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HKT1 基因调控整株植物的 K 状态可提高转基因烟草植株的耐盐性。

AtHKT1 gene regulating K state in whole plant improves salt tolerance in transgenic tobacco plants.

机构信息

Gansu Provincial Key Laboratory of Aridland Crop Science, Gansu Key Laboratory of Crop Genetic and Germplasm Enhancement, Gansu Agricultural University, Lanzhou, 730070, China.

College of Life Science and Technology, Gansu Agricultural University, Lanzhou, 730070, China.

出版信息

Sci Rep. 2018 Nov 8;8(1):16585. doi: 10.1038/s41598-018-34660-9.

Abstract

The status of K is important for plant health. However, little is known about if high-affinity potassium transporter HKTs may help K retention under salt stress. Here, we determined the effect of Arabidopsis thaliana transporter gene (AtHKT1) on the K status, Na-induced toxicity, and salt tolerance in tobacco (Nicotiana tabacum L.). Six AtHKT1 transformed tobacco lines (T1, T2, … T6) were contrasted with a non-transgenic plantlet at the whole-plant and molecule levels. AtHKT1 gene was expressed in the xylems of stem, root and leaf vein in the transgenic tobacco, with the line T3 having highest expression. At Day 15, in the 200 mmol L NaCl stress treatment, the transgenic plants remained a healthy K status, while the control plants decreased K content by 70% and Na contents in leaves and stems were 1.7 times that in the transgenic line. The AtHKT1 expression enhanced the activities of SOD, CAT and POD, raised chlorophyll and soluble sugar contents and root activity, and decreased MDA and proline contents and electrolyte leakage destruction. The constitutive over-expression of AtHKT1 that helps maintain a healthy K status while reducing Na toxicity may serve as a possible mechanism in maximizing productivity of tobacco under salt stress.

摘要

钾元素的状态对植物的健康很重要。然而,目前还不清楚高亲和钾转运蛋白 HKT 是否有助于植物在盐胁迫下保持钾元素。在这里,我们研究了拟南芥转运蛋白基因(AtHKT1)对烟草(Nicotiana tabacum L.)中钾状态、钠诱导毒性和耐盐性的影响。我们将 6 个 AtHKT1 转化的烟草株系(T1、T2、…、T6)与非转基因的烟草苗在全株和分子水平上进行了对比。AtHKT1 基因在转基因烟草的茎木质部、根和叶脉中表达,其中株系 T3 的表达水平最高。在第 15 天,在 200 mmol/L NaCl 胁迫处理下,转基因植株保持了健康的钾元素状态,而对照植株的钾元素含量下降了 70%,叶片和茎中的钠元素含量是转基因株系的 1.7 倍。AtHKT1 的表达增强了 SOD、CAT 和 POD 的活性,提高了叶绿素和可溶性糖的含量以及根的活力,降低了 MDA 和脯氨酸的含量以及电解质泄漏的破坏。AtHKT1 的组成型过表达有助于维持健康的钾元素状态,同时降低钠毒性,这可能是在盐胁迫下最大限度地提高烟草生产力的一种可能机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a787/6224463/2af0a2a4cf87/41598_2018_34660_Fig1_HTML.jpg

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