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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Overexpression of two cold-responsive ATAF-like NAC transcription factors from fine-stem stylo (Stylosanthes guianensis var. intermedia) enhances cold tolerance in tobacco plants
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Overexpression of two cold-responsive ATAF-like NAC transcription factors from fine-stem stylo (Stylosanthes guianensis var. intermedia) enhances cold tolerance in tobacco plants

机译:来自微茎触发型的两种冷响应Aataf样转录因子的过度表达(Stylosanthes guianensis var。介质)增强了烟草植物的耐寒性

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摘要

Stylosanthes (stylo) species are economically important tropical and subtropical forage legumes. They are vulnerable to chilling and frost, and little is known about the genetic and molecular mechanisms of their responses or adaptations to low temperature stress. Two cold-responsive NAC genes, SgNAC1 and SgNAC2, were selected from a whole transcriptome profiling study of fine-stem stylo (S. guianensis var. intermedia) and further investigated for their roles in cold stress tolerance. Bioinformatic analysis indicated that SgNAC1 and SgNAC2 belonged to ATAF subgroup of NAC family, and shared highly conserved N-terminal A-E NAC subdomains and a EVQS[E/x]PK[W/I] motif with ATAF-like NAC transcription factors. Expression profiling, subcellular location and transactivation assay revealed that SgNAC1 and SgNAC2 encode nucleus-localized polypeptides with transactivation activities and responds promptly to cold stress. Phenotypic and physiological changes indicated that the transgenic tobacco plants overexpressing SgNAC1 and SgNAC2 were more tolerant to cold stress than the wild-type plants. Meanwhile, the expression of SgNAC1 and SgNAC2 were significantly enhanced at the early stages of cold treatment, indicating that overexpression of SgNAC1 and SgNAC2 is sufficient to confer cold tolerance to tobacco plants. These results suggest that SgNAC1 and SgNAC2 are promising candidate genes for cold tolerance improvement strategies in stylo.
机译:练习镜(STYSTO)物种是经济上重要的热带和亚热带牧草豆类。它们容易感到寒冷和霜冻,并且关于它们的反应或适应低温胁迫的遗传和分子机制很少。两种冷响应NAC基因,SGNAC1和SGNAC2选自细茎型Sydo(Guianensis var。中介)的全部转录组分析研究,并进一步研究了它们在冷应激耐受性中的作用。生物信息分析表明,SGNAC1和SGNAC2属于NAC系列的ATAF亚组,并且共用高度保守的N-末端A-E NAC亚域和具有ATAF样NAC转录因子的EVQS [E / X] PK [W / I]基序。表达分析,亚细胞位置和反式激活测定显示,SgNAC1和SGNAC2用反膜激活活性编码核局部化多肽,并迅速响应冷应激。表型和生理变化表明,过表达SGNAC1和SGNAC2的转基因烟草植物比野生型植物更容易耐冷应激。同时,在冷治疗的早期阶段显着提高了SgNAC1和SGNAC2的表达,表明SGNAC1和SGNAC2的过度表达足以赋予烟草植物的耐冷耐耐力。这些结果表明,SGNAC1和SGNAC2是司机抗耐寒性改善策略的候选基因。

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