Literature DB >> 27694342

A Tomato Vacuolar Invertase Inhibitor Mediates Sucrose Metabolism and Influences Fruit Ripening.

Guozheng Qin1,2,3, Zhu Zhu1,2,3, Weihao Wang1,2,3, Jianghua Cai1,2,3, Yong Chen1,2,3, Li Li1,2,3, Shiping Tian4,5,6.   

Abstract

Fruit ripening is a complex process that involves a series of physiological and biochemical changes that ultimately influence fruit quality traits, such as color and flavor. Sugar metabolism is an important factor in ripening, and there is evidence that it influences various aspects of ripening, although the associated mechanism is not well understood. In this study, we identified and analyzed the expression of 36 genes involved in Suc metabolism in ripening tomato (Solanum lycopersicum) fruit. Chromatin immunoprecipitation and gel mobility shift assays indicated that SlVIF, which encodes a vacuolar invertase inhibitor, and SlVI, encoding a vacuolar invertase, are directly regulated by the global fruit ripening regulator RIPENING INHIBITOR (RIN). Moreover, we showed that SlVIF physically interacts with SlVI to control Suc metabolism. Repression of SlVIF by RNA interference delayed tomato fruit ripening, while overexpression of SlVIF accelerated ripening, with concomitant changes in lycopene production and ethylene biosynthesis. An isobaric tags for relative and absolute quantification-based quantitative proteomic analysis further indicated that the abundance of a set of proteins involved in fruit ripening was altered by suppressing SlVIF expression, including proteins associated with lycopene generation and ethylene synthesis. These findings provide evidence for the role of Suc in promoting fruit ripening and establish that SlVIF contributes to fruit quality and the RIN-mediated ripening regulatory mechanisms, which are of significant agricultural value.
© 2016 American Society of Plant Biologists. All Rights Reserved.

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Year:  2016        PMID: 27694342      PMCID: PMC5100769          DOI: 10.1104/pp.16.01269

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  63 in total

Review 1.  Sugars, signalling, and plant development.

Authors:  Andrea L Eveland; David P Jackson
Journal:  J Exp Bot       Date:  2011-12-03       Impact factor: 6.992

2.  Unraveling the regulatory network of the MADS box transcription factor RIN in fruit ripening.

Authors:  Guozheng Qin; Yuying Wang; Baohua Cao; Weihao Wang; Shiping Tian
Journal:  Plant J       Date:  2011-12-19       Impact factor: 6.417

3.  Extracellular invertase LIN6 of tomato: a pivotal enzyme for integration of metabolic, hormonal, and stress signals is regulated by a diurnal rhythm.

Authors:  Reinhard K Proels; Thomas Roitsch
Journal:  J Exp Bot       Date:  2009-03-18       Impact factor: 6.992

4.  Utilization of tomato microarrays for comparative gene expression analysis in the Solanaceae.

Authors:  Shanna Moore; Paxton Payton; Mark Wright; Steven Tanksley; James Giovannoni
Journal:  J Exp Bot       Date:  2005-10-10       Impact factor: 6.992

5.  In vivo sucrose stimulation of colour change in citrus fruit epicarps: Interactions between nutritional and hormonal signals.

Authors:  Domingo J. Iglesias; Francisco R. Tadeo; Francisco Legaz; Eduardo Primo-Millo; Manuel Talon
Journal:  Physiol Plant       Date:  2001-06       Impact factor: 4.500

6.  Functional divergence of a syntenic invertase gene family in tomato, potato, and Arabidopsis.

Authors:  Eyal Fridman; Dani Zamir
Journal:  Plant Physiol       Date:  2003-02       Impact factor: 8.340

7.  Carotenoid Biosynthesis during Tomato Fruit Development (Evidence for Tissue-Specific Gene Expression).

Authors:  P. D. Fraser; M. R. Truesdale; C. R. Bird; W. Schuch; P. M. Bramley
Journal:  Plant Physiol       Date:  1994-05       Impact factor: 8.340

8.  Cell wall-bound invertase limits sucrose export and is involved in symptom development and inhibition of photosynthesis during compatible interaction between tomato and Xanthomonas campestris pv vesicatoria.

Authors:  Nurcan Kocal; Uwe Sonnewald; Sophia Sonnewald
Journal:  Plant Physiol       Date:  2008-09-10       Impact factor: 8.340

9.  A critical evaluation of sample extraction techniques for enhanced proteomic analysis of recalcitrant plant tissues.

Authors:  Ramu S Saravanan; Jocelyn K C Rose
Journal:  Proteomics       Date:  2004-09       Impact factor: 3.984

10.  ROLE AND REGULATION OF SUCROSE-PHOSPHATE SYNTHASE IN HIGHER PLANTS.

Authors:  Steven C. Huber; Joan L. Huber
Journal:  Annu Rev Plant Physiol Plant Mol Biol       Date:  1996-06
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  29 in total

1.  TAI vacuolar invertase orthologs: the interspecific variability in tomato plants (Solanum section Lycopersicon).

Authors:  M A Slugina; A V Shchennikova; E Z Kochieva
Journal:  Mol Genet Genomics       Date:  2017-06-20       Impact factor: 3.291

2.  Cell wall/vacuolar inhibitor of fructosidase 1 regulates ABA response and salt tolerance in Arabidopsis.

Authors:  Wenting Yang; Siyu Chen; Yuxin Cheng; Na Zhang; Yanxing Ma; Wei Wang; Hainan Tian; Yingying Li; Saddam Hussain; Shucai Wang
Journal:  Plant Signal Behav       Date:  2020-03-26

Review 3.  Putting primary metabolism into perspective to obtain better fruits.

Authors:  Bertrand Beauvoit; Isma Belouah; Nadia Bertin; Coffi Belmys Cakpo; Sophie Colombié; Zhanwu Dai; Hélène Gautier; Michel Génard; Annick Moing; Léa Roch; Gilles Vercambre; Yves Gibon
Journal:  Ann Bot       Date:  2018-06-28       Impact factor: 4.357

4.  The RNA Editing Factor SlORRM4 Is Required for Normal Fruit Ripening in Tomato.

Authors:  Yongfang Yang; Guoning Zhu; Rui Li; Shijie Yan; Daqi Fu; Benzhong Zhu; Huiqin Tian; Yunbo Luo; Hongliang Zhu
Journal:  Plant Physiol       Date:  2017-10-23       Impact factor: 8.340

5.  Abscisic acid, sucrose, and auxin coordinately regulate berry ripening process of the Fujiminori grape.

Authors:  Haifeng Jia; Zhenqiang Xie; Chen Wang; Lingfei Shangguan; Ning Qian; Mengjie Cui; Zhongjie Liu; Ting Zheng; Mengqi Wang; Jinggui Fang
Journal:  Funct Integr Genomics       Date:  2017-02-21       Impact factor: 3.410

6.  SlFERL Interacts with S-Adenosylmethionine Synthetase to Regulate Fruit Ripening.

Authors:  Dongchao Ji; Xiaomin Cui; Guozheng Qin; Tong Chen; Shiping Tian
Journal:  Plant Physiol       Date:  2020-09-30       Impact factor: 8.340

7.  Structure and Expression Analysis of Sucrose Phosphate Synthase, Sucrose Synthase and Invertase Gene Families in Solanum lycopersicum.

Authors:  Yaoke Duan; Lan Yang; Haijia Zhu; Jie Zhou; Hao Sun; Haijun Gong
Journal:  Int J Mol Sci       Date:  2021-04-29       Impact factor: 5.923

8.  The roles of call wall invertase inhibitor in regulating chilling tolerance in tomato.

Authors:  Xiao-Xia Xu; Qin Hu; Wan-Nian Yang; Ye Jin
Journal:  BMC Plant Biol       Date:  2017-11-09       Impact factor: 4.215

9.  Genome-Wide Identification, Expression, and Functional Analysis of the Alkaline/Neutral Invertase Gene Family in Pepper.

Authors:  Long-Bin Shen; Yuan Yao; Huang He; Yu-Ling Qin; Zi-Ji Liu; Wei-Xia Liu; Zhi-Qiang Qi; Li-Jia Yang; Zhen-Mu Cao; Yan Yang
Journal:  Int J Mol Sci       Date:  2018-01-11       Impact factor: 5.923

10.  Plasma membrane-localized SlSWEET7a and SlSWEET14 regulate sugar transport and storage in tomato fruits.

Authors:  Xinsheng Zhang; Chaoyang Feng; Manning Wang; Tianlai Li; Xin Liu; Jing Jiang
Journal:  Hortic Res       Date:  2021-08-01       Impact factor: 6.793

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