Key Laboratory of Rice Genetic Breeding of Anhui Province, Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei, 230031, China.
Planta. 2018 Jan;247(1):99-111. doi: 10.1007/s00425-017-2765-x. Epub 2017 Sep 6.
Five promoters of the cold-inducible rice genes were isolated. The quantitative and qualitative expression analyses in the high generation transgenic rice suggest that the genes are stably induced by low temperature. Cold-inducible promoters are highly desirable for stress-inducible gene expression in crop genetic engineering. In this study, five rice genes, including OsABA8ox1, OsMYB1R35, OsERF104, OsCYP19-4, and OsABCB5, were found to be transcriptionally induced by cold stress. The promoters of these five genes were isolated, and their activities were identified in various tissues of transgenic rice plants at different growth stages both before and after cold stress. Histochemical staining, quantitative fluorescence assays, and GUSplus gene expression assays in corresponding promoter-GUSplus transgenic rice plants confirmed that the five promoters were cold-inducible with different expression patterns and strengths. The OsABA8ox1 and OsERF104 promoters had very low background expression; in contrast, the OsMYB1R35 promoter had higher basal activity in the roots, and OsCYP19-4 promoter activity was preferentially high in leaves and flowers of untreated transgenic lines. The OsABCB5 promoter had the highest basal activity among the five promoters. After cold induction, the activities of the OsABA8ox1, OsMYB1R35, and OsABCB5 promoters were high in both roots and leaves, slightly lower than that of the constitutively expressed OsActin1 promoter but comparable to that of the AtRD29A promoter. During the cold treatment time course, the activities of OsABA8ox1 and OsABCB5 promoters were quickly up-regulated in the early period and peaked at 24 h, after which the induction level gradually decreased until 48 h. The activities of the OsMYB1R35 and OsCYP19-4 promoters increased under stress in a time-dependent manner, while OsERF104 promoter activity began to increase at 4 h and then decreased strongly. Furthermore, activities' analysis in T, T, and T homozygous progeny of single-copy plants revealed that five promoters maintained their activities at comparable levels with no evidence of silencing under cold stress. Overall, the five cold-inducible rice promoters described herein could potentially be used in crop biotechnology.
分离了五个冷诱导水稻基因的启动子。在高代转基因水稻中的定量和定性表达分析表明,这些基因可被低温稳定诱导。冷诱导启动子是作物遗传工程中诱导应激基因表达的理想选择。在这项研究中,发现五个水稻基因,包括 OsABA8ox1、OsMYB1R35、OsERF104、OsCYP19-4 和 OsABCB5,受冷胁迫转录诱导。分离了这些五个基因的启动子,并在冷胁迫前后不同生长阶段的转基因水稻植株的不同组织中鉴定了它们的活性。组织化学染色、定量荧光分析和相应启动子-GUSplus 转基因水稻植株中的 GUSplus 基因表达分析证实,这五个启动子均具有不同的表达模式和强度的冷诱导性。OsABA8ox1 和 OsERF104 启动子的背景表达非常低;相比之下,OsMYB1R35 启动子在根中的基础活性较高,而 OsCYP19-4 启动子在未处理的转基因系的叶片和花朵中的活性优先较高。OsABCB5 启动子在这五个启动子中具有最高的基础活性。冷诱导后,OsABA8ox1、OsMYB1R35 和 OsABCB5 启动子在根和叶中的活性均较高,略低于组成型表达的 OsActin1 启动子,但与 AtRD29A 启动子相当。在冷处理时间过程中,OsABA8ox1 和 OsABCB5 启动子的活性在早期迅速上调,并在 24 h 时达到峰值,之后诱导水平逐渐降低至 48 h。OsMYB1R35 和 OsCYP19-4 启动子的活性随胁迫呈时间依赖性增加,而 OsERF104 启动子的活性在 4 h 时开始增加,然后强烈下降。此外,单拷贝植物的 T 1、T 2 和 T 3 纯合后代的活性分析表明,在冷胁迫下,五个启动子以可比水平保持其活性,没有沉默的证据。总的来说,本文描述的五个冷诱导水稻启动子可能在作物生物技术中具有潜在的应用价值。