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PMID: 19481951 Published · ppublish English Journal Article

Salt stress affects glutamine synthetase activity and mRNA accumulation on potato plants in an organ-dependent manner.

Plant physiology and biochemistry : PPB ·Vol. 47 ·No. 9 ·2009-09-00 ·Pages 807-13

Teixeira J, Fidalgo F

Abstract

Ammonium assimilation into glutamine and glutamate is vital for plant growth as these are precursors for almost all nitrogenous compounds. Ammonium can be assimilated onto nitrogenous organic compounds by the concerted action of two enzymes that compose the glutamine synthetase (GS, EC 6.3.1.2) - glutamate synthase (Fd-GOGAT, EC 1.4.7.1; NADH-GOGAT, EC 1.4.1.14) cycle. Ammonium may also be directly incorporated into glutamate by the glutamate dehydrogenase (GDH, EC 1.4.1.2) aminating reaction. However, as GDH reversibly deaminates glutamate, its physiological role in vivo remains controversial. Potato has been classified as moderately tolerant to salinity. Potato GS is encoded by a small multigene family which is differentially regulated in an organ and age-dependent way. In this study, the effect of increasing concentrations of salinity in the soil in GS activity and gene-specific mRNA accumulation levels were studied on potato leaves and roots, as well as the biochemical parameters protein, chlorophyll, lipid peroxidation and proline levels, in order to evaluate the severity of the imposed stress. The data obtained suggests that when potato plants are subjected to salt stress, increased ammonium assimilation occurs in roots, due to an increased GS accumulation, along with a decreased assimilation in leaves. Regarding GS gene-specific mRNA accumulation, an organ-dependent response was also observed that contributes for the detected alteration in the ammonium assimilatory metabolism. This response may be a key feature for future genetic manipulations in order to increase crop productivity in salty soils. The possible contribution of GDH for ammonia assimilation was also investigated.

MeSH Terms
Chlorophyll/metabolism Gene Expression Regulation, Plant Glutamate Dehydrogenase/metabolism Glutamate Synthase/metabolism Glutamate-Ammonia Ligase/metabolism Lipid Peroxidation Models, Biological Nitrogen/metabolism Plant Physiological Phenomena Plant Proteins/genetics Proline/chemistry RNA, Messenger/metabolism Reverse Transcriptase Polymerase Chain Reaction Salts/metabolism Solanum tuberosum/genetics,metabolism
Chemicals
Plant Proteins RNA, Messenger Salts Chlorophyll Proline Glutamate Synthase Glutamate Dehydrogenase Glutamate-Ammonia Ligase Nitrogen
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Teixeira Jorge
Faculty of Sciences of the University of Porto, Botany Department, Porto, Portugal. [email protected]
Fidalgo Fernanda
Article Info
Journal
Plant physiology and biochemistry : PPB
Abbr.
Plant Physiol Biochem
ISSN
1873-2690
Published
2009-09-00
Epub
2009-00-23
Pages
807-13
Language
English
Region
France
NLM ID
9882449
Subset
IM
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