State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University), Harbin 150040, China.
State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University), Harbin 150040, China.
Plant Sci. 2021 Jan;302:110668. doi: 10.1016/j.plantsci.2020.110668. Epub 2020 Sep 13.
MYB transcription factors are important in abiotic stress responses; however, the detailed mechanisms are unclear. Tamarix hispida contains multiple MYB genes. The present study characterized T. hispida MYB8 (ThMYB8) during salt stress using transgenic T. hispida and Arabidopsis assays. ThMYB8 overexpression and ThMYB8 RNAi analysis demonstrated that ThMYB8 enhanced the salt stress tolerance. Transgenic Arabidopsis ectopic expression of ThMYB8 significantly increased root growth, fresh weight, and seed germination rate compared with that of the wild-type under salt stress. Physiological parameters analysis in T. hispida and Arabidopsis showed that ThMYB8 overexpressing plants had the lowest levels of O, HO, cell death, malondialdehyde, and electrolyte leakage. Overexpression of ThMYB8 regulated Na and K concentrations in plant tissues while maintaining K/Na homeostasis. Analysis using qRT-PCR and ChIP-PCR identified possible downstream ThMYB8-regulated genes. ThMYB8 regulated the expression of ThCYP450-2 (cytochrome p450-2), Thltk (leucine-rich repeat transmembrane protein kinase), and ThTIP (aquaporin TIP) by binding to the MBSI motif ('CAACTG') in their promoters. The results indicated that ThMYB8 enhanced salt stress tolerance in T. hispida by regulating gene expression related to the activation of stress-associated physiological changes, such as enhanced reactive oxygen species scavenging capability, maintaining K/Na homeostasis, and decreasing the malondialdehyde content and lipid peroxidation cell membranes.
MYB 转录因子在非生物胁迫响应中很重要;然而,其详细机制尚不清楚。柽柳含有多个 MYB 基因。本研究利用转基因柽柳和拟南芥实验,对盐胁迫下的柽柳 MYB8(ThMYB8)进行了表征。ThMYB8 的过表达和 RNAi 分析表明,ThMYB8 增强了盐胁迫耐受性。转基因拟南芥中 ThMYB8 的异位表达,与野生型相比,在盐胁迫下显著增加了根的生长、鲜重和种子发芽率。在柽柳和拟南芥中生理参数分析表明,ThMYB8 过表达植株的 O、HO、细胞死亡、丙二醛和电解质渗漏水平最低。ThMYB8 的过表达调节了植物组织中的 Na 和 K 浓度,同时维持了 K/Na 平衡。使用 qRT-PCR 和 ChIP-PCR 分析鉴定了可能的下游 ThMYB8 调控基因。ThMYB8 通过结合启动子中的 MBSI 基序('CAACTG'),调控 ThCYP450-2(细胞色素 P450-2)、Thltk(富含亮氨酸重复跨膜蛋白激酶)和 ThTIP(水通道蛋白 TIP)的表达。结果表明,ThMYB8 通过调节与应激相关的生理变化激活相关的基因表达,增强了柽柳的耐盐性,如增强活性氧的清除能力、维持 K/Na 平衡以及降低丙二醛含量和质膜脂质过氧化。