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MicroRNA156 扩增了与转录因子相关的植物细胞冷胁迫耐受性。

MicroRNA156 amplifies transcription factor-associated cold stress tolerance in plant cells.

机构信息

College of Horticulture and Gardening, Yangtze University, Jingzhou, Hubei, 434025, People's Republic of China.

出版信息

Mol Genet Genomics. 2019 Apr;294(2):379-393. doi: 10.1007/s00438-018-1516-4. Epub 2018 Nov 26.

Abstract

MicroRNAs may increase cold stress tolerance by regulating stress-related signal transduction pathways and by modulating the expression of transcription factors. However, the molecular mechanism by which microRNAs enhance cold stress tolerance is not fully understood. Here, we report that overexpression of rice microRNA156 (OsmiR156) results in increased cell viability and growth rate under cold stress in Arabidopsis, pine, and rice. OsmiR156 increases cold stress tolerance by targeting OsSPL3. OsSPL3 positively regulates the expression of OsWRKY71, a negative regulator of the transcription factors OsMYB2 and OsMYB3R-2. OsMYB2 counteracts cold stress by activating the expression of the stress-response genes OsLEA3, OsRab16A, and OsDREB2A. OsMYB3R-2 counteracts cold stress by activating the expression of OsKNOLLE2, OsCTP1, OsCycB1.1, OsCycB2.1, and OsCDC20.1. In OsmiR156 transgenic rice cell lines, the transcript levels of OsLEA3, OsRab16A, OsDREB2A, OsKNOLLE2, OsCTP1, OsCycB1.1, OsCycB2.1, and OsCDC20.1 were increased by OsWRKY71 knockdown and inversely regulated by OsWRKY71 overexpression, indicating that OsmiR156 enhances cold stress tolerance by regulating the expression of transcription factor genes in plant cells. These results will increase our understanding of microRNA-related cold stress tolerance in different plant species, including monocotyledonous, dicotyledonous, and gymnosperm plant species, and will be valuable in plant molecular biotechnology.

摘要

microRNAs 可能通过调节应激相关信号转导途径和调节转录因子的表达来增加冷胁迫耐受性。然而,microRNAs 增强冷胁迫耐受性的分子机制尚不完全清楚。在这里,我们报道在拟南芥、松树和水稻中,过量表达水稻 microRNA156 (OsmiR156) 可导致冷胁迫下细胞活力和生长速率增加。OsmiR156 通过靶向 OsSPL3 增加冷胁迫耐受性。OsSPL3 正向调节转录因子 OsMYB2 和 OsMYB3R-2 的负调节剂 OsWRKY71 的表达。OsMYB2 通过激活应激响应基因 OsLEA3、OsRab16A 和 OsDREB2A 的表达来拮抗冷胁迫。OsMYB3R-2 通过激活 OsKNOLLE2、OsCTP1、OsCycB1.1、OsCycB2.1 和 OsCDC20.1 的表达来拮抗冷胁迫。在 OsmiR156 转基因水稻细胞系中,OsLEA3、OsRab16A、OsDREB2A、OsKNOLLE2、OsCTP1、OsCycB1.1、OsCycB2.1 和 OsCDC20.1 的转录水平通过 OsWRKY71 的敲低而增加,通过 OsWRKY71 的过表达而反向调节,表明 OsmiR156 通过调节植物细胞中转录因子基因的表达来增强冷胁迫耐受性。这些结果将增加我们对不同植物物种(包括单子叶植物、双子叶植物和裸子植物)中与 microRNA 相关的冷胁迫耐受性的理解,并且在植物分子生物技术中具有重要价值。

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