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首页> 外文期刊>Scientific reports. >Disruption of the rice nitrate transporter OsNPF2.2 hinders root-to-shoot nitrate transport and vascular development
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Disruption of the rice nitrate transporter OsNPF2.2 hinders root-to-shoot nitrate transport and vascular development

机译:水稻硝酸盐转运蛋白的破坏OSNPF2.2阻碍了根到硝酸盐的硝酸盐输送和血管发育

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摘要

Plants have evolved to express some members of the nitrate transporter 1/peptide transporter family ( NPF ) to uptake and transport nitrate. However, little is known of the physiological and functional roles of this family in rice ( Oryza sativa L.). Here, we characterized the vascular specific transporter OsNPF2.2. Functional analysis using cDNA-injected Xenopus laevis oocytes revealed that OsNPF2.2 is a low-affinity, pH-dependent nitrate transporter. Use of a green fluorescent protein tagged OsNPF2.2 showed that the transporter is located in the plasma membrane in the rice protoplast. Expression analysis showed that OsNPF2.2 is nitrate inducible and is mainly expressed in parenchyma cells around the xylem. Disruption of OsNPF2.2 increased nitrate concentration in the shoot xylem exudate when nitrate was supplied after a deprivation period; this result suggests that OsNPF2.2 may participate in unloading nitrate from the xylem. Under steady-state nitrate supply, the osnpf2.2 mutants maintained high levels of nitrate in the roots and low shoot:root nitrate ratios; this observation suggests that OsNPF2.2 is involved in root-to-shoot nitrate transport. Mutation of OsNPF2.2 also caused abnormal vasculature and retarded plant growth and development. Our findings demonstrate that OsNPF2.2 can unload nitrate from the xylem to affect the root-to-shoot nitrate transport and plant development.
机译:植物已经进化以表达硝酸盐转运蛋白1 /肽转运蛋白(NPF)的一些成员,以吸收和运输硝酸盐。然而,众所周知,这个家庭在水稻中的生理和功能作用(Oryza sativa L.)。在这里,我们表征了血管特异性转运蛋白酶OSNPF2.2。使用cDNA注射的外爪蟾卵母细胞的功能性分析显示OSNPF2.2是低亲和力,pH依赖性硝酸盐转运蛋白。使用绿色荧光蛋白标记的OSNPF2.2表明,转运蛋白位于水稻原生质体中的血浆膜中。表达分析表明,OSNPF2.2是硝酸盐诱导,主要在木质炎周围的薄壁组织细胞中表达。在剥夺期后硝酸盐供水时,OSNPF2.2的破坏增加了芽木质渗出物中的硝酸盐浓度;该结果表明,OSNPF2.2可以参与从木耳卸载硝酸盐。在稳态硝酸盐供应下,OSNPF2.2突变体在根系中保持高水平的硝酸盐和低芽:根硝酸盐比;该观察结果表明OSNPF2.2涉及根到硝酸盐运输。 OSNPF2.2的突变也引起了异常的血管系统和延迟植物生长和发育。我们的调查结果表明,OSNPF2.2可以从木质中卸下硝酸盐,以影响根到硝酸盐运输和植物发育。

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