Antisense Suppression of the Small Chloroplast Protein CP12 in Tobacco Alters Carbon Partitioning and Severely Restricts Growth

The thioredoxin-regulated chloroplast protein CP12 forms a multienzyme complex with the Calvin-Benson cycle enzymes phosphoribulokinase (PRK) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH). PRK and GAPDH are inactivated when present in this complex, a process shown in vitro to be dependent upo...

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Published in:Plant physiology (Bethesda) Vol. 157; no. 2; pp. 620 - 631
Main Authors: Howard, Thomas P, Fryer, Michael J, Singh, Prashant, Metodiev, Metodi, Lytovchenko, Anna, Obata, Toshihiro, Fernie, Alisdair R, Kruger, Nicholas J, Quick, W. Paul, Lloyd, Julie C, Raines, Christine A
Format: Journal Article
Language:English
Published: Rockville, MD American Society of Plant Biologists 01-10-2011
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Abstract The thioredoxin-regulated chloroplast protein CP12 forms a multienzyme complex with the Calvin-Benson cycle enzymes phosphoribulokinase (PRK) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH). PRK and GAPDH are inactivated when present in this complex, a process shown in vitro to be dependent upon oxidized CP12. The importance of CP12 in vivo in higher plants, however, has not been investigated. Here, antisense suppression of CP12 in tobacco (Nicotiana tabacum) was observed to impact on NAD-induced PRK and GAPDH complex formation but had little effect on enzyme activity. Additionally, only minor changes in photosynthetic carbon fixation were observed. Despite this, antisense plants displayed changes in growth rates and morphology, including dwarfism and reduced apical dominance. The hypothesis that CP12 is essential to separate oxidative pentose phosphate pathway activity from Calvin-Benson cycle activity, as proposed in cyanobacteria, was tested. No evidence was found to support this role in tobacco. Evidence was seen, however, for a restriction to malate valve capacity, with decreases in NADP-malate dehydrogenase activity (but not protein levels) and pyridine nucleotide content. Antisense repression of CP12 also led to significant changes in carbon partitioning, with increased carbon allocation to the cell wall and the organic acids malate and fumarate and decreased allocation to starch and soluble carbohydrates. Severe decreases were also seen in 2-oxoglutarate content, a key indicator of cellular carbon sufficiency. The data presented here indicate that in tobacco, CP12 has a role in redox-mediated regulation of carbon partitioning from the chloroplast and provides strong in vivo evidence that CP12 is required for normal growth and development in plants.
AbstractList The thioredoxin-regulated chloroplast protein CP12 forms a multienzyme complex with the Calvin-Benson cycle enzymes phosphoribulokinase (PRK) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH). PRK and GAPDH are inactivated when present in this complex, a process shown in vitro to be dependent upon oxidized CP12. The importance of CP12 in vivo in higher plants, however, has not been investigated. Here, antisense suppression of CP12 in tobacco (Nicotiana tabacum) was observed to impact on NAD-induced PRK and GAPDH complex formation but had little effect on enzyme activity. Additionally, only minor changes in photosynthetic carbon fixation were observed. Despite this, antisense plants displayed changes in growth rates and morphology, including dwarfism and reduced apical dominance. The hypothesis that CP12 is essential to separate oxidative pentose phosphate pathway activity from Calvin-Benson cycle activity, as proposed in cyanobacteria, was tested. No evidence was found to support this role in tobacco. Evidence was seen, however, for a restriction to malate valve capacity, with decreases in NADP-malate dehydrogenase activity (but not protein levels) and pyridine nucleotide content. Antisense repression of CP12 also led to significant changes in carbon partitioning, with increased carbon allocation to the cell wall and the organic acids malate and fumarate and decreased allocation to starch and soluble carbohydrates. Severe decreases were also seen in 2-oxoglutarate content, a key indicator of cellular carbon sufficiency. The data presented here indicate that in tobacco, CP12 has a role in redox-mediated regulation of carbon partitioning from the chloroplast and provides strong in vivo evidence that CP12 is required for normal growth and development in plants.
Author Raines, Christine A
Howard, Thomas P
Obata, Toshihiro
Lytovchenko, Anna
Singh, Prashant
Kruger, Nicholas J
Metodiev, Metodi
Fryer, Michael J
Quick, W. Paul
Fernie, Alisdair R
Lloyd, Julie C
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  fullname: Lytovchenko, Anna
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  fullname: Obata, Toshihiro
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  fullname: Fernie, Alisdair R
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  fullname: Kruger, Nicholas J
– sequence: 9
  fullname: Quick, W. Paul
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  fullname: Lloyd, Julie C
– sequence: 11
  fullname: Raines, Christine A
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Issue 2
Keywords Tobacco
Partitioning
Plant physiology
Growth
Carbon
Chloroplast
Protein
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Snippet The thioredoxin-regulated chloroplast protein CP12 forms a multienzyme complex with the Calvin-Benson cycle enzymes phosphoribulokinase (PRK) and...
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SubjectTerms apical dominance
BIOENERGETICS AND PHOTOSYNTHESIS
Biological and medical sciences
Calvin cycle
carbohydrates
Carbon
Carbon - metabolism
Cell Wall - metabolism
cell walls
Chloroplasts
Cyanobacteria
Dehydrogenases
enzyme activity
enzyme inactivation
Enzymes
Fundamental and applied biological sciences. Psychology
glyceraldehyde-3-phosphate dehydrogenase
Glyceraldehyde-3-Phosphate Dehydrogenases - genetics
Glyceraldehyde-3-Phosphate Dehydrogenases - metabolism
Ketoglutaric Acids - metabolism
Leaves
malate dehydrogenase (NADP)
Malate Dehydrogenase (NADP+) - metabolism
malates
Malates - metabolism
multienzyme complexes
Nicotiana - genetics
Nicotiana - growth & development
Nicotiana tabacum
Nitrogen - metabolism
Oligoribonucleotides, Antisense
Pentose Phosphate Pathway
Phosphotransferases (Alcohol Group Acceptor) - genetics
Phosphotransferases (Alcohol Group Acceptor) - metabolism
Photosynthesis - physiology
plant development
Plant growth
Plant Leaves - metabolism
Plant physiology and development
Plant Proteins - genetics
Plant Proteins - metabolism
Plants
Pyridine nucleotides
Repression
tobacco
Title Antisense Suppression of the Small Chloroplast Protein CP12 in Tobacco Alters Carbon Partitioning and Severely Restricts Growth
URI https://www.jstor.org/stable/41435678
https://www.ncbi.nlm.nih.gov/pubmed/21865489
https://search.proquest.com/docview/1028077580
https://search.proquest.com/docview/896527774
Volume 157
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