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Genome-Wide Identification and Expression Profiling of Monosaccharide Transporter Genes Associated with High Harvest Index Values in Rapeseed (Brassica napus L.)

机译:油菜籽(甘蓝型油菜)中与高收获指数相关的单糖转运蛋白基因的全基因组鉴定和表达谱分析

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摘要

Sugars are important throughout a plant’s lifecycle. Monosaccharide transporters (MST) are essential sugar transporters that have been identified in many plants, but little is known about the evolution or functions of MST genes in rapeseed ( ). In this study, we identified 175 MST genes in , 87 in , and 83 in . These genes were separated into the sugar transport protein (STP), polyol transporter (PLT), vacuolar glucose transporter (VGT), tonoplast monosaccharide transporter (TMT), inositol transporter (INT), plastidic glucose transporter (pGlcT), and ERD6-like subfamilies, respectively. Phylogenetic and syntenic analysis indicated that gene redundancy and gene elimination have commonly occurred in species during polyploidization. Changes in exon-intron structures during evolution likely resulted in the differences in coding regions, expression patterns, and functions seen among genes. In total, 31 differentially expressed genes (DEGs) were identified through RNA-seq among materials with high and low harvest index (HI) values, which were divided into two categories based on the qRT-PCR results, expressed more highly in source or sink organs. We finally identified four genes, including , , , and , which might be involved in monosaccharide uptake or unloading and further affect the HI of rapeseed. These findings provide fundamental information about MST genes in and reveal the importance of genes to high HI in
机译:糖在植物的整个生命周期中都很重要。单糖转运蛋白(MST)是已在许多植物中鉴定出的必需糖转运蛋白,但对于油菜籽中MST基因的进化或功能知之甚少()。在这项研究中,我们确定了175个MST基因,87个中的基因和83个中的基因。这些基因被分为糖转运蛋白(STP),多元醇转运蛋白(PLT),液泡葡萄糖转运蛋白(VGT),液泡单糖转运蛋白(TMT),肌醇转运蛋白(INT),质体葡萄糖转运蛋白(pGlcT)和ERD6-like亚科。系统发育和同系分析表明,多倍体化过程中物种普遍发生基因冗余和基因消除。进化过程中外显子-内含子结构的变化可能导致基因之间编码区,表达模式和功能的差异。共有31种差异表达基因(DEGs)通过RNA-seq在高和低收获指数(HI)值的材料中鉴定,根据qRT-PCR结果分为两类,在源或汇中表达更高器官。我们最终确定了四个基因,包括,,和,这些基因可能与单糖的摄取或卸载有关,并进一步影响油菜的HI。这些发现提供了有关MST基因的基本信息,并揭示了基因对高HI的重要性。

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