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首页> 外文期刊>The Plant Cell >The Arabidopsis nitrate transporter NRT1.7, expressed in phloem, is responsible for source-to-sink remobilization of nitrate.
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The Arabidopsis nitrate transporter NRT1.7, expressed in phloem, is responsible for source-to-sink remobilization of nitrate.

机译:韧皮部中表达的拟南芥硝酸盐转运蛋白NRT1.7负责硝酸盐的源到库转移。

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摘要

Several quantitative trait locus analyses have suggested that grain yield and nitrogen use efficiency are well correlated with nitrate storage capacity and efficient remobilization. This study of the Arabidopsis thaliana nitrate transporter NRT1.7 provides new insights into nitrate remobilization. Immunoblots, quantitative RT-PCR, beta -glucuronidase reporter analysis, and immunolocalization indicated that NRT1.7 is expressed in the phloem of the leaf minor vein and that its expression levels increase coincidentally with the source strength of the leaf. In nrt1.7 mutants, more nitrate was present in the older leaves, less 15NO3- spotted on old leaves was remobilized into N-demanding tissues, and less nitrate was detected in the phloem exudates of old leaves. These data indicate that NRT1.7 is responsible for phloem loading of nitrate in the source leaf to allow nitrate transport out of older leaves and into younger leaves. Interestingly, nrt1.7 mutants showed growth retardation when external nitrogen was depleted. We conclude that (1) nitrate itself, in addition to organic forms of nitrogen, is remobilized, (2) nitrate remobilization is important to sustain vigorous growth during nitrogen deficiency, and (3) source-to-sink remobilization of nitrate is mediated by phloem.
机译:几个数量性状基因座分析表明,谷物的产量和氮的利用效率与硝酸盐的储存能力和有效的转运紧密相关。拟南芥硝酸盐转运蛋白NRT1.7的这项研究为硝酸盐的固定提供了新的见解。免疫印迹,定量RT-PCR,β-葡萄糖醛酸苷酶报道基因分析和免疫定位结果表明, NRT1.7 在叶片次要静脉的韧皮部中表达,并且其表达水平随其来源强度的增加而增加。叶。在 nrt1.7 突变体中,较老的叶片中存在较多的硝酸盐,而在其上发现的 15 NO 3 -较少将老叶子重新固定在需要氮的组织中,并且在老叶子的韧皮部分泌物中检测到较少的硝酸盐。这些数据表明,NRT1.7负责源叶中硝酸盐的韧皮部负载,从而允许硝酸盐转运出老叶并进入年轻叶。有趣的是, nrt1.7 突变体在外部氮耗尽时显示出生长迟缓。我们得出的结论是:(1)除了有机形式的氮之外,硝酸盐本身也被迁移,(2)硝酸盐迁移对于维持氮缺乏期间的旺盛生长很重要,(3)硝酸盐的源到汇迁移是由以下物质介导的:韧皮部。

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