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植物TCP转录因子的作用机理及其应用研究进展   总被引:2,自引:0,他引:2  
TCP转录因子是一类植物特有蛋白,含有保守的TCP domain,其中由60个氨基酸组成的b HLH结构是结合DNA和蛋白互作所必需的。TCP转录因子由于其广泛参与调控植物的生长发育过程(如分枝、株高、叶型、花型等)而备受关注。最近有报道显示,TCP转录因子在植物逆境胁迫应答中(如低温和高盐)同样发挥重要作用。TCP蛋白参与多种信号转导途径(如油菜素内酯、茉莉酸、赤霉素、细胞分裂素等),可能是连接生长发育和介导胁迫响应的一个交叉点。本文从分子生物学角度,系统综述了植物TCP转录因子的作用机理及其在激素应答、发育调控及环境胁迫响应等过程中的功能,以期为基因工程方法改良作物生长模式和抗性提供参考。  相似文献   

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Genetic transformation of maize is highly dependent on the development of embryonic calli from the dedifferentiated immature embryo. To better understand the regulatory mechanism of immature embryo dedifferentiation, we generated four small RNA and degradome libraries from samples representing the major stages of dedifferentiation. More than 186 million raw reads of small RNA and degradome sequence data were generated. We detected 102 known miRNAs belonging to 23 miRNA families. In total, we identified 51, 70 and 63 differentially expressed miRNAs (DEMs) in the stage I, II, III samples, respectively, compared to the control. However, only 6 miRNAs were continually up-regulated by more than fivefold throughout the process of dedifferentiation. A total of 87 genes were identified as the targets of 21 DEM families. This group of targets was enriched in members of four significant pathways including plant hormone signal transduction, antigen processing and presentation, ECM-receptor interaction, and alpha-linolenic acid metabolism. The hormone signal transduction pathway appeared to be particularly significant, involving 21 of the targets. While the targets of the most significant DEMs have been proved to play essential roles in cell dedifferentiation. Our results provide important information regarding the regulatory networks that control immature embryo dedifferentiation in maize.  相似文献   

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