4.5 Article

The effects of grafting on glycolysis and the tricarboxylic acid cycle in Ca(NO3)2-stressed cucumber seedlings with pumpkin as rootstock

Journal

ACTA PHYSIOLOGIAE PLANTARUM
Volume 37, Issue 12, Pages -

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s11738-015-1978-5

Keywords

Cucumber; Ca(NO3)(2) stress; Rootstock grafting; Glycolysis; TCA cycle

Categories

Funding

  1. National Natural Science Foundation of China [31401919, 31471869, 31272209]
  2. Central Research Institutes of Basic Research Fund [6J0745]
  3. China Earmarked Fund for Modern Agro-industry Technology Research System [CARS-25-C-03]
  4. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
  5. Research Fund for the Doctoral Program of Higher Education [20130097120015]

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In this research, we investigated the effects of grafting on intermediate metabolites and key enzymes of glycolysis and the tricarboxylic acid (TCA) cycle in self-grafted and salt-tolerant pumpkin rootstock-grafted cucumber seedlings supplied with nutrient solution and subjected to 80 mM Ca(NO3)(2) stress for 6 days. Ca(NO3)(2) stress induced accumulation of 3-phosphoglycerate (3PGA) and phosphoenolpyruvate (PEP) in the leaves of self-grafted cucumber seedlings and enhanced the activities of phosphoenolpyruvate carboxylase (PEPC) and enolase (ENO). Succinic acid and malic acid contents and isocitrate dehydrogenase, succinate dehydrogenase (SDH), and malate dehydrogenase (MDH) activities in self-grafted seedlings were significantly decreased by Ca(NO3)(2) stress. In addition, activities of PEPC, ENO, SDH, and MDH and contents of glycolysis intermediate metabolites (citric, succinic, and malic acids) were significantly higher in leaves of rootstock-grafted seedlings compared with those in self-grafted seedlings under saline conditions. Furthermore, leaf adenosine triphosphate (ATP) content of root-stock-grafted seedlings was relatively higher than that in self-grafted plants under salt stress, with an opposite effect observed on adenosine diphosphate content. These results indicate that rootstock grafting alleviates Ca(NO3)(2) stress-induced inhibition of the glycolytic pathway and the TCA cycle in cucumber seedling leaves, which may aid the respiratory metabolism of cucumber seedlings and help maintain a high ATP synthesis level, thereby increasing the biomass of cucumber seedlings and enhancing their salt tolerance.

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