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首页> 外文期刊>Planta: An International Journal of Plant Biology >Ammonium transport and CitAMT1 expression are regulated by N in Citrus plants
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Ammonium transport and CitAMT1 expression are regulated by N in Citrus plants

机译:氮在柑橘类植物中的转运和CitAMT1表达受到N的调节

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Citrus seedlings (Citrus sinensis L. Osbeck x Poncirus trifoliata Blanco) were used to describe the effects of different N treatments on the NH4 (+) influx mediated by high- and low-affinity transport systems (HATS and LATS, respectively) and CitAMT1 gene expression. Results show that Citrus plants favor NH4 (+) over NO3 (-) influx mediated by HATS and LATS when both N sources are present in the nutrient solution and Citrus plants display a much higher capacity to take up NH4 (+) than NO3 (-). Furthermore, NH4 (+) exerts a regulatory effect on NH4 (+) HATS activity and CitAMT1 expression, both are down-regulated by high N status of the plant, but specifically stimulated by NH4 (+) and the balance between these two opposite effects depends on the prior nutrition regime of the plant. On the other hand, supply of NO3 (-) inhibits CitAMT1 expression but doesn't affect NH4 (+) HATS activity on the roots. To explain this discrepancy, it is possible that other CitAMT1 transporters, up-regulated by N limitation, but not repressed by NO3 (-) could be involved in the stimulation of NH4 (+) HATS activity under pure NO3 (-) nutrition or CitAMT1 transporter could be regulated at the post-transcriptional level.
机译:柑橘幼苗(Citrus sinensis L. Osbeck x Poncirus trifoliata Blanco)用于描述不同氮处理对高亲和力和低亲和力转运系统(分别是HATS和LATS)和CitAMT1基因介导的NH4(+)流入的影响。表达。结果表明,当营养液中同时存在两种氮源时,柑橘类植物比HATS和LATS介导的NO3(-)流入更喜欢NH4(+),而柑橘类植物的吸收NH4(+)的能力比NO3(-)高得多。 )。此外,NH4(+)对NH4(+)的HATS活性和CitAMT1表达有调节作用,两者均受植物高氮状态下调,但受到NH4(+)的特异性刺激以及这两种相反作用之间的平衡取决于植物先前的营养状况。另一方面,NO3(-)的供应会抑制CitAMT1表达,但不会影响根部的NH4(+)HATS活性。为了解释这种差异,可能是其他CitAMT1转运蛋白(受N限制上调,但未被NO3(-)抑制)可能与纯NO3(-)营养或CitAMT1刺激NH4(+)HATS活性有关。转运蛋白可以在转录后水平进行调控。

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