College of Tobacco Science, Henan Agricultural University, Zhengzhou 45002, China.
Pingliang Agricultural Technology Extension Station, Pingliang 744000, China.
Funct Plant Biol. 2024 Nov;51. doi: 10.1071/FP24144.
The NHX1 gene encodes a Na+ /H+ antiporter located in the tonoplast membrane, which plays critical role in regulating plant salt tolerance. It is also involved in the uptake and accumulation of K in plants; however, its precise mechanism is unknown. In this research, we elucidated the physiological basis underlying the increases in K content induced by NHX1 . We evaluated main agronomic traits, leaf K content, K+ uptake kinetics, and root morphological and physiological characteristics from field-planted and hydroponic plants. We included a wild-type tobacco (Nicotiana tabacum ) variety (K326) and three transgenic tobacco lines (NK7, NK9, NK10) that overexpress AtNHX1 from Arabidopsis thaliana . Results demonstrated that the agronomic performance of the AtNHX1 -overexpressing tobacco lines was similar to K326 in field and hydroponic settings. The three AtNHX1 -overexpressing tobacco lines had significantly higher leaf K contents than K326. Under hydroponic condition, enhanced K uptake capacity and a larger maximum K uptake rate were seen in AtNHX1 -overexpressing tobacco lines. AtNHX1 -overexpressing lines also exhibited significantly superior root morphological and physiological traits relative to K326, including root biomass, root volume, absorption area, root activity, cation exchange capacity, soluble protein content, and H+ -ATPase activity. Overexpression of AtNHX1 in tobacco significantly improves the K uptake and accumulation. Therefore, leaf K content greatly increased in these transgenic lines in the end. Our findings strongly suggest that AtNHX1 overexpression increased leaf K content by boosting the capacity of enriching K in tobacco roots, thereby advancing the understanding of the function of AtNHX1 .
NHX1 基因编码位于液泡膜上的 Na+/H+ 反向转运蛋白,在调节植物耐盐性方面发挥着关键作用。它还参与植物中 K 的吸收和积累;然而,其确切的机制尚不清楚。在这项研究中,我们阐明了 NHX1 引起的 K 含量增加的生理基础。我们评估了田间种植和水培植物的主要农艺性状、叶片 K 含量、K+吸收动力学以及根形态和生理特性。我们包括了一个野生型烟草(Nicotiana tabacum)品种(K326)和三个过表达拟南芥 AtNHX1 的烟草转基因系(NK7、NK9、NK10)。结果表明,AtNHX1 过表达烟草系的农艺表现与田间和水培条件下的 K326 相似。三个 AtNHX1 过表达烟草系的叶片 K 含量明显高于 K326。在水培条件下,AtNHX1 过表达烟草系的 K 吸收能力增强,最大 K 吸收速率增大。AtNHX1 过表达系还表现出明显优于 K326 的根形态和生理特性,包括根生物量、根体积、吸收面积、根活力、阳离子交换容量、可溶性蛋白含量和 H+-ATP 酶活性。烟草中 AtNHX1 的过表达显著提高了 K 的吸收和积累。因此,这些转基因系的叶片 K 含量最终大大增加。我们的研究结果强烈表明,AtNHX1 的过表达通过增强烟草根系富集 K 的能力增加了叶片 K 含量,从而加深了对 AtNHX1 功能的理解。