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水稻硼酸通道蛋白OsNIP3;1调控硼的分布,对缺硼条件下的生长至关重要。

OsNIP3;1, a rice boric acid channel, regulates boron distribution and is essential for growth under boron-deficient conditions.

作者信息

Hanaoka Hideki, Uraguchi Shimpei, Takano Junpei, Tanaka Mayuki, Fujiwara Toru

机构信息

Biotechnology Research Center, University of Tokyo, Tokyo, 113-8657, Japan.

出版信息

Plant J. 2014 Jun;78(5):890-902. doi: 10.1111/tpj.12511. Epub 2014 May 8.

Abstract

Boron is an essential micronutrient for higher plants. Boron deficiency is an important agricultural issue because it results in loss of yield quality and/or quantity in cereals and other crops. To understand boron transport mechanisms in cereals, we characterized OsNIP3;1, a member of the major intrinsic protein family in rice (Oryza sativa L.), because OsNIP3;1 is the most similar rice gene to the Arabidopsis thaliana boric acid channel genes AtNIP5;1 and AtNIP6;1. Yeast cells expressing OsNIP3;1 imported more boric acid than control cells. GFP-tagged OsNIP3;1 expressed in tobacco BY2 cells was localized to the plasma membrane. The accumulation of OsNIP3;1 transcript increased fivefold in roots within 6 h of the onset of boron starvation, but not in shoots. Promoter-GUS analysis suggested that OsNIP3;1 is expressed mainly in exodermal cells and steles in roots, as well as in cells around the vascular bundles in leaf sheaths and pericycle cells around the xylem in leaf blades. The growth of OsNIP3;1 RNAi plants was impaired under boron limitation. These results indicate that OsNIP3;1 functions as a boric acid channel, and is required for acclimation to boron limitation. Boron distribution among shoot tissues was altered in OsNIP3;1 knockdown plants, especially under boron-deficient conditions. This result demonstrates that OsNIP3;1 regulates boron distribution among shoot tissues, and that the correct boron distribution is crucial for plant growth.

摘要

硼是高等植物必需的微量营养素。硼缺乏是一个重要的农业问题,因为它会导致谷物和其他作物的产量质量和/或数量损失。为了了解谷物中的硼转运机制,我们对水稻(Oryza sativa L.)主要内在蛋白家族成员OsNIP3;1进行了表征,因为OsNIP3;1是与拟南芥硼酸通道基因AtNIP5;1和AtNIP6;1最相似的水稻基因。表达OsNIP3;1的酵母细胞比对照细胞摄取更多的硼酸。在烟草BY2细胞中表达的绿色荧光蛋白标记的OsNIP3;1定位于质膜。在硼饥饿开始后的6小时内,OsNIP3;1转录本在根中的积累增加了五倍,但在地上部没有增加。启动子-GUS分析表明,OsNIP3;1主要在根的外皮层细胞和中柱中表达,以及在叶鞘维管束周围的细胞和叶片木质部周围的中柱鞘细胞中表达。在硼限制条件下,OsNIP3;1 RNA干扰植物的生长受到损害。这些结果表明,OsNIP3;1作为硼酸通道发挥作用,是适应硼限制所必需的。在OsNIP3;1基因敲低的植物中,地上部组织中的硼分布发生了改变,尤其是在缺硼条件下。这一结果表明,OsNIP3;1调节地上部组织中的硼分布,并且正确的硼分布对植物生长至关重要。

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