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首页> 外文期刊>Planta >Boron deficiency decreases plasmalemma H+-ATPase expression and nitrate uptake, and promotes ammonium assimilation into asparagine in tobacco roots
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Boron deficiency decreases plasmalemma H+-ATPase expression and nitrate uptake, and promotes ammonium assimilation into asparagine in tobacco roots

机译:硼缺乏降低了烟草根系中质膜H + -ATPase的表达和硝酸盐的吸收,并促进铵同化为天冬酰胺。

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The effects of short-term boron deficiency on several aspects (growth, biomass allocation, metabolite concentrations, gene expression, enzyme activities) related with nitrate assimilation were studied in tobacco (Nicotiana tabacum L.) plants in order to know the early changes caused by this mineral deficiency. For this purpose, plants were grown hydroponically in a nutrient solution supplemented with 10 μM boron and then transferred to a boron-free medium for 1–5 days. Nitrate concentration decreased in both leaves and roots under boron deficiency, which was not observed in control plants. This correlated with the lower net nitrate uptake rate found in boron-deficient plants when compared to boron-sufficient ones. Results suggest that boron deficiency decreases net nitrate uptake by declining the activity of nitrate transporters rather than affecting their transcript levels. This is supported by a drop in the levels of root PMA2 transcript during the boron deficient treatment, which could lead to a decrease in the plasma membrane H+-ATPase activity necessary to get protons out of cell for the cotransport with nitrate inwards. In addition, boron deficiency led to an increase in root Asn content and a decline in glutamine synthetase activity when compared to control plants, which suggest that this mineral deficiency may promote ammonium assimilation via asparagine synthetase in tobacco roots.
机译:为了研究由烟草引起的早期变化,研究了短期硼缺乏对与烟草硝酸盐吸收有关的几个方面(生长,生物量分配,代谢产物浓度,基因表达,酶活性)的影响。这种矿物质缺乏症。为此,使植物在补充有10μM硼的营养液中水培生长,然后转移到无硼培养基中1-5天。在缺硼条件下,叶片和根部的硝酸盐浓度均下降,而对照植物中未观察到。与硼充足的植物相比,这与缺硼植物中较低的净硝酸盐吸收率有关。结果表明,硼缺乏通过降低硝酸盐转运蛋白的活性而不是影响其转录水平来降低硝酸盐的净吸收。硼缺乏处理期间根部PMA2转录物水平的下降支持了这一点,这可能导致质子从质子中脱出以便与硝酸盐共转运进入细胞所需的质膜H + -ATPase活性降低。 。另外,与对照植物相比,硼缺乏导致根部Asn含量增加和谷氨酰胺合成酶活性下降,这表明这种矿物质缺乏可能促进烟草根中通过天冬酰胺合成酶的铵同化作用。

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