Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/7319
Title: Expression of novel cytosolic malate dehydrogenases (cMDH) in Lupinus angustifolius nodules during phosphorus starvation
Authors: Le Roux, Marcellous 
Phiri, Ethel 
Khan, Wesaal 
Sakiroglu, Muhammet 
Valentine, AJ 
Khan, Sehaam 
Keywords: Malate dehydrogenase;Isoforms;P deficiency;Cytosolic;Nodules
Issue Date: 2014
Publisher: Elsevier
Source: Le Roux, M., Phiri, E., Khan, W. et al. 2014. Expression of novel cytosolic malate dehydrogenases (cMDH) in Lupinus angustifolius nodules during phosphorus starvation. Journal of Plant Physiology, 171: 1609–1618. [http://dx.doi.org/10.1016/j.jplph.2014.07.020]
Journal: Journal of Plant Physiology 
Abstract: During P deficiency, the increased activity of malate dehydrogenase (MDH, EC 1.1.1.37) can lead to malate accumulation. Cytosolic- and nodule-enhanced MDH (cMDH and neMDH, respectively) are known iso- forms, which contribute to MDH activity in root nodules. The aim of this study was to investigate the role of the cMDH isoforms in nodule malate supply under P deficiency. Nodulated lupins (Lupinus angus- tifolius var. Tanjil) were hydroponically grown at adequate P (+P) or low P (−P). Total P concentration in nodules decreased under P deficiency, which coincided with an increase in total MDH activity. A conse- quence of higher MDH activity was the enhanced accumulation of malate derived from dark CO2 fixation via PEPC and not from pyruvate. Although no measurable neMDH presence could be detected via PCR, gene-specific primers detected two 1 kb amplicons of cMDH, designated LangMDH1 (corresponding to +P, HQ690186) and LangMDH2 (corresponding to −P, HQ690187), respectively. Sequencing analyses of these cMDH amplicons showed them to be 96% identical on an amino acid level. There was a high degree of diversification between proteins detected in this study and other known MDH proteins, particularly those from other leguminous plants. Enhanced malate synthesis in P-deficient nodules was achieved via increased anaplerotic CO2 fixation and subsequent higher MDH activities. Novel isoforms of cytosolic MDH may be involved, as shown by gene expression of specific genes under P deficiency.
URI: http://hdl.handle.net/11189/7319
ISSN: 0176-1617
DOI: http://dx.doi.org/10.1016/j.jplph.2014.07.020
Appears in Collections:HWSci - Journal Articles (DHET subsidised)

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