Department of Biotechnology, Faculty of Science, Mahidol University, Bangkok 10400, Thailand.
National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency (NSTDA), 113 Thailand Science Park, Pahonyothin Road, Khlong Nueng, Khlong Luang, Pathum Thani 12120, Thailand.
Pestic Biochem Physiol. 2014 Jan;108:27-33. doi: 10.1016/j.pestbp.2013.11.003. Epub 2013 Dec 3.
Application of N-2-(chloro-4-pyridyl)-N-phenyl urea (CPPU) to salt susceptible cultivar of indica rice (cv. PTT1) effected on free proline and soluble sugar accumulation and regulated the physio-morphological responses when subjected to salt stress condition was firstly demonstrated in this study. Soluble sugars, including sucrose, glucose and fructose, in leaf blade and leaf sheath were enriched in 0.1 mM CPPU pretreated plants subsequently exposed to 16.6 dS m(-1) NaCl for 10 days. In the long period (15 days) salt stress, free proline content in the leaf blade and leaf sheath were evidently peaked to act as osmotic adjustment in the salt-stressed plants. In addition, the photosynthetic pigments, including chlorophyll a, chlorophyll b, total chlorophyll and total carotenoids, were maintained by the functional regulation of soluble sugar and free proline in the cellular levels, thereby leading to higher net photosynthetic rate. Further, the stomatal closure and transpiration rate in CPPU pretreated plants were retained under salt stress, thereby resulting in alleviation of growth performance and yield traits. This study suggested that exogenous application of CPPU may alternatively play effective role to improve the salt tolerant abilities of salt susceptible rice crop.
本研究首次证明,N-2-(氯-4-吡啶基)-N-苯基脲(CPPU)在盐敏感籼稻品种(PTT1)中的应用,可影响游离脯氨酸和可溶性糖的积累,并调节盐胁迫条件下的生理形态响应。叶片和叶鞘中的可溶性糖,包括蔗糖、葡萄糖和果糖,在 0.1mM CPPU 预处理的植物中富集,随后暴露于 16.6dS m(-1)NaCl 中 10 天。在长期(15 天)盐胁迫下,叶片和叶鞘中的游离脯氨酸含量明显升高,作为盐胁迫下的渗透调节物质。此外,在细胞水平上,通过可溶性糖和游离脯氨酸的功能调节,维持了光合色素,包括叶绿素 a、叶绿素 b、总叶绿素和总类胡萝卜素,从而导致更高的净光合速率。此外,CPPU 预处理的植物在盐胁迫下保持气孔关闭和蒸腾速率,从而减轻生长性能和产量性状的下降。本研究表明,外源 CPPU 的应用可能在改善盐敏感水稻作物的耐盐能力方面发挥有效作用。