College of Life Science, Sichuan Agricultural University, Ya'an, Sichuan, 625014, China.
Xichang University, Xichang, Sichuan, 615000, China.
Plant Physiol Biochem. 2022 Nov 15;191:20-33. doi: 10.1016/j.plaphy.2022.09.016. Epub 2022 Sep 21.
Tartary buckwheat [Fagopyrum tataricum (L.) Gaertn.] is a pseudocereal with strongly abiotic resistance. NACs, one of the largest plant-specific transcription factors (TFs), are involved in various stress responses. However, the characteristics and regulatory mechanisms of NAC TFs remain unclarified clearly in Tartary buckwheat (TB). In this study, it validated that salt, drought, and abscisic acid (ABA) stress significantly up-regulated the expression of NAC TF gene FtNAC31. Its coding protein has a C-terminal transactivated domain and localized in the nucleus, suggesting that FtNAC31 might play a transcriptional activation role in TB. Notably, overexpression of FtNAC31 lowered the seed germination rate upon ABA treatment and enhanced the tolerance to salt and drought stress in transgenetic Arabidopsis. Furthermore, under various stresses, the activities of superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT) in FtNAC31 overexpressed lines exhibited a sharp increase trend. Meanwhile, the expression levels of several stress-associated genes including RD29A, RD29B, RD22, DREB2B, NCED3, and POD1, were dramatically upregulated in lines overexpressing FtNAC31. Altogether, overproduction of FtNAC31 could enhance the resistance to salt and drought stresses in transgenic Arabidopsis, which most likely functioned in an ABA-dependent way.
鞑靼荞麦 [苦荞麦(Fagopyrum tataricum (L.) Gaertn.)] 是一种具有强烈非生物抗性的伪谷物。NAC 是最大的植物特异性转录因子 (TF) 之一,参与各种胁迫反应。然而,NAC TF 的特征和调控机制在鞑靼荞麦 (TB) 中仍不清楚。本研究验证了盐、干旱和脱落酸 (ABA) 胁迫显著上调 NAC TF 基因 FtNAC31 的表达。其编码蛋白具有 C 端反式激活结构域,并定位于细胞核内,表明 FtNAC31 可能在 TB 中发挥转录激活作用。值得注意的是,过表达 FtNAC31 降低了 ABA 处理下的种子发芽率,并增强了转基因拟南芥对盐和干旱胁迫的耐受性。此外,在各种胁迫下,过表达 FtNAC31 系中超氧化物歧化酶 (SOD)、过氧化物酶 (POD) 和过氧化氢酶 (CAT) 的活性表现出急剧增加的趋势。同时,过表达 FtNAC31 系中包括 RD29A、RD29B、RD22、DREB2B、NCED3 和 POD1 在内的几种与胁迫相关的基因的表达水平显著上调。总之,FtNAC31 的过表达可以增强转基因拟南芥对盐和干旱胁迫的抗性,这很可能是通过 ABA 依赖的方式实现的。