Literature DB >> 19429607

A redox-mediated modulation of stem bolting in transgenic Nicotiana sylvestris differentially expressing the external mitochondrial NADPH dehydrogenase.

Yun-Jun Liu1, Adriano Nunes-Nesi, Sabá V Wallström, Ida Lager, Agnieszka M Michalecka, Fredrik E B Norberg, Susanne Widell, Kenneth M Fredlund, Alisdair R Fernie, Allan G Rasmusson.   

Abstract

Cytosolic NADPH can be directly oxidized by a calcium-dependent NADPH dehydrogenase, NDB1, present in the plant mitochondrial electron transport chain. However, little is known regarding the impact of modified cytosolic NADPH reduction levels on growth and metabolism. Nicotiana sylvestris plants overexpressing potato (Solanum tuberosum) NDB1 displayed early bolting, whereas sense suppression of the same gene led to delayed bolting, with consequential changes in flowering time. The phenotype was dependent on light irradiance but not linked to any change in biomass accumulation. Whereas the leaf NADPH/NADP(+) ratio was unaffected, the stem NADPH/NADP(+) ratio was altered following the genetic modification and strongly correlated with the bolting phenotype. Metabolic profiling of the stem showed that the NADP(H) change affected relatively few, albeit central, metabolites, including 2-oxoglutarate, glutamate, ascorbate, sugars, and hexose-phosphates. Consistent with the phenotype, the modified NDB1 level also affected the expression of putative floral meristem identity genes of the SQUAMOSA and LEAFY types. Further evidence for involvement of the NADPH redox in stem development was seen in the distinct decrease in the stem apex NADPH/NADP(+) ratio during bolting. Additionally, the potato NDB1 protein was specifically detected in mitochondria, and a survey of its abundance in major organs revealed that the highest levels are found in green stems. These results thus strongly suggest that NDB1 in the mitochondrial electron transport chain can, by modifying cell redox levels, specifically affect developmental processes.

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Year:  2009        PMID: 19429607      PMCID: PMC2705030          DOI: 10.1104/pp.109.136242

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  76 in total

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Journal:  Plant Physiol       Date:  2005-01-21       Impact factor: 8.340

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  17 in total

Review 1.  On the role of plant mitochondrial metabolism and its impact on photosynthesis in both optimal and sub-optimal growth conditions.

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5.  Conditional modulation of NAD levels and metabolite profiles in Nicotiana sylvestris by mitochondrial electron transport and carbon/nitrogen supply.

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Journal:  Plant Cell Physiol       Date:  2014-01-30       Impact factor: 4.927

7.  Antisense inhibition of the 2-oxoglutarate dehydrogenase complex in tomato demonstrates its importance for plant respiration and during leaf senescence and fruit maturation.

Authors:  Wagner L Araújo; Takayuki Tohge; Sonia Osorio; Marc Lohse; Ilse Balbo; Ina Krahnert; Agata Sienkiewicz-Porzucek; Björn Usadel; Adriano Nunes-Nesi; Alisdair R Fernie
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8.  Assessment of Mitochondrial DNA Copy Number, Stability, and Repair in Arabidopsis.

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Review 10.  Alternative oxidase: a mitochondrial respiratory pathway to maintain metabolic and signaling homeostasis during abiotic and biotic stress in plants.

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Journal:  Int J Mol Sci       Date:  2013-03-26       Impact factor: 5.923

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