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研究 PIC1(叶绿体透性酶 1)基因在铁稳态中的作用:番茄和高粱中的生物信息学和表达分析。

Investigation of PIC1 (permease in chloroplasts 1) gene's role in iron homeostasis: bioinformatics and expression analyses in tomato and sorghum.

机构信息

Department of Crop and Animal Production, Cilimli Vocational School, Duzce University, 81750, Duzce, Cilimli, Turkey.

Department of Agricultural Biotechnology, Akdeniz University, Antalya, Turkey.

出版信息

Biometals. 2020 Feb;33(1):29-44. doi: 10.1007/s10534-019-00228-x. Epub 2019 Dec 4.

Abstract

Iron (Fe) is a crucial micronutrient in plant metabolism; thus, iron homeostasis is critical for plant development. Permease in chloroplast 1 (PIC1) is the first protein determined in the chloroplast playing a role iron homeostasis. In the present study, the PIC1 gene was investigated at a genome-wide scale in four plant genomes; Arabidopsis, tomato, maize and sorghum. Based on the gene ontology database, 21 GO terms were found related to the PIC1 gene, most of which were involved in iron hemostasis and transport. The digital expression data revealed that the expression of the majority of PIC1 genes (62.5%) in Arabidopsis decreased under abiotic stress conditions. Expression profiles of tomato PIC1 (SlPIC1) and sorghum PIC1 (SbPIC1) genes were also analyzed under salt and drought stress conditions using Real Time-quantitative PCR (RT-qPCR). Our wet-lab studies demonstrated that the SbPIC1 gene was down-regulated under salt and drought stresses in all tissues, while SlPIC1 was up-regulated in all but root tissue under drought stress. Some structural variations were detected in predicted 3D structures of PIC1 proteins and the structural similarity values varied between 0.23 and 0.35. Consequently, these results may contribute to the understanding of the PIC1 gene in iron transport and homeostasis in plants.

摘要

铁(Fe)是植物代谢中的一种重要微量元素;因此,铁平衡对于植物的发育至关重要。质体渗透酶 1(PIC1)是第一个在叶绿体中确定的在铁平衡中发挥作用的蛋白质。在本研究中,在四个植物基因组(拟南芥、番茄、玉米和高粱)中从全基因组规模上研究了 PIC1 基因。根据基因本体数据库,发现与 PIC1 基因相关的 21 个 GO 术语,其中大多数与铁平衡和运输有关。数字表达数据显示,拟南芥中大多数 PIC1 基因(62.5%)的表达在非生物胁迫条件下降低。使用实时定量 PCR(RT-qPCR)还分析了番茄 PIC1(SlPIC1)和高粱 PIC1(SbPIC1)基因在盐和干旱胁迫下的表达谱。我们的实验室研究表明,SbPIC1 基因在所有组织中都受到盐和干旱胁迫的下调,而 SlPIC1 基因在除根组织外的所有组织中都受到干旱胁迫的上调。在 PIC1 蛋白的预测 3D 结构中检测到一些结构变异,结构相似性值在 0.23 到 0.35 之间变化。因此,这些结果可能有助于理解 PIC1 基因在植物铁运输和平衡中的作用。

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