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The transcription factor CsbHLH18 of sweet orange functions in modulation of cold tolerance and homeostasis of reactive oxygen species by regulating the antioxidant gene

机译:甜橙的转录因子CsbHLH18通过调节抗氧化剂基因来调节活性氧的耐寒性和稳态

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摘要

The basic helix–loop–helix (bHLH) transcription factors (TFs) comprise one of the largest gene families in plants, and participate in various physiological processes, but the physiological role and regulatory function of the majority of bHLHs remain poorly understood. Here, a total of 56 putative CsbHLH genes were identified in sweet orange (Citrus sinensis) based on a genome-wide analysis. The CsbHLH genes, except four members, were distributed throughout nine chromosomes and divided into 19 subgroups. Most of the CsbHLH genes were responsive to cold stress, with the greatest up-regulation being observed in CsbHLH18. CsbHLH18 is localized in the nuclei and has transcriptional activation activity. Overexpression of CsbHLH18 conferred enhanced cold tolerance in transgenic tobacco. The transgenic plants accumulated significantly less reactive oxygen species (ROS), concurrent with increased activities and transcript levels of antioxidant enzymes. In contrast, knockdown of bHLH18 by RNAi in trifoliate orange promoted cold susceptibility, accompanied by down-regulation of antioxidant genes and accumulation of more ROS. Protein–DNA interaction assays demonstrate that CsbHLH18 directly and specifically binds to and activates the promoter of CsPOD. Taken together, these findings indicate that CsbHLH18 plays a positive role in cold tolerance through, at least partly, modulation of ROS homeostasis by directly regulating the antioxidant gene.
机译:基本的螺旋-环-螺旋(bHLH)转录因子(TF)构成植物中最大的基因家族之一,并参与各种生理过程,但是大多数bHLH的生理作用和调节功能仍知之甚少。在这里,基于全基因组分析,在甜橙(Citrus sinensis)中总共鉴定出56个推定的CsbHLH基因。除四个成员外,CsbHLH基因分布在九个染色体上,分为19个亚组。大多数CsbHLH基因对冷应激有反应,在CsbHLH18中观察到最大的上调。 CsbHLH18位于细胞核中,具有转录激活活性。 CsbHLH18的过表达赋予转基因烟草增强的耐寒性。转基因植物积累的活性氧(ROS)明显减少,同时抗氧化酶的活性和转录水平增加。相比之下,三叶形橙中的RNAi抑制bHLH18促进了感冒,并伴随着抗氧化剂基因的下调和更多ROS的积累。蛋白质-DNA相互作用测定表明CsbHLH18直接且特异性地结合并激活CsPOD的启动子。综上所述,这些发现表明CsbHLH18通过至少部分地通过直接调节抗氧化剂基因的调节ROS稳态来在耐寒性中发挥积极作用。

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