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盐胁迫下两种不同水稻基因型中一些与碳水化合物代谢相关基因、淀粉和可溶性糖含量、光合活性及产量性状的调控

Regulation of some carbohydrate metabolism-related genes, starch and soluble sugar contents, photosynthetic activities and yield attributes of two contrasting rice genotypes subjected to salt stress.

作者信息

Boriboonkaset Thanaphol, Theerawitaya Cattarin, Yamada Nana, Pichakum Aussanee, Supaibulwatana Kanyaratt, Cha-Um Suriyan, Takabe Teruhiro, Kirdmanee Chalermpol

机构信息

Department of Biotechnology, Faculty of Science, Mahidol University, Payathai, Bangkok, 10400, Thailand.

出版信息

Protoplasma. 2013 Oct;250(5):1157-67. doi: 10.1007/s00709-013-0496-9. Epub 2013 Apr 5.

Abstract

Soluble carbohydrates play a key role as osmolytes and significantly contribute in salt defence mechanism, especially in halophyte species. The objective of this study is to investigate the transcriptional expression of starch-related genes, sugar profile and physiological performances of two contrasting rice genotypes, Pokkali (salt tolerant) and IR29 (salt sensitive), in response to salt stress. Total soluble sugars, glucose and fructose levels in the flag leaf of salt-stressed Pokkali rice were enhanced relative to soluble starch accumulation in plants exposed to EC = 13.25 dS m(-1) (salt stress) for 3 days. In Pokkali, the net photosynthetic rate and starch metabolism may play a key role as energy resources under salt stress. In contrast, photosynthetic performance, indicated by photosynthetic pigment levels and chlorophyll fluorescence parameters, in salt-stressed IR29 was significantly reduced, leading to delayed starch biosynthesis. The reduction in photosynthetic ability and lack of defence mechanisms in IR29 caused growth inhibition and yield loss. Soluble starch and soluble sugar enrichment in Pokkali rice may function alternatively as osmotic adjustment in salt defence mechanism and strengthen carbon energy reserves, greater survival prospects under salt stress and enhanced productivity.

摘要

可溶性碳水化合物作为渗透调节物质发挥着关键作用,在盐防御机制中贡献显著,尤其是在盐生植物物种中。本研究的目的是调查两种对比鲜明的水稻基因型Pokkali(耐盐)和IR29(盐敏感)在盐胁迫下淀粉相关基因的转录表达、糖谱和生理表现。与暴露于电导率为13.25 dS m(-1)(盐胁迫)3天的植株中可溶性淀粉积累相比,盐胁迫下Pokkali水稻旗叶中的总可溶性糖、葡萄糖和果糖水平有所提高。在Pokkali中,净光合速率和淀粉代谢可能在盐胁迫下作为能量资源发挥关键作用。相比之下,盐胁迫下IR29的光合性能(由光合色素水平和叶绿素荧光参数表示)显著降低,导致淀粉生物合成延迟。IR29光合能力的降低和缺乏防御机制导致生长抑制和产量损失。Pokkali水稻中可溶性淀粉和可溶性糖的富集可能在盐防御机制中作为渗透调节发挥替代作用,并加强碳能量储备,在盐胁迫下具有更大的生存前景和更高的生产力。

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