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谷氨酰胺对水稻铵转运蛋白基因家族AMT1的反馈调节

Feedback regulation of the ammonium transporter gene family AMT1 by glutamine in rice.

作者信息

Sonoda Yutaka, Ikeda Akira, Saiki Satomi, Yamaya Tomoyuki, Yamaguchi Junji

机构信息

Division of Biological Sciences, Graduate School of Science, Hokkaido University, Kita-ku N10-W8, Sapporo, 060-0810 Japan.

出版信息

Plant Cell Physiol. 2003 Dec;44(12):1396-402. doi: 10.1093/pcp/pcg169.

Abstract

The three members of the rice OsAMT1 gene family of ammonium transporters show distinct expression patterns; constitutive and ammonium-promoted expression in shoots and roots for OsAMT1;1; root-specific and ammonium-inducible expression for OsAMT1;2; root-specific and nitrogen-repressible expression for OsAMT1;3 [Sonoda et al. (2003), Plant Cell Physiol. 44: 726]. To clarify the feedback mechanisms, and to identify regulatory factors of the OsAMT1 genes, the accumulation of the three mRNAs and its dependence on endogenous nitrogen compounds (as quantified by capillary electrophoresis) was studied. Ammonium application to roots following a period of nitrogen starvation induced accumulation of OsAMT1;1 and OsAMT1;2 mRNA, but a decrease of OsAMT1;3 mRNA levels. The expression patterns of the three genes showed good correlation (positive in OsAMT1;1 and OsAMT1;2, negative in OsAMT1;3) with the root tissue contents of glutamine but not of ammonium. The ammonium effects on OsAMT1 expression were prevented by methionine sulfoximine, an inhibitor of glutamine synthetase. Moreover, glutamine had the same effect on transcriptional regulation of OsAMT1 genes as ammonium, indicating that glutamine rather than ammonium controls the expression of ammonium transporter genes in rice. These results imply that rice possesses unique mechanisms of adaptation to variable nitrogen sources in the soil.

摘要

水稻铵转运蛋白OsAMT1基因家族的三个成员表现出不同的表达模式;OsAMT1;1在地上部和根部组成型表达且受铵促进;OsAMT1;2在根部特异性表达且受铵诱导;OsAMT1;3在根部特异性表达且受氮抑制[园田等人(2003年),《植物细胞生理学》44: 726]。为阐明反馈机制并鉴定OsAMT1基因的调控因子,研究了三种mRNA的积累及其对内源氮化合物的依赖性(通过毛细管电泳定量)。在一段时间的氮饥饿后向根部施加铵会诱导OsAMT1;1和OsAMT1;2 mRNA的积累,但会降低OsAMT1;3 mRNA水平。这三个基因的表达模式与谷氨酰胺而非铵的根组织含量具有良好的相关性(OsAMT1;1和OsAMT1;2为正相关,OsAMT1;3为负相关)。谷氨酰胺合成酶抑制剂甲硫氨酸亚砜亚胺可阻止铵对OsAMT1表达的影响。此外,谷氨酰胺对OsAMT1基因转录调控的作用与铵相同,表明在水稻中是谷氨酰胺而非铵控制铵转运蛋白基因的表达。这些结果表明水稻具有适应土壤中可变氮源的独特机制。

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