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Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato

Postharvest deterioration is among the major challenges for the fruit industry. Regulation of the fruit softening rate is an effective strategy for extending shelf‐life and reducing the economic losses due postharvest deterioration. The tomato myoinositol monophosphatase 3 gene SlIMP3, which showed...

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Autores principales: Zheng, Xianzhe, Yuan, Yujin, Huang, Baowen, Hu, Xiaowei, Tang, Yuwei, Xu, Xin, Wu, Mengbo, Gong, Zehao, Luo, Yingqing, Gong, Min, Gao, Xueli, Wu, Guanle, Zhang, Qiongdan, Zhang, Lu, Chan, Helen, Zhu, Benzhong, Li, Zhengguo, Ferguson, Louise, Deng, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129080/
https://www.ncbi.nlm.nih.gov/pubmed/35258157
http://dx.doi.org/10.1111/pbi.13804
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author Zheng, Xianzhe
Yuan, Yujin
Huang, Baowen
Hu, Xiaowei
Tang, Yuwei
Xu, Xin
Wu, Mengbo
Gong, Zehao
Luo, Yingqing
Gong, Min
Gao, Xueli
Wu, Guanle
Zhang, Qiongdan
Zhang, Lu
Chan, Helen
Zhu, Benzhong
Li, Zhengguo
Ferguson, Louise
Deng, Wei
author_facet Zheng, Xianzhe
Yuan, Yujin
Huang, Baowen
Hu, Xiaowei
Tang, Yuwei
Xu, Xin
Wu, Mengbo
Gong, Zehao
Luo, Yingqing
Gong, Min
Gao, Xueli
Wu, Guanle
Zhang, Qiongdan
Zhang, Lu
Chan, Helen
Zhu, Benzhong
Li, Zhengguo
Ferguson, Louise
Deng, Wei
author_sort Zheng, Xianzhe
collection PubMed
description Postharvest deterioration is among the major challenges for the fruit industry. Regulation of the fruit softening rate is an effective strategy for extending shelf‐life and reducing the economic losses due postharvest deterioration. The tomato myoinositol monophosphatase 3 gene SlIMP3, which showed highest expression level in fruit, was expressed and purified. SlIMP3 demonstrated high affinity with the L‐Gal 1‐P and D‐Ins 3‐P, and acted as a bifunctional enzyme in the biosynthesis of AsA and myoinositol. Overexpression of SlIMP3 not only improved AsA and myoinositol content, but also increased cell wall thickness, improved fruit firmness, delayed fruit softening, decreased water loss, and extended shelf‐life. Overexpression of SlIMP3 also increased uronic acid, rhamnose, xylose, mannose, and galactose content in cell wall of fruit. Treating fruit with myoinositol obtained similar fruit phenotypes of SlIMP3‐overexpressed fruit, with increased cell wall thickness and delayed fruit softening. Meanwhile, overexpression of SlIMP3 conferred tomato fruit tolerance to Botrytis cinerea. The function of SlIMP3 in cell wall biogenesis and fruit softening were also verified using another tomato species, Ailsa Craig (AC). Overexpression of SlDHAR in fruit increased AsA content, but did not affect the cell wall thickness or fruit firmness and softening. The results support a critical role for SlIMP3 in AsA biosynthesis and cell wall biogenesis, and provide a new method of delaying tomato fruit softening, and insight into the link between AsA and cell wall metabolism.
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spelling pubmed-91290802022-05-26 Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato Zheng, Xianzhe Yuan, Yujin Huang, Baowen Hu, Xiaowei Tang, Yuwei Xu, Xin Wu, Mengbo Gong, Zehao Luo, Yingqing Gong, Min Gao, Xueli Wu, Guanle Zhang, Qiongdan Zhang, Lu Chan, Helen Zhu, Benzhong Li, Zhengguo Ferguson, Louise Deng, Wei Plant Biotechnol J Research Articles Postharvest deterioration is among the major challenges for the fruit industry. Regulation of the fruit softening rate is an effective strategy for extending shelf‐life and reducing the economic losses due postharvest deterioration. The tomato myoinositol monophosphatase 3 gene SlIMP3, which showed highest expression level in fruit, was expressed and purified. SlIMP3 demonstrated high affinity with the L‐Gal 1‐P and D‐Ins 3‐P, and acted as a bifunctional enzyme in the biosynthesis of AsA and myoinositol. Overexpression of SlIMP3 not only improved AsA and myoinositol content, but also increased cell wall thickness, improved fruit firmness, delayed fruit softening, decreased water loss, and extended shelf‐life. Overexpression of SlIMP3 also increased uronic acid, rhamnose, xylose, mannose, and galactose content in cell wall of fruit. Treating fruit with myoinositol obtained similar fruit phenotypes of SlIMP3‐overexpressed fruit, with increased cell wall thickness and delayed fruit softening. Meanwhile, overexpression of SlIMP3 conferred tomato fruit tolerance to Botrytis cinerea. The function of SlIMP3 in cell wall biogenesis and fruit softening were also verified using another tomato species, Ailsa Craig (AC). Overexpression of SlDHAR in fruit increased AsA content, but did not affect the cell wall thickness or fruit firmness and softening. The results support a critical role for SlIMP3 in AsA biosynthesis and cell wall biogenesis, and provide a new method of delaying tomato fruit softening, and insight into the link between AsA and cell wall metabolism. John Wiley and Sons Inc. 2022-03-15 2022-06 /pmc/articles/PMC9129080/ /pubmed/35258157 http://dx.doi.org/10.1111/pbi.13804 Text en © 2022 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/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Zheng, Xianzhe
Yuan, Yujin
Huang, Baowen
Hu, Xiaowei
Tang, Yuwei
Xu, Xin
Wu, Mengbo
Gong, Zehao
Luo, Yingqing
Gong, Min
Gao, Xueli
Wu, Guanle
Zhang, Qiongdan
Zhang, Lu
Chan, Helen
Zhu, Benzhong
Li, Zhengguo
Ferguson, Louise
Deng, Wei
Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato
title Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato
title_full Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato
title_fullStr Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato
title_full_unstemmed Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato
title_short Control of fruit softening and Ascorbic acid accumulation by manipulation of SlIMP3 in tomato
title_sort control of fruit softening and ascorbic acid accumulation by manipulation of slimp3 in tomato
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129080/
https://www.ncbi.nlm.nih.gov/pubmed/35258157
http://dx.doi.org/10.1111/pbi.13804
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