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首页> 外文期刊>Plant Physiology and Biochemistry >Overexpression of a stress-responsive MYB transcription factor of Poncirus trifoliata confers enhanced dehydration tolerance and increases polyamine biosynthesis
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Overexpression of a stress-responsive MYB transcription factor of Poncirus trifoliata confers enhanced dehydration tolerance and increases polyamine biosynthesis

机译:三角果胁迫响应MYB转录因子的过表达赋予脱水耐受性并增加多胺的生物合成

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MYBs are an important family of transcription factors that play significant roles in plant development and stress response in plants. However, knowledge concerning the functions of MYBs in the non-model plants and the target genes is still limited. In this study, we isolated a stress-responsive R2R3-type MYB gene from trifoliate orange (Poncirus trifoliata (L.) Raf.), designated as PtsrMYB. PtsrMYB shares the highest degree of identity with AtMYB109. Subcellular localization using onion epidermal cells indicates that PtsrMYB is localized in the nucleus. Transcript levels of PtsrMYB were up-regulated by abiotic stresses such as dehydration, salt, cold and ABA treatment. Overexpression of PtsrMYB in tobacco confers enhanced dehydration tolerance, as indicated by less water loss, lower levels of malondialdehyde and reactive oxygen species. The transgenic tobacco lines displayed higher mRNA levels of two arginine decarboxylase (ADC) genes before and after dehydration treatment when compared with the wild type, concurrent with the greater levels of polyamines. Several MYB-recognizing cis-acting elements exist on the promoters of PtADC gene. Yeast one-hybrid assay demonstrated that PtsrMYB predominantly interact with two regions of the promoter, indicating the PtADC may be a target gene of PtsrMYB. Take together, PtsrMYB plays a positive role in dehydration tolerance, which may be, at least in part, due to the modulation of polyamine synthesis by regulating the ADC gene.
机译:MYB是重要的转录因子家族,其在植物发育和植物的胁迫反应中起重要作用。然而,关于MYB在非模型植物和靶基因中的功能的知识仍然有限。在这项研究中,我们从三叶橙(Poncirus trifoliata(L.)Raf。)中分离出一种应激反应性R2R3型MYB基因,命名为PtsrMYB。 PtsrMYB与AtMYB109具有最高程度的同一性。使用洋葱表皮细胞的亚细胞定位表明PtsrMYB位于细胞核中。 PtsrMYB的转录水平通过非生物胁迫(如脱水,盐,冷和ABA处理)上调。烟草中PtsrMYB的过表达增强了脱水耐受性,这表现为水分损失减少,丙二醛含量降低和活性氧含量降低。与野生型相比,转基因烟草品系在脱水处理之前和之后显示出两个精氨酸脱羧酶(ADC)基因更高的mRNA水平,同时多胺含量更高。 PtADC基因的启动子上存在几个MYB识别顺式作用元件。酵母一杂交试验表明,PtsrMYB主要与启动子的两个区域相互作用,表明PtADC可能是PtsrMYB的靶基因。综上所述,PtsrMYB在脱水耐受性中起着积极作用,这可能至少部分是由于通过调节ADC基因来调节多胺合成。

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