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三裂叶枳(Poncirus trifoliata (L.) Raf.)的 ERF109 通过直接调控参与抗氧化过程的 Prx1 的表达来提高其耐寒性。

ERF109 of trifoliate orange (Poncirus trifoliata (L.) Raf.) contributes to cold tolerance by directly regulating expression of Prx1 involved in antioxidative process.

机构信息

Key Laboratory of Horticultural Plant Biology, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, China.

出版信息

Plant Biotechnol J. 2019 Jul;17(7):1316-1332. doi: 10.1111/pbi.13056. Epub 2019 Jan 4.

Abstract

Ethylene-responsive factors (ERFs) have been revealed to play essential roles in a variety of physiological and biological processes in higher plants. However, functions and regulatory pathways of most ERFs in cold stress remain largely unclear. Here, we identified PtrERF109 of trifoliate orange (Poncirus trifoliata (L.) Raf.) and deciphered its role in cold tolerance. PtrERF109 was drastically up-regulated by cold, ethylene and dehydration, but repressed by salt. PtrERF109 was localized in the nucleus and displayed transcriptional activity, and the C terminus is required for the activation. Overexpression of PtrERF109 conferred enhanced cold tolerance in transgenic tobacco and lemon plants, whereas VIGS (virus-induced gene silencing)-mediated suppression of PtrERF109 in trifoliate orange led to increased cold susceptibility. PtrERF109 overexpression caused extensive transcriptional reprogramming of several suites of stress-responsive genes. Prx1 encoding class III peroxidase (POD) was one of the antioxidant genes exhibiting the greatest induction. PtrERF109 was shown to directly bind to the promoter of PtrPrx1 (trifoliate orange Prx1 homologue) and positively activated its expression. In addition, the PtrERF109-overexpressing plants exhibited significantly higher POD activity and accumulated dramatically less H O and were more tolerant to oxidative stress, whereas the VIGS plants exhibited opposite trends, in comparison with wild type. Taken together, these results indicate that PtrERF109 as a positive regulator contributes to imparting cold tolerance by, at least partly, directly regulating the POD-encoding gene to maintain a robust antioxidant capacity for effectively scavenging the reactive oxygen species. Our findings gain insight into better understanding of transcriptional regulation of antioxidant genes in response to cold stress.

摘要

乙烯响应因子(ERFs)已被证明在高等植物的各种生理和生物过程中发挥重要作用。然而,大多数 ERFs 在冷胁迫下的功能和调控途径在很大程度上仍不清楚。在这里,我们鉴定了三裂叶枳(Poncirus trifoliata (L.) Raf.)的PtrERF109,并阐明了其在耐冷性中的作用。PtrERF109 受冷、乙烯和脱水强烈上调,但受盐抑制。PtrERF109 定位于细胞核并显示转录活性,C 端对于激活是必需的。PtrERF109 的过表达赋予转基因烟草和柠檬植物增强的耐冷性,而三裂叶枳中的 VIGS(病毒诱导基因沉默)介导的 PtrERF109 抑制导致冷敏感性增加。PtrERF109 的过表达导致几类应激响应基因的广泛转录重编程。编码 III 类过氧化物酶(POD)的 Prx1 是诱导最大的抗氧化基因之一。结果表明,PtrERF109 直接与 PtrPrx1(三裂叶枳 Prx1 同源物)的启动子结合,并正向激活其表达。此外,与野生型相比,PtrERF109 过表达的植物表现出显著更高的 POD 活性和显著较少的 H 2 O 积累,并且对氧化应激更耐受,而 VIGS 植物则表现出相反的趋势。总之,这些结果表明,PtrERF109 作为一个正调控因子,通过直接调节编码 POD 的基因来维持强大的抗氧化能力,从而有效清除活性氧,从而有助于赋予冷耐受性。我们的研究结果深入了解了抗氧化基因对冷胁迫的转录调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6540/11386826/fb45dc091e74/PBI-17-1316-g002.jpg

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