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A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1

Citrate is a common primary metabolite which often characterizes fruit flavour. The key regulators of citrate accumulation in fruit and vegetables are poorly understood. We systematically analysed the dynamic profiles of organic acid components during the development of kiwifruit (Actinidia spp.). C...

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Autores principales: Fu, Bei‐ling, Wang, Wen‐qiu, Li, Xiang, Qi, Tong‐hui, Shen, Qiu‐fang, Li, Kun‐feng, Liu, Xiao‐fen, Li, Shao‐jia, Allan, Andrew C., Yin, Xue‐ren
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363754/
https://www.ncbi.nlm.nih.gov/pubmed/37161940
http://dx.doi.org/10.1111/pbi.14070
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author Fu, Bei‐ling
Wang, Wen‐qiu
Li, Xiang
Qi, Tong‐hui
Shen, Qiu‐fang
Li, Kun‐feng
Liu, Xiao‐fen
Li, Shao‐jia
Allan, Andrew C.
Yin, Xue‐ren
author_facet Fu, Bei‐ling
Wang, Wen‐qiu
Li, Xiang
Qi, Tong‐hui
Shen, Qiu‐fang
Li, Kun‐feng
Liu, Xiao‐fen
Li, Shao‐jia
Allan, Andrew C.
Yin, Xue‐ren
author_sort Fu, Bei‐ling
collection PubMed
description Citrate is a common primary metabolite which often characterizes fruit flavour. The key regulators of citrate accumulation in fruit and vegetables are poorly understood. We systematically analysed the dynamic profiles of organic acid components during the development of kiwifruit (Actinidia spp.). Citrate continuously accumulated so that it became the predominate contributor to total acidity at harvest. Based on a co‐expression network analysis using different kiwifruit cultivars, an Al‐ACTIVATED MALATE TRANSPORTER gene (AcALMT1) was identified as a candidate responsible for citrate accumulation. Electrophysiological assays using expression of this gene in Xenopus oocytes revealed that AcALMT1 functions as a citrate transporter. Additionally, transient overexpression of AcALMT1 in kiwifruit significantly increased citrate content, while tissues showing higher AcALMT1 expression accumulated more citrate. The expression of AcALMT1 was highly correlated with 17 transcription factor candidates. However, dual‐luciferase and EMSA assays indicated that only the NAC transcription factor, AcNAC1, activated AcALMT1 expression via direct binding to its promoter. Targeted CRISPR‐Cas9‐induced mutagenesis of AcNAC1 in kiwifruit resulted in dramatic declines in citrate levels while malate and quinate levels were not substantially affected. Our findings show that transcriptional regulation of a major citrate transporter, by a NAC transcription factor, is responsible for citrate accumulation in kiwifruit, which has broad implications for other fruits and vegetables.
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spelling pubmed-103637542023-07-25 A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1 Fu, Bei‐ling Wang, Wen‐qiu Li, Xiang Qi, Tong‐hui Shen, Qiu‐fang Li, Kun‐feng Liu, Xiao‐fen Li, Shao‐jia Allan, Andrew C. Yin, Xue‐ren Plant Biotechnol J Research Articles Citrate is a common primary metabolite which often characterizes fruit flavour. The key regulators of citrate accumulation in fruit and vegetables are poorly understood. We systematically analysed the dynamic profiles of organic acid components during the development of kiwifruit (Actinidia spp.). Citrate continuously accumulated so that it became the predominate contributor to total acidity at harvest. Based on a co‐expression network analysis using different kiwifruit cultivars, an Al‐ACTIVATED MALATE TRANSPORTER gene (AcALMT1) was identified as a candidate responsible for citrate accumulation. Electrophysiological assays using expression of this gene in Xenopus oocytes revealed that AcALMT1 functions as a citrate transporter. Additionally, transient overexpression of AcALMT1 in kiwifruit significantly increased citrate content, while tissues showing higher AcALMT1 expression accumulated more citrate. The expression of AcALMT1 was highly correlated with 17 transcription factor candidates. However, dual‐luciferase and EMSA assays indicated that only the NAC transcription factor, AcNAC1, activated AcALMT1 expression via direct binding to its promoter. Targeted CRISPR‐Cas9‐induced mutagenesis of AcNAC1 in kiwifruit resulted in dramatic declines in citrate levels while malate and quinate levels were not substantially affected. Our findings show that transcriptional regulation of a major citrate transporter, by a NAC transcription factor, is responsible for citrate accumulation in kiwifruit, which has broad implications for other fruits and vegetables. John Wiley and Sons Inc. 2023-05-10 2023-08 /pmc/articles/PMC10363754/ /pubmed/37161940 http://dx.doi.org/10.1111/pbi.14070 Text en © 2023 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Fu, Bei‐ling
Wang, Wen‐qiu
Li, Xiang
Qi, Tong‐hui
Shen, Qiu‐fang
Li, Kun‐feng
Liu, Xiao‐fen
Li, Shao‐jia
Allan, Andrew C.
Yin, Xue‐ren
A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1
title A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1
title_full A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1
title_fullStr A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1
title_full_unstemmed A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1
title_short A dramatic decline in fruit citrate induced by mutagenesis of a NAC transcription factor, AcNAC1
title_sort dramatic decline in fruit citrate induced by mutagenesis of a nac transcription factor, acnac1
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10363754/
https://www.ncbi.nlm.nih.gov/pubmed/37161940
http://dx.doi.org/10.1111/pbi.14070
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