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Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves

The influence of reduced glycine decarboxylase complex (GDC) activity on leaf atmosphere CO(2) and (13)CO(2) exchange was tested in transgenic Oryza sativa with the GDC H-subunit knocked down in leaf mesophyll cells. Leaf measurements on transgenic gdch knockdown and wild-type plants were carried ou...

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Autores principales: Giuliani, Rita, Karki, Shanta, Covshoff, Sarah, Lin, Hsiang-Chun, Coe, Robert A, Koteyeva, Nuria K, Quick, W Paul, Von Caemmerer, Susanne, Furbank, Robert T, Hibberd, Julian M, Edwards, Gerald E, Cousins, Asaph B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506765/
https://www.ncbi.nlm.nih.gov/pubmed/30840760
http://dx.doi.org/10.1093/jxb/erz083
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author Giuliani, Rita
Karki, Shanta
Covshoff, Sarah
Lin, Hsiang-Chun
Coe, Robert A
Koteyeva, Nuria K
Quick, W Paul
Von Caemmerer, Susanne
Furbank, Robert T
Hibberd, Julian M
Edwards, Gerald E
Cousins, Asaph B
author_facet Giuliani, Rita
Karki, Shanta
Covshoff, Sarah
Lin, Hsiang-Chun
Coe, Robert A
Koteyeva, Nuria K
Quick, W Paul
Von Caemmerer, Susanne
Furbank, Robert T
Hibberd, Julian M
Edwards, Gerald E
Cousins, Asaph B
author_sort Giuliani, Rita
collection PubMed
description The influence of reduced glycine decarboxylase complex (GDC) activity on leaf atmosphere CO(2) and (13)CO(2) exchange was tested in transgenic Oryza sativa with the GDC H-subunit knocked down in leaf mesophyll cells. Leaf measurements on transgenic gdch knockdown and wild-type plants were carried out in the light under photorespiratory and low photorespiratory conditions (i.e. 18.4 kPa and 1.84 kPa atmospheric O(2) partial pressure, respectively), and in the dark. Under approximately current ambient O(2) partial pressure (18.4 kPa pO(2)), the gdch knockdown plants showed an expected photorespiratory-deficient phenotype, with lower leaf net CO(2) assimilation rates (A) than the wild-type. Additionally, under these conditions, the gdch knockdown plants had greater leaf net discrimination against (13)CO(2) (Δ(o)) than the wild-type. This difference in Δ(o) was in part due to lower (13)C photorespiratory fractionation (f) ascribed to alternative decarboxylation of photorespiratory intermediates. Furthermore, the leaf dark respiration rate (R(d)) was enhanced and the (13)CO(2) composition of respired CO(2) (δ(13)C(Rd)) showed a tendency to be more depleted in the gdch knockdown plants. These changes in R(d) and δ(13)C(Rd) were due to the amount and carbon isotopic composition of substrates available for dark respiration. These results demonstrate that impairment of the photorespiratory pathway affects leaf (13)CO(2) exchange, particularly the (13)C decarboxylation fractionation associated with photorespiration.
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spelling pubmed-65067652019-05-13 Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves Giuliani, Rita Karki, Shanta Covshoff, Sarah Lin, Hsiang-Chun Coe, Robert A Koteyeva, Nuria K Quick, W Paul Von Caemmerer, Susanne Furbank, Robert T Hibberd, Julian M Edwards, Gerald E Cousins, Asaph B J Exp Bot Research Papers The influence of reduced glycine decarboxylase complex (GDC) activity on leaf atmosphere CO(2) and (13)CO(2) exchange was tested in transgenic Oryza sativa with the GDC H-subunit knocked down in leaf mesophyll cells. Leaf measurements on transgenic gdch knockdown and wild-type plants were carried out in the light under photorespiratory and low photorespiratory conditions (i.e. 18.4 kPa and 1.84 kPa atmospheric O(2) partial pressure, respectively), and in the dark. Under approximately current ambient O(2) partial pressure (18.4 kPa pO(2)), the gdch knockdown plants showed an expected photorespiratory-deficient phenotype, with lower leaf net CO(2) assimilation rates (A) than the wild-type. Additionally, under these conditions, the gdch knockdown plants had greater leaf net discrimination against (13)CO(2) (Δ(o)) than the wild-type. This difference in Δ(o) was in part due to lower (13)C photorespiratory fractionation (f) ascribed to alternative decarboxylation of photorespiratory intermediates. Furthermore, the leaf dark respiration rate (R(d)) was enhanced and the (13)CO(2) composition of respired CO(2) (δ(13)C(Rd)) showed a tendency to be more depleted in the gdch knockdown plants. These changes in R(d) and δ(13)C(Rd) were due to the amount and carbon isotopic composition of substrates available for dark respiration. These results demonstrate that impairment of the photorespiratory pathway affects leaf (13)CO(2) exchange, particularly the (13)C decarboxylation fractionation associated with photorespiration. Oxford University Press 2019-05-01 2019-03-06 /pmc/articles/PMC6506765/ /pubmed/30840760 http://dx.doi.org/10.1093/jxb/erz083 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Papers
Giuliani, Rita
Karki, Shanta
Covshoff, Sarah
Lin, Hsiang-Chun
Coe, Robert A
Koteyeva, Nuria K
Quick, W Paul
Von Caemmerer, Susanne
Furbank, Robert T
Hibberd, Julian M
Edwards, Gerald E
Cousins, Asaph B
Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves
title Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves
title_full Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves
title_fullStr Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves
title_full_unstemmed Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves
title_short Knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in Oryza sativa leaves
title_sort knockdown of glycine decarboxylase complex alters photorespiratory carbon isotope fractionation in oryza sativa leaves
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506765/
https://www.ncbi.nlm.nih.gov/pubmed/30840760
http://dx.doi.org/10.1093/jxb/erz083
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