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过量表达 可通过提高烟草()根系的富集能力来增加叶片钾含量。

Overexpression of increases leaf potassium content by improving enrichment capacity in tobacco () roots.

机构信息

College of Tobacco Science, Henan Agricultural University, Zhengzhou 45002, China.

Pingliang Agricultural Technology Extension Station, Pingliang 744000, China.

出版信息

Funct Plant Biol. 2024 Nov;51. doi: 10.1071/FP24144.

Abstract

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 .

摘要

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。

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