Literature DB >> 19121034

On the metabolic origin of the carbon isotope composition of CO2 evolved from darkened light-acclimated leaves in Ricinus communis.

Arthur Gessler1, Guillaume Tcherkez1, Oka Karyanto1, Claudia Keitel1, Juan Pedro Ferrio1, Jaleh Ghashghaie1, Jürgen Kreuzwieser1, Graham D Farquhar1.   

Abstract

The (13)C isotopic signature (delta(13)C) of CO(2) respired from plants is widely used to assess carbon fluxes and ecosystem functioning. There is, however, a lack of knowledge of the metabolic basis of the delta(13)C value of respired CO(2). To elucidate the physiological mechanisms driving (12)C/(13)C fractionation during respiration, the delta(13)C of respired CO(2) from dark-acclimated leaves during the night, from darkened leaves during the light period, and from stems and roots of Ricinus communis was analysed. The delta(13)C of potential respiratory substrates, the respiratory quotient and the activities of phosphoenolpyruvatecarboxylase (PEPc) and key respiratory enzymes were also measured. It is shown here that the CO(2) evolved from darkened light-acclimated leaves during the light period is (13)C-enriched, and that this correlates with malate accumulation in the light and rapid malate decarboxylation just after the onset of darkness. Whilst CO(2) evolved from leaves was generally (13)C-enriched (but to a lesser extent during the night), CO(2) evolved from stems and roots was depleted compared with the putative respiratory substrates; the difference was mainly caused by intensive PEPc-catalysed CO(2) refixation in stems and roots. These results provide a physiological explanation for short-term variations of delta(13)C in CO(2), illustrating the effects of variations of metabolic fluxes through different biochemical pathways.

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Year:  2009        PMID: 19121034     DOI: 10.1111/j.1469-8137.2008.02672.x

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  18 in total

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Journal:  Oecologia       Date:  2010-03-10       Impact factor: 3.225

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6.  CAM photosynthesis: the acid test.

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7.  Malate as a key carbon source of leaf dark-respired CO2 across different environmental conditions in potato plants.

Authors:  Marco M Lehmann; Katja T Rinne; Carola Blessing; Rolf T W Siegwolf; Nina Buchmann; Roland A Werner
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8.  Carbon Isotope Composition of Nighttime Leaf-Respired CO2 in the Agricultural-Pastoral Zone of the Songnen Plain, Northeast China.

Authors:  Haiying Cui; Yunbo Wang; Qi Jiang; Shiping Chen; Jian-Ying Ma; Wei Sun
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9.  Douglas-fir seedlings exhibit metabolic responses to increased temperature and atmospheric drought.

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Journal:  PLoS One       Date:  2014-12-01       Impact factor: 3.240

10.  Relative contribution of shoot and ear photosynthesis to grain filling in wheat under good agronomical conditions assessed by differential organ δ13C.

Authors:  Rut Sanchez-Bragado; Gemma Molero; Matthew P Reynolds; Jose Luis Araus
Journal:  J Exp Bot       Date:  2014-07-22       Impact factor: 6.992

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