School of Life Science, Anhui Agricultural University, Hefei, 230036, China.
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, 200240, China.
Plant Cell Rep. 2024 Apr 8;43(5):114. doi: 10.1007/s00299-024-03195-x.
SmZHDs was highly expressed in anthocyanin-rich parts of eggplant. SmZHD12 can activate the expression of SmCHS, SmANS, SmDFR and SmF3H. Overexpression of SmZHD12 promotes anthocyanin biosynthesis in Arabidopsis. The Zinc finger-homeodomain (ZHD) proteins family genes are known to play a significant role in plant development and physiological processes. However, the evolutionary history and function of the ZHD gene family in eggplant remain largely unexplored. This study categorizes a total of 15 SmZHD genes into SmMIF and SmZHD subfamilies based on conserved domains. The phylogeny, gene structure, conserved motifs, promoter elements, and chromosomal locations of the SmZHD genes were comprehensively analyzed. Tissue expression profiles indicate that the majority of SmZHD genes are expressed in anthocyanin-rich areas. qRT-PCR assays revealed distinct expression patterns of SmZHD genes in response to various treatments, indicating their potential involvement in multiple signaling pathways. Analysis of transcriptomic data from light-treated eggplant peel identified SmZHD12 as the most light-responsive gene among the 15 SmZHD genes. Consequently, this study provides further evidence that SmZHD12 facilitates anthocyanin accumulation in Arabidopsis leaves by upregulating the expression of anthocyanin biosynthesis structural genes, as confirmed by dual-luciferase assays and Arabidopsis genetic transformation. Our study will lay a solid foundation for the in-depth study of the involvement of SmZHD genes in the regulation of anthocyanin biosynthesis.
SmZHDs 在茄子富含花青素的部位高度表达。SmZHD12 可以激活 SmCHS、SmANS、SmDFR 和 SmF3H 的表达。SmZHD12 的过表达促进了拟南芥中花青素的生物合成。锌指-同源结构域(ZHD)蛋白家族基因在植物发育和生理过程中起着重要作用。然而,茄子 ZHD 基因家族的进化历史和功能在很大程度上仍未得到探索。本研究根据保守结构域将总共 15 个 SmZHD 基因归类为 SmMIF 和 SmZHD 亚家族。全面分析了 SmZHD 基因的系统发育、基因结构、保守基序、启动子元件和染色体定位。组织表达谱表明,大多数 SmZHD 基因在富含花青素的区域表达。qRT-PCR 分析显示 SmZHD 基因在不同处理下的表达模式存在明显差异,表明它们可能参与多种信号通路。对光照处理的茄子果皮转录组数据的分析表明,在 15 个 SmZHD 基因中,SmZHD12 是对光照最敏感的基因。因此,这项研究进一步证明了 SmZHD12 通过上调花青素生物合成结构基因的表达促进拟南芥叶片中花青素的积累,这一点通过双荧光素酶报告基因分析和拟南芥遗传转化得到了证实。我们的研究为深入研究 SmZHD 基因在调控花青素生物合成中的作用奠定了基础。