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ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther

The function and regulation of lipid metabolic genes are essential for plant male reproduction. However, expression regulation of lipid metabolic genic male sterility (GMS) genes by noncoding RNAs is largely unclear. Here, we systematically predicted the microRNA regulators of 34 maize white brown c...

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Autores principales: Jiang, Yilin, Li, Ziwen, Liu, Xinze, Zhu, Taotao, Xie, Ke, Hou, Quancan, Yan, Tingwei, Niu, Canfang, Zhang, Shaowei, Yang, Mengbing, Xie, Rongrong, Wang, Jing, Li, Jinping, An, Xueli, Wan, Xiangyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348775/
https://www.ncbi.nlm.nih.gov/pubmed/34360681
http://dx.doi.org/10.3390/ijms22157916
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author Jiang, Yilin
Li, Ziwen
Liu, Xinze
Zhu, Taotao
Xie, Ke
Hou, Quancan
Yan, Tingwei
Niu, Canfang
Zhang, Shaowei
Yang, Mengbing
Xie, Rongrong
Wang, Jing
Li, Jinping
An, Xueli
Wan, Xiangyuan
author_facet Jiang, Yilin
Li, Ziwen
Liu, Xinze
Zhu, Taotao
Xie, Ke
Hou, Quancan
Yan, Tingwei
Niu, Canfang
Zhang, Shaowei
Yang, Mengbing
Xie, Rongrong
Wang, Jing
Li, Jinping
An, Xueli
Wan, Xiangyuan
author_sort Jiang, Yilin
collection PubMed
description The function and regulation of lipid metabolic genes are essential for plant male reproduction. However, expression regulation of lipid metabolic genic male sterility (GMS) genes by noncoding RNAs is largely unclear. Here, we systematically predicted the microRNA regulators of 34 maize white brown complex members in ATP-binding cassette transporter G subfamily (WBC/ABCG) genes using transcriptome analysis. Results indicate that the ZmABCG26 transcript was predicted to be targeted by zma-miR164h-5p, and their expression levels were negatively correlated in maize B73 and Oh43 genetic backgrounds based on both transcriptome data and qRT-PCR experiments. CRISPR/Cas9-induced gene mutagenesis was performed on ZmABCG26 and another lipid metabolic gene, ZmFAR1. DNA sequencing, phenotypic, and cytological observations demonstrated that both ZmABCG26 and ZmFAR1 are GMS genes in maize. Notably, ZmABCG26 proteins are localized in the endoplasmic reticulum (ER), chloroplast/plastid, and plasma membrane. Furthermore, ZmFAR1 shows catalytic activities to three CoA substrates in vitro with the activity order of C12:0-CoA > C16:0-CoA > C18:0-CoA, and its four key amino acid sites were critical to its catalytic activities. Lipidomics analysis revealed decreased cutin amounts and increased wax contents in anthers of both zmabcg26 and zmfar1 GMS mutants. A more detailed analysis exhibited differential changes in 54 monomer contents between wild type and mutants, as well as between zmabcg26 and zmfar1. These findings will promote a deeper understanding of miRNA-regulated lipid metabolic genes and the functional diversity of lipid metabolic genes, contributing to lipid biosynthesis in maize anthers. Additionally, cosegregating molecular markers for ZmABCG26 and ZmFAR1 were developed to facilitate the breeding of male sterile lines.
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spelling pubmed-83487752021-08-08 ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther Jiang, Yilin Li, Ziwen Liu, Xinze Zhu, Taotao Xie, Ke Hou, Quancan Yan, Tingwei Niu, Canfang Zhang, Shaowei Yang, Mengbing Xie, Rongrong Wang, Jing Li, Jinping An, Xueli Wan, Xiangyuan Int J Mol Sci Article The function and regulation of lipid metabolic genes are essential for plant male reproduction. However, expression regulation of lipid metabolic genic male sterility (GMS) genes by noncoding RNAs is largely unclear. Here, we systematically predicted the microRNA regulators of 34 maize white brown complex members in ATP-binding cassette transporter G subfamily (WBC/ABCG) genes using transcriptome analysis. Results indicate that the ZmABCG26 transcript was predicted to be targeted by zma-miR164h-5p, and their expression levels were negatively correlated in maize B73 and Oh43 genetic backgrounds based on both transcriptome data and qRT-PCR experiments. CRISPR/Cas9-induced gene mutagenesis was performed on ZmABCG26 and another lipid metabolic gene, ZmFAR1. DNA sequencing, phenotypic, and cytological observations demonstrated that both ZmABCG26 and ZmFAR1 are GMS genes in maize. Notably, ZmABCG26 proteins are localized in the endoplasmic reticulum (ER), chloroplast/plastid, and plasma membrane. Furthermore, ZmFAR1 shows catalytic activities to three CoA substrates in vitro with the activity order of C12:0-CoA > C16:0-CoA > C18:0-CoA, and its four key amino acid sites were critical to its catalytic activities. Lipidomics analysis revealed decreased cutin amounts and increased wax contents in anthers of both zmabcg26 and zmfar1 GMS mutants. A more detailed analysis exhibited differential changes in 54 monomer contents between wild type and mutants, as well as between zmabcg26 and zmfar1. These findings will promote a deeper understanding of miRNA-regulated lipid metabolic genes and the functional diversity of lipid metabolic genes, contributing to lipid biosynthesis in maize anthers. Additionally, cosegregating molecular markers for ZmABCG26 and ZmFAR1 were developed to facilitate the breeding of male sterile lines. MDPI 2021-07-24 /pmc/articles/PMC8348775/ /pubmed/34360681 http://dx.doi.org/10.3390/ijms22157916 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Yilin
Li, Ziwen
Liu, Xinze
Zhu, Taotao
Xie, Ke
Hou, Quancan
Yan, Tingwei
Niu, Canfang
Zhang, Shaowei
Yang, Mengbing
Xie, Rongrong
Wang, Jing
Li, Jinping
An, Xueli
Wan, Xiangyuan
ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther
title ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther
title_full ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther
title_fullStr ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther
title_full_unstemmed ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther
title_short ZmFAR1 and ZmABCG26 Regulated by microRNA Are Essential for Lipid Metabolism in Maize Anther
title_sort zmfar1 and zmabcg26 regulated by microrna are essential for lipid metabolism in maize anther
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348775/
https://www.ncbi.nlm.nih.gov/pubmed/34360681
http://dx.doi.org/10.3390/ijms22157916
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