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Comparative Study
. 2004 Dec;220(2):344-55.
doi: 10.1007/s00425-004-1340-4. Epub 2004 Sep 17.

Physiological characterisation of magnesium deficiency in sugar beet: acclimation to low magnesium differentially affects photosystems I and II

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Comparative Study

Physiological characterisation of magnesium deficiency in sugar beet: acclimation to low magnesium differentially affects photosystems I and II

Christian Hermans et al. Planta. 2004 Dec.

Abstract

Magnesium deficiency in plants is a widespread problem, affecting productivity and quality in agriculture, yet at a physiological level it has been poorly studied in crop plants. Here, a physiological characterization of Mg deficiency in Beta vulgaris L., an important crop model, is presented. The impact of Mg deficiency on plant growth, mineral profile and photosynthetic activity was studied. The aerial biomass of plants decreased after 24 days of hydroponic culture in Mg-free nutrient solution, whereas the root biomass was unaffected. Analysis of mineral profiles revealed that Mg decreased more rapidly in roots than in shoots and that shoot Mg content could fall to 3 mg g(-1) DW without chlorosis development and with no effect on photosynthetic parameters. Sucrose accumulated in most recently expanded leaves before any loss in photosynthetic activity. During the development of Mg deficiency, the two photosystems showed sharply contrasting responses. Data were consistent with a down-regulation of PSII through a loss of antenna, and of PSI primarily through a loss of reaction centres. In each case, the net result was a decrease in the overall rate of linear electron transport, preventing an excess of reductant being produced during conditions under which sucrose export away from mature leaf was restricted.

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References

    1. Plant Cell. 1990 Oct;2(10):1027-38 - PubMed
    1. J Exp Bot. 1996 Aug;47 Spec No:1255-63 - PubMed
    1. J Biol Chem. 1999 Jul 16;274(29):20438-43 - PubMed
    1. Biochim Biophys Acta. 1975 Jan 31;376(1):116-25 - PubMed
    1. Planta. 2003 Nov;218(1):107-14 - PubMed

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