Literature DB >> 26773542

Spatial and temporal distribution of genes involved in polyamine metabolism during tomato fruit development.

Georgios Tsaniklidis1, Anastasios Kotsiras2, Athanasios Tsafouros3, Peter A Roussos4, Georgios Aivalakis5, Panagiotis Katinakis6, Costas Delis7.   

Abstract

Polyamines are organic compounds involved in various biological roles in plants, including cell growth and organ development. In the present study, the expression profile, the accumulation of free polyamines and the transcript localisation of the genes involved in Put metabolism, such as Ornithine decarboxylase (ODC), Arginine decarboxylase (ADC) and copper containing Amine oxidase (CuAO), were examined during Solanum lycopersicum cv. Chiou fruit development and maturation. Moreover, the expression of genes coding for enzymes involved in higher polyamine metabolism, including Spermidine synthase (SPDS), Spermine synthase (SPMS), S-adenosylmethionine decarboxylase (SAMDC) and Polyamine oxidase (PAO), were studied. Most genes participating in PAs biosynthesis and metabolism exhibited an increased accumulation of transcripts at the early stages of fruit development. In contrast, CuAO and SPMS were mostly expressed later, during the development stages of the fruits where a massive increase in fruit volume occurs, while the SPDS1 gene exhibited a rather constant expression with a peak at the red ripe stage. Although Put, Spd and Spm were all exhibited decreasing levels in developing immature fruits, Put levels maxed late during fruit ripening. In contrast to Put both Spd and Spm levels continue to decrease gradually until full ripening. It is worth noticing that in situ RNA-RNA hybridisation is reported for the first time in tomato fruits. The localisation of ADC2, ODC1 and CuAO gene transcripts at tissues such as the locular parenchyma and the vascular bundles fruits, supports the theory that all genes involved in Put biosynthesis and catabolism are mostly expressed in fast growing tissues. The relatively high expression levels of CuAO at the ImG4 stage of fruit development (fruits with a diameter of 3 cm), mature green and breaker stages could possibly be attributed to the implication of polyamines in physiological processes taking place during fruit ripening.
Copyright © 2016 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Arginine decarboxylase; Copper containing amine oxidase; Expression analysis; Fruit development; Ornithine decarboxylase; Polyamine biosynthesis; Polyamine catabolism

Mesh:

Substances:

Year:  2016        PMID: 26773542     DOI: 10.1016/j.plaphy.2016.01.001

Source DB:  PubMed          Journal:  Plant Physiol Biochem        ISSN: 0981-9428            Impact factor:   4.270


  12 in total

Review 1.  Biologia futura: the role of polyamine in plant science.

Authors:  Fereshteh Kamiab; Iraj Tavassolian; Mehdi Hosseinifarahi
Journal:  Biol Futur       Date:  2020-06-25

2.  Gamma-Glutamylpolyamine Synthetase GlnA3 Is Involved in the First Step of Polyamine Degradation Pathway in Streptomyces coelicolor M145.

Authors:  Sergii Krysenko; Nicole Okoniewski; Andreas Kulik; Arne Matthews; Jan Grimpo; Wolfgang Wohlleben; Agnieszka Bera
Journal:  Front Microbiol       Date:  2017-04-25       Impact factor: 5.640

3.  Polyamine Induction in Postharvest Banana Fruits in Response to NO Donor SNP Occurs via l-Arginine Mediated Pathway and Not via Competitive Diversion of S-Adenosyl-l-Methionine.

Authors:  Veeresh Lokesh; Girigowda Manjunatha; Namratha S Hegde; Mallesham Bulle; Bijesh Puthusseri; Kapuganti Jagadis Gupta; Bhagyalakshmi Neelwarne
Journal:  Antioxidants (Basel)       Date:  2019-09-01

Review 4.  The Interplay among Polyamines and Nitrogen in Plant Stress Responses.

Authors:  Konstantinos Paschalidis; Georgios Tsaniklidis; Bao-Quan Wang; Costas Delis; Emmanouil Trantas; Konstantinos Loulakakis; Muhammad Makky; Panagiotis F Sarris; Filippos Ververidis; Ji-Hong Liu
Journal:  Plants (Basel)       Date:  2019-08-30

5.  FaPAO5 regulates Spm/Spd levels as a signaling during strawberry fruit ripening.

Authors:  Aowai Mo; Tian Xu; Qian Bai; Yaunyue Shen; Fan Gao; Jiaxuan Guo
Journal:  Plant Direct       Date:  2020-04-29

Review 6.  Tomato Fruit Development and Metabolism.

Authors:  Muriel Quinet; Trinidad Angosto; Fernando J Yuste-Lisbona; Rémi Blanchard-Gros; Servane Bigot; Juan-Pablo Martinez; Stanley Lutts
Journal:  Front Plant Sci       Date:  2019-11-29       Impact factor: 5.753

7.  Polyamines and Their Biosynthesis/Catabolism Genes Are Differentially Modulated in Response to Heat Versus Cold Stress in Tomato Leaves (Solanum lycopersicum L.).

Authors:  Rakesh K Upadhyay; Tahira Fatima; Avtar K Handa; Autar K Mattoo
Journal:  Cells       Date:  2020-07-22       Impact factor: 6.600

Review 8.  Update on the Roles of Polyamines in Fleshy Fruit Ripening, Senescence, and Quality.

Authors:  Fan Gao; Xurong Mei; Yuzhong Li; Jiaxuan Guo; Yuanyue Shen
Journal:  Front Plant Sci       Date:  2021-02-10       Impact factor: 5.753

Review 9.  Copper-Containing Amine Oxidases and FAD-Dependent Polyamine Oxidases Are Key Players in Plant Tissue Differentiation and Organ Development.

Authors:  Paraskevi Tavladoraki; Alessandra Cona; Riccardo Angelini
Journal:  Front Plant Sci       Date:  2016-06-28       Impact factor: 5.753

10.  Ectopic expression of GhSAMDC1 improved plant vegetative growth and early flowering through conversion of spermidine to spermine in tobacco.

Authors:  Huaguo Zhu; Wengang Tian; Xuefeng Zhu; Xinxin Tang; Lan Wu; Xiaoming Hu; Shuangxia Jin
Journal:  Sci Rep       Date:  2020-09-02       Impact factor: 4.379

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