Literature DB >> 25293961

Regulatory properties of ADP glucose pyrophosphorylase are required for adjustment of leaf starch synthesis in different photoperiods.

Sam T Mugford1, Olivier Fernandez1, Jemima Brinton1, Anna Flis1, Nicole Krohn1, Beatrice Encke1, Regina Feil1, Ronan Sulpice1, John E Lunn1, Mark Stitt1, Alison M Smith2.   

Abstract

Arabidopsis (Arabidopsis thaliana) leaves synthesize starch faster in short days than in long days, but the mechanism that adjusts the rate of starch synthesis to daylength is unknown. To understand this mechanism, we first investigated whether adjustment occurs in mutants lacking components of the circadian clock or clock output pathways. Most mutants adjusted starch synthesis to daylength, but adjustment was compromised in plants lacking the GIGANTEA or FLAVIN-BINDING, KELCH REPEAT, F BOX1 components of the photoperiod-signaling pathway involved in flowering. We then examined whether the properties of the starch synthesis enzyme adenosine 5'-diphosphate-glucose pyrophosphorylase (AGPase) are important for adjustment of starch synthesis to daylength. Modulation of AGPase activity is known to bring about short-term adjustments of photosynthate partitioning between starch and sucrose (Suc) synthesis. We found that adjustment of starch synthesis to daylength was compromised in plants expressing a deregulated bacterial AGPase in place of the endogenous AGPase and in plants containing mutant forms of the endogenous AGPase with altered allosteric regulatory properties. We suggest that the rate of starch synthesis is in part determined by growth rate at the end of the preceding night. If growth at night is low, as in short days, there is a delay before growth recovers during the next day, leading to accumulation of Suc and stimulation of starch synthesis via activation of AGPase. If growth at night is fast, photosynthate is used for growth at the start of the day, Suc does not accumulate, and starch synthesis is not up-regulated.
© 2014 American Society of Plant Biologists. All Rights Reserved.

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Year:  2014        PMID: 25293961      PMCID: PMC4256850          DOI: 10.1104/pp.114.247759

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


  76 in total

1.  Growth stage-based phenotypic analysis of Arabidopsis: a model for high throughput functional genomics in plants.

Authors:  D C Boyes; A M Zayed; R Ascenzi; A J McCaskill; N E Hoffman; K R Davis; J Görlach
Journal:  Plant Cell       Date:  2001-07       Impact factor: 11.277

2.  Inactivation of thioredoxin f1 leads to decreased light activation of ADP-glucose pyrophosphorylase and altered diurnal starch turnover in leaves of Arabidopsis plants.

Authors:  Ina Thormählen; Joachim Ruber; Edda von Roepenack-Lahaye; Sven-Matthias Ehrlich; Vincent Massot; Christine Hümmer; Justyna Tezycka; Emmanuelle Issakidis-Bourguet; Peter Geigenberger
Journal:  Plant Cell Environ       Date:  2012-06-26       Impact factor: 7.228

Review 3.  Arabidopsis and primary photosynthetic metabolism - more than the icing on the cake.

Authors:  Mark Stitt; John Lunn; Björn Usadel
Journal:  Plant J       Date:  2010-03       Impact factor: 6.417

Review 4.  Molecular biology and regulatory aspects of glycogen biosynthesis in bacteria.

Authors:  J Preiss; T Romeo
Journal:  Prog Nucleic Acid Res Mol Biol       Date:  1994

Review 5.  Flowering time regulation: photoperiod- and temperature-sensing in leaves.

Authors:  Young Hun Song; Shogo Ito; Takato Imaizumi
Journal:  Trends Plant Sci       Date:  2013-06-18       Impact factor: 18.313

6.  Large-scale comparative phosphoproteomics identifies conserved phosphorylation sites in plants.

Authors:  Hirofumi Nakagami; Naoyuki Sugiyama; Keiichi Mochida; Arsalan Daudi; Yuko Yoshida; Tetsuro Toyoda; Masaru Tomita; Yasushi Ishihama; Ken Shirasu
Journal:  Plant Physiol       Date:  2010-05-13       Impact factor: 8.340

7.  Role of orthophosphate and other factors in the regulation of starch formation in leaves and isolated chloroplasts.

Authors:  H W Heldt; C J Chon; D Maronde
Journal:  Plant Physiol       Date:  1977-06       Impact factor: 8.340

8.  Isolation and Characterization of a Starchless Mutant of Arabidopsis thaliana (L.) Heynh Lacking ADPglucose Pyrophosphorylase Activity.

Authors:  T P Lin; T Caspar; C Somerville; J Preiss
Journal:  Plant Physiol       Date:  1988-04       Impact factor: 8.340

9.  Loss of starch granule initiation has a deleterious effect on the growth of arabidopsis plants due to an accumulation of ADP-glucose.

Authors:  Paula Ragel; Sebastian Streb; Regina Feil; Mariam Sahrawy; Maria Grazia Annunziata; John E Lunn; Samuel Zeeman; Ángel Mérida
Journal:  Plant Physiol       Date:  2013-07-21       Impact factor: 8.340

10.  Arabidopsis plants perform arithmetic division to prevent starvation at night.

Authors:  Antonio Scialdone; Sam T Mugford; Doreen Feike; Alastair Skeffington; Philippa Borrill; Alexander Graf; Alison M Smith; Martin Howard
Journal:  Elife       Date:  2013-06-25       Impact factor: 8.140

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  28 in total

Review 1.  A Tale of Two Sugars: Trehalose 6-Phosphate and Sucrose.

Authors:  Carlos M Figueroa; John E Lunn
Journal:  Plant Physiol       Date:  2016-08-01       Impact factor: 8.340

2.  ACHT4-driven oxidation of APS1 attenuates starch synthesis under low light intensity in Arabidopsis plants.

Authors:  Erez Eliyahu; Ido Rog; Dangoor Inbal; Avihai Danon
Journal:  Proc Natl Acad Sci U S A       Date:  2015-09-30       Impact factor: 11.205

3.  Mitochondrial Dihydrolipoyl Dehydrogenase Activity Shapes Photosynthesis and Photorespiration of Arabidopsis thaliana.

Authors:  Stefan Timm; Maria Wittmiß; Sabine Gamlien; Ralph Ewald; Alexandra Florian; Marcus Frank; Markus Wirtz; Rüdiger Hell; Alisdair R Fernie; Hermann Bauwe
Journal:  Plant Cell       Date:  2015-06-26       Impact factor: 11.277

Review 4.  Structure, function, and evolution of plant ADP-glucose pyrophosphorylase.

Authors:  Carlos M Figueroa; Matías D Asencion Diez; Miguel A Ballicora; Alberto A Iglesias
Journal:  Plant Mol Biol       Date:  2022-01-10       Impact factor: 4.076

5.  GIpred: a computational tool for prediction of GIGANTEA proteins using machine learning algorithm.

Authors:  Sagarika Dash; Tanmaya Kumar Sahu; Subhrajit Satpathy; Prabina Kumar Meher; Sukanta Kumar Pradhan
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6.  High-throughput characterization, correlation, and mapping of leaf photosynthetic and functional traits in the soybean (Glycine max) nested association mapping population.

Authors:  Christopher M Montes; Carolyn Fox; Álvaro Sanz-Sáez; Shawn P Serbin; Etsushi Kumagai; Matheus D Krause; Alencar Xavier; James E Specht; William D Beavis; Carl J Bernacchi; Brian W Diers; Elizabeth A Ainsworth
Journal:  Genetics       Date:  2022-05-31       Impact factor: 4.402

7.  Thioredoxin f1 and NADPH-Dependent Thioredoxin Reductase C Have Overlapping Functions in Regulating Photosynthetic Metabolism and Plant Growth in Response to Varying Light Conditions.

Authors:  Ina Thormählen; Tobias Meitzel; Julia Groysman; Alexandra Bianca Öchsner; Edda von Roepenack-Lahaye; Belén Naranjo; Francisco J Cejudo; Peter Geigenberger
Journal:  Plant Physiol       Date:  2015-09-03       Impact factor: 8.340

8.  Functional characterization of a starch synthesis-related gene AmAGP in Amorphophallus muelleri.

Authors:  Hong-Di Shi; Wan-Qiao Zhang; Hong-Ye Lu; Wen-Qian Zhang; Hui Ye; Dan-Dan Liu
Journal:  Plant Signal Behav       Date:  2020-08-15

9.  The Photoperiodic Flowering Time Regulator FKF1 Negatively Regulates Cellulose Biosynthesis.

Authors:  Ning Yuan; Vimal Kumar Balasubramanian; Ratan Chopra; Venugopal Mendu
Journal:  Plant Physiol       Date:  2019-06-20       Impact factor: 8.005

10.  The Starch Granule-Associated Protein EARLY STARVATION1 Is Required for the Control of Starch Degradation in Arabidopsis thaliana Leaves.

Authors:  Doreen Feike; David Seung; Alexander Graf; Sylvain Bischof; Tamaryn Ellick; Mario Coiro; Sebastian Soyk; Simona Eicke; Tabea Mettler-Altmann; Kuan Jen Lu; Martin Trick; Samuel C Zeeman; Alison M Smith
Journal:  Plant Cell       Date:  2016-05-20       Impact factor: 11.277

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