4.7 Article

Cucumber Phospholipase D alpha gene overexpression in tobacco enhanced drought stress tolerance by regulating stomatal closure and lipid peroxidation

期刊

BMC PLANT BIOLOGY
卷 18, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s12870-018-1592-y

关键词

CsPLD; Transgenic tobacco; Phosphatidic acid; Drought stress; Abscisic acid; Stomatal closure; Lipid peroxidation

资金

  1. National Natural Sciences Foundations of China [31372060, 30900983]
  2. Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production in Shandong
  3. China Agriculture Research System [CARS-25-D]
  4. Collaborative Innovation Center of Protected Vegetable Suround Bohai Gulf Region
  5. Foundation of Shandong Provincial Young Teachers' Development Plan

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BackgroundPlant phospholipase D (PLD), which can hydrolyze membrane phospholipids to produce phosphatidic acid (PA), a secondary signaling molecule, has been proposed to function in diverse plant stress responses. Both PLD and PA play key roles in plant growth, development, and cellular processes. PLD was suggested to mediate the regulation of stomatal movements by abscisic acid (ABA) as a response to water deficit. In this research, we characterized the roles of the cucumber phospholipase D alpha gene (CsPLD, GenBank accession number EF363796) in the growth and tolerance of transgenic tobacco (Nicotiana tabacum) to drought stress.ResultsThe CsPLD overexpression in tobacco lines correlated with the ABA synthesis and metabolism, regulated the rapid stomatal closure in drought stress, and reduced the water loss. The NtNCED1 expression levels in the transgenic lines and wild type (WT) were sharply up-regulated after 16days of drought stress compared with those before treatment, and the expression level in the transgenic lines was significantly higher than that in the WT. The NtAOG expression level evidently improved after 8 and 16days compared with that at 0day of treatment and was significantly lower in the transgenic lines than in the WT. The ABA content in the transgenic lines was significantly higher than that in the WT. The CsPLD overexpression could increase the osmolyte content and reduce the ion leakage. The proline, soluble sugar, and soluble protein contents significantly increased. By contrast, the electrolytic leakage and malondialdehyde accumulation in leaves significantly decreased. The shoot and root fresh and dry weights of the overexpression lines significantly increased. These results indicated that a significant correlation between CsPLD overexpression and improved resistance to water deficit.ConclusionsThe plants with overexpressed CsPLD exhibited lower water loss, higher leaf relative water content, and heavier fresh and dry matter accumulation than the WT. We proposed that CsPLD was involved in the ABA-dependent pathway in mediating the stomatal closure and preventing the elevation of intracellular solute potential.

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