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鉴定玉米基因组中的 SPX 家族基因及其在不同磷条件下的表达。

Identification of SPX family genes in the maize genome and their expression under different phosphate regimes.

机构信息

Collaborative Innovation Center of Henan Grain Crops / State Key Laboratory of Wheat and Maize Crop Science, College of Life Sciences, Henan Agricultural University, Zhengzhou, 450002, China.

College of Resource and Environment, Henan Agricultural University, Zhengzhou, 450002, China.

出版信息

Plant Physiol Biochem. 2021 Nov;168:211-220. doi: 10.1016/j.plaphy.2021.09.045. Epub 2021 Oct 6.

Abstract

Many studies have revealed that SPX (SYG1/Pho81/XPR1) family genes play a key role in signal transduction related to phosphorus (P) deficiency in plants. Here, we identified 33 SPX gene family members in maize through genome-wide analysis and classified them into 4 subfamilies according to SPX structural characteristics (SPX, SPX-MFS, SPX-EXS and SPX-RING). The promoter regions of ZmSPXs are rich in biotic/abiotic-related stress elements. The quantitative real-time PCR analysis of 33 ZmSPXs revealed that all members except for ZmSPX3 of the SPX subfamily were significantly induced under P-deficient conditions, especially ZmSPX4.1 and ZmSPX4.2, which showed strong responses to low P stress and exhibited remarkably different expression patterns in low Pi sensitive and insensitive cultivars of maize. These results suggested that the SPX subfamily might play pivotal roles in P stress sensing and response. Experimental observations of subcellular localization in maize protoplasts indicated the following results, implying multiple roles in cell metabolism: ZmSPX2, ZmSPX5 and ZmSPX6 localized in the nucleus; ZmSPX1 and ZmSPX3 localized in the nucleus and cytoplasm; and ZmSPX4.2 localized in the chloroplast. A Y2H assay suggested that ZmPHR1 could interact with ZmSPX3, ZmSPX4.2, ZmSPX5, and ZmSPX6, indicating the involvement of these proteins in the P stress response in a ZmPHR1-mediated manner.

摘要

许多研究表明,SPX(SYG1/Pho81/XPR1)家族基因在植物磷(P)缺乏相关的信号转导中发挥关键作用。在这里,我们通过全基因组分析鉴定了玉米中的 33 个 SPX 基因家族成员,并根据 SPX 结构特征将它们分为 4 个亚家族(SPX、SPX-MFS、SPX-EXS 和 SPX-RING)。ZmSPXs 的启动子区域富含生物/非生物相关胁迫元件。对 33 个 ZmSPXs 的定量实时 PCR 分析表明,除 SPX 亚家族的 ZmSPX3 外,所有成员在缺磷条件下均显著诱导,尤其是 ZmSPX4.1 和 ZmSPX4.2,它们对低磷胁迫有强烈反应,并在玉米低 Pi 敏感和不敏感品种中表现出明显不同的表达模式。这些结果表明,SPX 亚家族可能在 P 胁迫感应和响应中发挥关键作用。在玉米原生质体中的亚细胞定位实验观察结果表明,它们在细胞代谢中具有多种作用:ZmSPX2、ZmSPX5 和 ZmSPX6 定位于细胞核;ZmSPX1 和 ZmSPX3 定位于细胞核和细胞质;而 ZmSPX4.2 定位于叶绿体。Y2H 测定表明,ZmPHR1 可以与 ZmSPX3、ZmSPX4.2、ZmSPX5 和 ZmSPX6 相互作用,表明这些蛋白参与了 ZmPHR1 介导的 P 胁迫响应。

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