Overexpression of chloroplastic Zea mays NADP-malic enzyme (ZmNADP-ME) confers tolerance to salt stress in Arabidopsis thaliana
The C4 plants photosynthesize better than C3 plants especially in arid environment. As an attempt to genetically convert C3 plant to C4, the cDNA of decarboxylating C4 type NADP-malic enzyme from Zea mays ( ZmNADP-ME ) that has lower Km for malate and NADP than its C3 isoforms, was overexpressed in...
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Veröffentlicht in: | Photosynthesis research 2023-10, Vol.158 (1), p.57-76 |
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Sprache: | eng |
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Zusammenfassung: | The C4 plants photosynthesize better than C3 plants especially in arid environment. As an attempt to genetically convert C3 plant to C4, the cDNA of decarboxylating C4 type NADP-malic enzyme from
Zea mays
(
ZmNADP-ME
) that has lower Km for malate and NADP than its C3 isoforms, was overexpressed in
Arabidopsis thaliana
under the control of 35S promoter. Due to increased activity of NADP-ME in the transgenics the malate decarboxylation increased that resulted in loss of carbon skeletons needed for amino acid and protein synthesis. Consequently, amino acid and protein content of the transgenics declined. Therefore, the Chl content, photosynthetic efficiency (Fv/Fm), electron transport rate (ETR), the quantum yield of photosynthetic CO
2
assimilation, rosette diameter, and biomass were lower in the transgenics. However, in salt stress (150 mM NaCl), the overexpressers had higher Chl, protein content, Fv/Fm, ETR, and biomass than the vector control. NADPH generated in the transgenics due to increased malate decarboxylation, contributed to augmented synthesis of proline, the osmoprotectant required to alleviate the reactive oxygen species-mediated membrane damage and oxidative stress. Consequently, the glutathione peroxidase activity increased and H
2
O
2
content decreased in the salt-stressed transgenics. The reduced membrane lipid peroxidation and lower malondialdehyde production resulted in better preservation, of thylakoid integrity and membrane architecture in the transgenics under saline environment. Our results clearly demonstrate that overexpression of C4 chloroplastic
ZmNADP-ME
in the C3
Arabidopsis thaliana
, although decrease their photosynthetic efficiency, protects the transgenics from salinity stress. |
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ISSN: | 0166-8595 1573-5079 |
DOI: | 10.1007/s11120-023-01041-x |