Nicotianamine Synthesis by OsNAS3 Is Important for Mitigating Iron Excess Stress in Rice

被引:46
作者
Aung, May Sann [1 ,2 ]
Masuda, Hiroshi [1 ,2 ]
Nozoye, Tomoko [3 ,4 ]
Kobayashi, Takanori [1 ]
Jeon, Jong-Seong [5 ,6 ]
An, Gynheung [5 ,6 ]
Nishizawa, Naoko K. [1 ,4 ]
机构
[1] Ishikawa Prefectural Univ, Res Inst Bioresources & Biotechnol, Nonoichi, Ishikawa, Japan
[2] Akita Prefectural Univ, Fac Bioresource Sci, Dept Biol Prod, Akita, Japan
[3] Meiji Gakuin Univ, Ctr Liberal Arts, Yokohama, Kanagawa, Japan
[4] Univ Tokyo, Dept Global Agr Sci, Tokyo, Japan
[5] Kyung Hee Univ, Crop Biotech Inst, Yongin, South Korea
[6] Kyung Hee Univ, Grad Sch Biotechnol, Yongin, South Korea
来源
FRONTIERS IN PLANT SCIENCE | 2019年 / 10卷
基金
日本科学技术振兴机构;
关键词
iron excess; rice; OsNAS3; nicotianamine; deoxymugineic acid; detoxification; SYNTHASE GENES; DEOXYMUGINEIC ACID; FUNCTIONAL-ANALYSIS; DEFICIENT RICE; FE; EXPRESSION; TOLERANCE; TRANSPORT; BARLEY; PLANTS;
D O I
10.3389/fpls.2019.00660
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Iron (Fe) toxicity in plants causes tissue damage and cellular homeostasis disorders, thereby affecting plant growth and development. Nicotianamine (NA) is a ubiquitous chelator of metal cations and is responsible for metal homeostasis. Rice has three NA synthase (NAS) genes, of which the expression of OsNAS1 and OsNAS2 but not of OsNAS3 is strongly induced in response to Fe deficiency. Recently, we found that OsNAS3 expression is strongly induced with excess Fe in most rice tissues, particularly old leaves, suggesting that it may play a vital role under excess Fe conditions. However, the mechanism by which OsNAS3 responds to excess Fe in rice remains poorly understood. In this study, we clarified the physiological response of OsNAS3 expression to excess Fe and the role of NA synthesis in this condition. Promoter GUS analyses revealed that OsNAS3 was widely expressed in roots, especially in vascular bundle, epidermis, exodermis, stem, and old leaf tissues under Fe excess compared to control plants. Nicotianamine and deoxymugineic acid (DMA; a type of phytosiderophore synthesized by Strategy II species) were present in roots and shoots under Fe excess likewise under control conditions. In addition, OsNAS3 knockout plants were sensitive to excess Fe, exhibiting inferior growth, reduced dry weight, severer leaf bronzing, and greater Fe accumulation in their leaves than non-transformants with excess Fe. We also observed that NA-overproducing rice was tolerant of excess Fe. These results show that NA synthesized by OsNAS3 under Fe excess condition is to mitigate excess Fe whereas NA synthesized by OsNAS1 and OsNAS2 under normal Fe condition is to enhance Fe translocation, suggesting the different roles and functions of the NA existence between these two conditions. Overall, these findings suggest that rice synthesizes NA with OsNAS3 under Fe excess in roots and shoots, and that NA and DMA within the plant body are important for mitigating excess Fe stress and alleviating other metal deficiencies in rice. This report will be important for the development of tolerant rice adapted to Fe-contaminated soils.
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页数:16
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