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首页> 外文期刊>Horticulture research. >PhERF2, an ethylene-responsive element binding factor, plays an essential role in waterlogging tolerance of petunia
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PhERF2, an ethylene-responsive element binding factor, plays an essential role in waterlogging tolerance of petunia

机译:Pherf2,乙烯响应元件结合因子,在矮牵牛的耐水性耐受性中起重要作用

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摘要

Ethylene-responsive element binding factors (ERFs) are involved in regulation of various stress responses in plants, but their biological functions in waterlogging stress are largely unclear. In this study, we identified a petunia (Petunia?×?hybrida) ERF gene, PhERF2, that was significantly induced by waterlogging in wild-type (WT). To study the regulatory role of PhERF2 in waterlogging responses, transgenic petunia plants with RNAi silencing and overexpression of PhERF2 were generated. Compared with WT plants, PhERF2 silencing compromised the tolerance of petunia seedlings to waterlogging, shown as 96% mortality after 4 days waterlogging and 14 days recovery, while overexpression of PhERF2 improved the survival of seedlings subjected to waterlogging. PhERF2-RNAi lines exhibited earlier and more severe leaf chlorosis and necrosis than WT, whereas plants overexpressing PhERF2 showed promoted growth vigor under waterlogging. Chlorophyll content was dramatically lower in PhERF2-silenced plants than WT or overexpression plants. Typical characteristics of programmed cell death (PCD), DNA condensation, and moon-shaped nuclei were only observed in PhERF2-overexpressing lines but not in PhERF2-RNAi or control lines. Furthermore, transcript abundances of the alcoholic fermentation-related genes ADH1-1, ADH1-2, ADH1-3, PDC1, and PDC2 were reduced in PhERF2-silenced plants, but increased in PhERF2-overexpressing plants following exposure to 12-h waterlogging. In contrast, expression of the lactate fermentation-related gene LDH was up-regulated in PhERF2-silenced plants, but down-regulated in its overexpressing plants. Moreover, PhERF2 was observed to directly bind to the ADH1-2 promoter bearing ATCTA motifs. Our results demonstrate that PhERF2 contributes to petunia waterlogging tolerance through modulation of PCD and alcoholic fermentation system.? The Author(s) 2019.
机译:乙烯响应元件结合因子(ERF)参与植物中各种应力反应的调节,但它们在涝脂胁迫下的生物学功能在很大程度上不清楚。在这项研究中,我们鉴定了一种诱饵(Petonia?×Xybrida)ERF基因,Pherf2,通过野生型(WT)涝来显着诱导。为研究Pherf2在涝渍反应中的调节作用,产生具有RNAi沉默和PherF2过表达的转基因培养植物。与WT植物相比,Pherf2沉默损害了培养幼苗对涝渍的耐受性,在涝渍和14天回收率后显示出96%的死亡率,而Pherf2的过度表达改善了对涝渍的幼苗的存活率改善了幼苗的存活率。 PHERF2-RNAI线表表现出早先,更严重的叶片氯化和坏死而不是WT,而过表达PHERF2的植物显示出在涝渍下的促进生长活力。 Pherf2-沉默的植物中叶绿素含量显着低于WT或过度表达植物。仅在PherF2过表达线中观察到编程细胞死亡(PCD),DNA缩合和月状核的典型特征,但不在PHERF2-RNAi或对照系中观察。此外,在Pherf2-沉默的植物中,降低了酒精发酵相关基因ADH1-1,ADH1-2,ADH1-3,PDC1和PDC2的转录性丰度,但在暴露于12-H涝渍后,在Pherf2过表达植物中增加。相反,乳酸发酵相关基因LDH的表达在Pherf2-沉默的植物中上调,但在其过表达植物中下调。此外,观察到PherF 2直接与Adcta图案的AdH1-2启动子结合。我们的结果表明,通过调制PCD和酒精发酵系统,Pherf2有助于Petunia涝耐受性。作者2019年。

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