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首页> 外文期刊>Horticulture,Environment,and Biotechnology >Characterization and expression analysis of BcAMT1;4, an ammonium transporter gene in flowering Chinese cabbage
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Characterization and expression analysis of BcAMT1;4, an ammonium transporter gene in flowering Chinese cabbage

机译:BCAMT1的表征及表达分析; 4,开花大白菜中的铵转运蛋白

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Ammonium (NH4+) is generated during many endogenous metabolic processes in the leaves of plants, and there is increasing evidence that ammonium transporters (AMTs) play important roles in NH4+ transmembrane transport and distribution. However, the expression of different AMT genes is tissue-type specific and their functions differ. Information about AMT genes and their expression under different environmental conditions in flowering Chinese cabbage (Brassica campestris L.) is currently limited. Here, we isolated and characterized an AMT gene, BcAMT1;4, in flowering Chinese cabbage. BcAMT1;4 was localized to the plasma membrane and complemented NH4+ transport in NH4+ uptake-deficient yeast. The highest expression levels of BcAMT1;4 were detected in the flowers and leaves of flowering Chinese cabbage. The expression of BcAMT1;4 was induced by nitrogen deficiency and significantly inhibited by the reapplication of NH4+ (NH4Cl or NH4NO3). In contrast, when plants pre-cultured in nitrate were transferred to an NH4+ nutrient solution, BcAMT1;4 expression was significantly enhanced. BcAMT1;4 exhibited a diurnal expression pattern, with higher expression levels during the light period than during the dark period, and a peak expression at the later stage of the light period. Knowledge of AMT genes in flowering Chinese cabbage will lay a foundation for enhancing our understanding of the functional roles of different AMT members in the regulation of its growth by NH4+, as BcAMT1;4 seems to play an important role in leaf NH4+ transport.
机译:在植物叶片中的许多内源代谢过程中产生铵(NH4 +),并且越来越多的证据表明铵转运蛋白(AMTs)在NH4 +跨膜运输和分布中起重要作用。然而,不同AMT基因的表达是特定的组织类型,其功能不同。目前有限,有关在开花大白菜(Brassica Campestris L.)中不同环境条件下的AMT基因及其表达的信息。在这里,我们被隔离并表征了AMT基因,BCAMT1; 4,在开花大白菜中。 Bcamt1; 4局部地定位于血浆膜中,并在NH4 +摄取缺陷酵母中互补NH4 +转运。 BCAMT1的最高表达水平;在花大白菜的花和叶子中检测到4。 BCAMT1; 4的表达被氮缺乏诱导,并通过NH 4 +(NH 4 Cl或NH 4 NH 4)的重复而显着抑制。相反,当在硝酸盐中预先培养的植物转移到NH 4 +营养溶液中时,BCAMT1; 4表达明显增强。 BCAMT1; 4表现出昼夜表达模式,在光周期期间具有更高的表达水平,并且在暗时段期间,在光周期的后期峰值表达。开花中大白菜中的AMT基因的知识将为加强我们对NH4 +在其生长调节中的不同AMT成员的功能作用的理解,作为BCAMT1; 4似乎在叶NH4 +运输中发挥着重要作用。

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