首页> 外文期刊>Planta: An International Journal of Plant Biology >Nitrate assimilation in the forage legume Lotus japonieus L.
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Nitrate assimilation in the forage legume Lotus japonieus L.

机译:饲用豆科植物莲花japonieus L中的硝酸盐吸收。

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摘要

Nitrate assimilation In the model legume, Lotus japonicus, has been investigated using a variety of approaches. A gene encoding a nitrate-inducible nitrate reductase (NR) has been cloned and appears to be the only NR gene present in the genome. Most of the nitrate reductase activity (NRA) IS found in the roots and the plant assimilates the bulk of its nitrogen in that tissue. We calculate that the observed rates of nitrate reduction are compatible with the growth requirement for reduced nitrogen. The NR mRNA, NRA and the nitrate content do not show a strong diurnal rhythm in the roots and assimilation continues during the dark period although export of assimilated N to the shoot is lower during this time. In shoots, the previous low NR activity may be further Inactivated during the dark either by a phosphorylation mechanism or due to reduced nitrate flux coincident with a decreased delivery through the transpiration stream. From nitrate-sufficient conditions, the removal of nitrate from the external medium causes a rapid drop In hydraulic conductivity and a decline in nitrate and reduced-N export. Root nitrate content, NR and nitrate transporter (NRT2) mRNA decline over a period of 2 days to barely detectable levels. On resupply, a coordinated increase of NR and NRT2 mRNA, and NRA is seen within hours.
机译:硝酸盐同化在豆科植物日本莲花模型中,已使用多种方法进行了研究。编码硝酸盐诱导型硝酸盐还原酶(NR)的基因已被克隆,似乎是基因组中唯一的NR基因。大部分硝酸还原酶活性(NRA)存在于根中,植物吸收了该组织中的大部分氮。我们计算得出,所观察到的硝酸盐还原速率与还原氮的生长要求相容。 NR mRNA,NRA和硝酸盐含量在根部没有显示出强烈的昼夜节律,并且在黑暗时期,同化继续进行,尽管在这段时间内同化N的出口量较低。在芽中,先前的低NR活性可能在黑暗期间通过磷酸化机制或由于硝酸盐通量降低(与通过蒸腾流的传递减少)而进一步失活。在硝酸盐充足的条件下,从外部介质中除去硝酸盐会导致水力传导率迅速下降,硝酸盐含量下降,氮输出减少。根硝酸盐含量,NR和硝酸盐转运蛋白(NRT2)mRNA在2天的时间内下降到几乎无法检测到的水平。重新补给后,可以在数小时内看到NR和NRT2 mRNA和NRA的协同增加。

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