Osmotic Stress Leads to Significant Changes in Rice Root Metabolic Profiles between Tolerant and Sensitive Genotypes

被引:19
作者
Matsunami, Maya [1 ,2 ]
Toyofuku, Kyoko [2 ,3 ]
Kimura, Natsumi [2 ]
Ogawa, Atsushi [2 ,3 ]
机构
[1] Iwate Univ, Fac Agr, 3-18-8 Ueda, Morioka, Iwate 0208550, Japan
[2] Akita Prefectural Univ, Dept Biol Prod, Akita 0100195, Japan
[3] Japan Sci & Technol Agcy, Core Res Evolutionary Sci & Technol Project, Tokyo 1020076, Japan
来源
PLANTS-BASEL | 2020年 / 9卷 / 11期
基金
日本科学技术振兴机构;
关键词
metabolomics; osmotic stress; Oryza sativa L; rice; root; PLANT-RESPONSES; LIGNIN; ACCUMULATION; DROUGHT; SEEDLINGS; PROLINE; BIOSYNTHESIS; ROLES; MAIZE; ASSOCIATION;
D O I
10.3390/plants9111503
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
To breed osmotic stress-tolerant rice, the mechanisms involved in maintaining root growth under osmotic stress is important to elucidate. In this study, two rice (Oryza sativa L.) cultivars, IR 58 (stress-tolerant cultivar) and Basilanon (stress-sensitive cultivar), were used. After 1, 3, and 7 days of -0.42 MPa osmotic stress treatment induced by polyethylene glycol (PEG) 6000, root metabolomes were analyzed, yielding 276 detected compounds. Among 276 metabolites, 102 metabolites increased with the duration of the stress treatment in IR 58 roots, and only nine metabolites decreased. In contrast, 51 metabolites increased, and 45 metabolites decreased in Basilanon roots. Principal component analysis (PCA) scores clearly indicated differences between the cultivars and the treatments. Pathway analysis showed that the metabolites exhibiting stress-induced increases in IR 58 were those involved in sugar metabolism (such as sucrose 6'-phosphate, glucose 1-phosphate), polyamine and phenylpropanoid metabolisms (such as spermine, spermidine, gamma-aminobutyric acid (GABA)), and glutathione metabolism (such as glutathione, cysteine, cadaverine). IR 58 roots showed an increase in the most proteinogenic amino acids such as proline, serine, glutamine and asparagine. It was also maintained or increased the tricarboxylic acid (TCA) cycle intermediates (citric acid, cis-Aconitic acid, isocitric acid, fumaric acid, malic acid) under osmotic stress compared with that under control. Therefore, IR 58 actively synthesized various metabolites, and the increase in these metabolites contributed to the maintenance of important biological functions such as energy production and antioxidant defense to promote root development under osmotic stress.
引用
收藏
页码:1 / 16
页数:16
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