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在番茄果实中,苹果己糖转运蛋白 MdHT2.2 的异源表达会随着细胞壁转化酶活性的增加而改变糖浓度。

Heterologous expression of the apple hexose transporter MdHT2.2 altered sugar concentration with increasing cell wall invertase activity in tomato fruit.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas/College of Horticulture/Shaanxi Key Laboratory of Apple, Northwest A&F University, Yangling, Shaanxi, China.

Hybrid Rape Research Center of Shaanxi Province, Yangling, China.

出版信息

Plant Biotechnol J. 2020 Feb;18(2):540-552. doi: 10.1111/pbi.13222. Epub 2019 Aug 17.

Abstract

Sugar transporters are necessary to transfer hexose from cell wall spaces into parenchyma cells to boost hexose accumulation to high concentrations in fruit. Here, we have identified an apple hexose transporter (HTs), MdHT2.2, located in the plasma membrane, which is highly expressed in mature fruit. In a yeast system, the MdHT2.2 protein exhibited high C-fructose and C-glucose transport activity. In transgenic tomato heterologously expressing MdHT2.2, the levels of both fructose and glucose increased significantly in mature fruit, with sugar being unloaded via the apoplastic pathway, but the level of sucrose decreased significantly. Analysis of enzyme activity and the expression of genes related to sugar metabolism and transport revealed greatly up-regulated expression of SlLIN5, a key gene encoding cell wall invertase (CWINV), as well as increased CWINV activity in tomatoes transformed with MdHT2.2. Moreover, the levels of fructose, glucose and sucrose recovered nearly to those of the wild type in the sllin5-edited mutant of the MdHT2.2-expressing lines. However, the overexpression of MdHT2.2 decreased hexose levels and increased sucrose levels in mature leaves and young fruit, suggesting that the response pathway for the apoplastic hexose signal differs among tomato tissues. The present study identifies a new HTs in apple that is able to take up fructose and glucose into cells and confirms that the apoplastic hexose levels regulated by HT controls CWINV activity to alter carbohydrate partitioning and sugar content.

摘要

糖转运蛋白对于将己糖从细胞壁间隙转移到质体细胞中以将己糖积累到果实中的高浓度是必要的。在这里,我们鉴定了一种位于质膜中的苹果己糖转运蛋白(HTs)MdHT2.2,该蛋白在成熟果实中高度表达。在酵母系统中,MdHT2.2 蛋白表现出对 C-果糖和 C-葡萄糖的高转运活性。在异源表达 MdHT2.2 的转基因番茄中,成熟果实中的果糖和葡萄糖水平显著增加,糖通过质外体途径卸载,但蔗糖水平显著降低。对糖代谢和转运相关基因的酶活性和表达分析表明,SlLIN5(编码细胞壁转化酶(CWINV)的关键基因)的表达显著上调,以及 MdHT2.2 转化的番茄中 CWINV 活性增加。此外,在 MdHT2.2 表达系的 sllin5 编辑突变体中,果糖、葡萄糖和蔗糖的水平几乎恢复到野生型水平。然而,MdHT2.2 的过表达降低了成熟叶片和幼果中的己糖水平并增加了蔗糖水平,表明质外体己糖信号的响应途径在番茄组织之间存在差异。本研究鉴定了苹果中的一种新的 HTs,它能够将果糖和葡萄糖摄取到细胞中,并证实由 HT 调节的质外体己糖水平控制 CWINV 活性以改变碳水化合物分配和糖含量。

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