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首页> 外文期刊>Progress in Artificial Intelligence >Gene Expression Pattern of Vacuolar-Iron Transporter-Like (VTL) Genes in Hexaploid Wheat during Metal Stress
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Gene Expression Pattern of Vacuolar-Iron Transporter-Like (VTL) Genes in Hexaploid Wheat during Metal Stress

机译:金属应激期间六倍体麦麦磷酸铁转运蛋白样(VTL)基因的基因表达模式

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摘要

Iron is one of the important micronutrients that is required for crop productivity and yield-related traits. To address the Fe homeostasis in crop plants, multiple transporters belonging to the category of major facilitator superfamily are being explored. In this direction, earlier vacuolar iron transporters (VITs) have been reported and characterized functionally to address biofortification in cereal crops. In the present study, the identification and characterization of new members of vacuolar iron transporter-like proteins (VTL) was performed in wheat. Phylogenetic distribution demonstrated distinct clustering of the identified VTL genes from the previously known VIT genes. Our analysis identifies multiple VTL genes from hexaploid wheat with the highest number genes localized on chromosome 2. Quantitative expression analysis suggests that most of the VTL genes are induced mostly during the Fe surplus condition, thereby reinforcing their role in metal homeostasis. Interestingly, most of the wheat VTL genes were also significantly up-regulated in a tissue-specific manner under Zn, Mn and Cu deficiency. Although, no significant changes in expression of wheat VTL genes were observed in roots under heavy metals, but TaVTL2, TaVTL3 and TaVTL5 were upregulated in the presence of cobalt stress. Overall, this work deals with the detailed characterization of wheat VTL genes that could provide an important genetic framework for addressing metal homeostasis in bread wheat.
机译:铁是作物生产力和产量相关性状所需的重要微量营养素之一。为了解决农作物植物中的Fe Socostasis,正在探讨属于主要促进者超家族类别的多个运输商。在该方向上,已经报道了早期的真空铁转运蛋白(VITS),并在功能上进行了功能,以解决谷物作物中的生物侵蚀。在本研究中,在小麦中进行真空铁转运蛋白样蛋白(VTL)的新成员的鉴定和表征。系统发育分布证明了所鉴定的VTL基因与先前已知的VIT基因的不同聚类。我们的分析将六倍体小麦的多个VTL基因鉴定,具有染色体的最高数量的基因2.定量表达分析表明,大多数VTL基因主要在Fe剩余条件下诱导,从而加强其在金属稳态中的作用。有趣的是,大多数小麦VTL基因在Zn,Mn和Cu缺乏下也以组织特异性的方式显着上调。虽然,在重金属的根部下没有观察到小麦VTL基因表达的显着变化,但在钴胁迫下,在存在钴胁迫下进行TavT12,TavT13和TavT15。总体而言,这项工作涉及小麦VTL基因的详细表征,可以为在面包小麦中寻址金属稳态的重要遗传框架。

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