans during cell wall...

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Detalles Bibliográficos
Autores principales: Du, Qingzhang, Pan, Wei, Tian, Jiaxing, Li, Bailian, Zhang, Deqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3629030/
https://www.ncbi.nlm.nih.gov/pubmed/23613749
http://dx.doi.org/10.1371/journal.pone.0060880
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author Du, Qingzhang
Pan, Wei
Tian, Jiaxing
Li, Bailian
Zhang, Deqiang
author_facet Du, Qingzhang
Pan, Wei
Tian, Jiaxing
Li, Bailian
Zhang, Deqiang
author_sort Du, Qingzhang
collection PubMed
description In woody crop plants, the oligosaccharide components of the cell wall are essential for important traits such as bioenergy content, growth, and structural wood properties. UDP-glucuronate decarboxylase (UXS) is a key enzyme in the synthesis of UDP-xylose for the formation of xylans during cell wall biosynthesis. Here, we isolated a multigene family of seven members (PtUXS1-7) encoding UXS from Populus tomentosa, the first investigation of UXSs in a tree species. Analysis of gene structure and phylogeny showed that the PtUXS family could be divided into three groups (PtUXS1/4, PtUXS2/5, and PtUXS3/6/7), consistent with the tissue-specific expression patterns of each PtUXS. We further evaluated the functional consequences of nucleotide polymorphisms in PtUXS1. In total, 243 single-nucleotide polymorphisms (SNPs) were identified, with a high frequency of SNPs (1/18 bp) and nucleotide diversity (π(T) = 0.01033, θ(w = )0.01280). Linkage disequilibrium (LD) analysis showed that LD did not extend over the entire gene (r (2)<0.1, P<0.001, within 700 bp). SNP- and haplotype-based association analysis showed that nine SNPs (Q <0.10) and 12 haplotypes (P<0.05) were significantly associated with growth and wood property traits in the association population (426 individuals), with 2.70% to 12.37% of the phenotypic variation explained. Four significant single-marker associations (Q <0.10) were validated in a linkage mapping population of 1200 individuals. Also, RNA transcript accumulation varies among genotypic classes of SNP10 was further confirmed in the association population. This is the first comprehensive study of the UXS gene family in woody plants, and lays the foundation for genetic improvements of wood properties and growth in trees using genetic engineering or marker-assisted breeding.
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spelling pubmed-36290302013-04-23 The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics Du, Qingzhang Pan, Wei Tian, Jiaxing Li, Bailian Zhang, Deqiang PLoS One Research Article In woody crop plants, the oligosaccharide components of the cell wall are essential for important traits such as bioenergy content, growth, and structural wood properties. UDP-glucuronate decarboxylase (UXS) is a key enzyme in the synthesis of UDP-xylose for the formation of xylans during cell wall biosynthesis. Here, we isolated a multigene family of seven members (PtUXS1-7) encoding UXS from Populus tomentosa, the first investigation of UXSs in a tree species. Analysis of gene structure and phylogeny showed that the PtUXS family could be divided into three groups (PtUXS1/4, PtUXS2/5, and PtUXS3/6/7), consistent with the tissue-specific expression patterns of each PtUXS. We further evaluated the functional consequences of nucleotide polymorphisms in PtUXS1. In total, 243 single-nucleotide polymorphisms (SNPs) were identified, with a high frequency of SNPs (1/18 bp) and nucleotide diversity (π(T) = 0.01033, θ(w = )0.01280). Linkage disequilibrium (LD) analysis showed that LD did not extend over the entire gene (r (2)<0.1, P<0.001, within 700 bp). SNP- and haplotype-based association analysis showed that nine SNPs (Q <0.10) and 12 haplotypes (P<0.05) were significantly associated with growth and wood property traits in the association population (426 individuals), with 2.70% to 12.37% of the phenotypic variation explained. Four significant single-marker associations (Q <0.10) were validated in a linkage mapping population of 1200 individuals. Also, RNA transcript accumulation varies among genotypic classes of SNP10 was further confirmed in the association population. This is the first comprehensive study of the UXS gene family in woody plants, and lays the foundation for genetic improvements of wood properties and growth in trees using genetic engineering or marker-assisted breeding. Public Library of Science 2013-04-16 /pmc/articles/PMC3629030/ /pubmed/23613749 http://dx.doi.org/10.1371/journal.pone.0060880 Text en © 2013 Du et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Du, Qingzhang
Pan, Wei
Tian, Jiaxing
Li, Bailian
Zhang, Deqiang
The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics
title The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics
title_full The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics
title_fullStr The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics
title_full_unstemmed The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics
title_short The UDP-Glucuronate Decarboxylase Gene Family in Populus: Structure, Expression, and Association Genetics
title_sort udp-glucuronate decarboxylase gene family in populus: structure, expression, and association genetics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3629030/
https://www.ncbi.nlm.nih.gov/pubmed/23613749
http://dx.doi.org/10.1371/journal.pone.0060880
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