首页> 外文期刊>Acta Physiologiae Plantarum >Molecular cloning, characterization and expression analysis of PtrHOS1, a novel gene of cold responses from trifoliate orange [Poncirus trifoliata (L.) Raf.]
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Molecular cloning, characterization and expression analysis of PtrHOS1, a novel gene of cold responses from trifoliate orange [Poncirus trifoliata (L.) Raf.]

机译:PtrHOS1的分子克隆,表征和表达分析,它是一种三叶草橙[Poncirus trifoliata(L.)Raf。]的冷反应新基因。

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摘要

High expression of osmotically responsive genes 1 (HOS1) encodes an ubiquitin E3 ligase that promotes the degradation of transcription factor Inducer of CBF Expression 1 (ICE1). Inactivation of ICE1 reduces CBF-induced activation of many cold-responsive genes, and thus, HOS1 act as a negative regulator of cold-responsive genes. In this paper, a novel HOS1 gene, designated PtrHOS1 (Genebank accession number FJ844367), was cloned by RT-PCR and RACE-PCR from trifoliate orange [Poncirus trifoliata (L.) Raf.]. The full length of PtrHOS1 is 3,434 bp with an open reading frame of 2,922 bp, encoding a protein of 974 amino acids with a molecular weight of 110.2 kDa and a theoretical isoelectric point of 5.55. Sequence alignment showed that PtrHOS1 protein had a conserved RING finger domain in its N-terminal region and shared high identity with other plant species HOS1-like proteins. Semi-quantitative RT-PCR analysis revealed that PtrHOS1 could be constitutively expressed at high levels in leaves, stems and roots. Interestingly, the PtrHOS1 expression had a declined period in leaves, stems and roots after cold and ABA treatments, which suggested that the PtrHOS1 expression was down regulated both by cold and ABA. Moreover, the decline was first occurred in leaves (30 min), followed with stems (2 h) and roots (4 h) after cold treatments. These results probably suggest that the leaves of trifoliate orange first sense the cold stress, followed with stems and roots. Oppositely, after ABA treatments, the significant decline of PtrHOS1 expression was first occurred in roots (15 min), followed with stems and leaves (30 min). Our results provide useful information for further studies about cold acclimation mechanism in citrus.
机译:渗透反应基因1(HOS1)的高表达编码泛素E3连接酶,可促进CBF表达1(ICE1)转录因子诱导物的降解。 ICE1的失活减少了CBF诱导的许多冷应答基因的激活,因此,HOS1充当了冷应答基因的负调节剂。本文通过RT-PCR和RACE-PCR从三叶橙[Poncirus trifoliata(L.)Raf。]中克隆了一个新的HOS1基因,命名为PtrHOS1(基因库登录号FJ844367)。 PtrHOS1的全长为3,434 bp,开放阅读框为2,922 bp,编码974个氨基酸的蛋白质,分子量为110.2 kDa,理论等电点为5.55。序列比对表明,PtrHOS1蛋白在其N端区域具有一个保守的RING指结构域,并且与其他植物物种HOS1样蛋白具有高度同一性。半定量RT-PCR分析表明,PtrHOS1可以在叶,茎和根中高水平组成型表达。有趣的是,经过冷和ABA处理后,PtrHOS1表达在叶片,茎和根中都有一个下降的时期,这表明PtrHOS1表达受冷和ABA均下调。此外,下降首先发生在叶片(30分钟)上,然后是冷处理后的茎(2小时)和根(4小时)。这些结果可能表明三叶橙色的叶子首先感觉到冷胁迫,其次是茎和根。相反,ABA处理后,PtrHOS1表达的显着下降首先发生在根部(15分钟),其次是茎和叶(30分钟)。我们的结果为进一步研究柑橘的冷驯化机理提供了有用的信息。

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