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IiSDD1, a gene responsive to autopolyploidy and environmental factors in Isatis indigotica

机译:IiSDD1,一种对板蓝根自身多倍体和环境因子有响应的基因

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In plants, stomata play a pivotal role in the regulation of gas exchange and are distributed throughout the aerial epidermis. SDD1, a gene isolated from Arabidopsis thaliana has been demonstrated to specialize in stomatal density and distribution. In our present study, a comprehensive survey of global gene expression performed by using an A. thaliana whole genome Affymetrix gene chip revealed SDD1 tends to be significantly lower in tetraploid Isatis indigotica than in diploid ones. To intensively investigate different SDD1 expression in response to polyploidy, a full-length cDNA clone (IiSDD1) encoding SDD1 was isolated from the traditional Chinese medicinal herb I. indigotica cDNA library. IiSDD1 shared a high level of identity with that from A. thaliana, containing some basic features of subtilases: D, H and S regions, as well as a substrate-binding site. Real-time quantitative PCR analysis indicated that IiSDD1 was constitutively expressed in all tested tissues, including roots, stems and leaves, both in tetraploid and diploid I. indigotica, and with the highest expression in leaves. In addition, IiSDD1 was also found to be down-regulated by signalling molecules for plant defence responses, such as abscisic acid (100 μM) and gibberellin (100 mg/L), as well as by environmental stresses including salt, darkness, coldness and drought. Our study, for the first time, indicates SDD1 participates not only in the defense/stress responsive pathways, but also probably involves in plants polyploidy evolution. Keywords Environmental stresses - IiSDD1 - Isatis indigotica - Polyploidy evolution - Stomata density and distribution
机译:在植物中,气孔在调节气体交换中起关键作用,并分布在整个表皮上。已经证明,从拟南芥分离的基因SDD1专门从事气孔密度和分布。在我们目前的研究中,使用拟南芥全基因组Affymetrix基因芯片对全球基因表达进行的全面调查显示,四倍体板蓝根中SDD1的含量明显低于二倍体。为了深入研究响应多倍体的不同SDD1表达,从中药材靛蓝cDNA库中分离了编码SDD1的全长cDNA克隆(IiSDD1)。 IiSDD1与拟南芥具有高度同一性,其中包含枯草杆菌蛋白酶的一些基本特征:D,H和S区,以及底物结合位点。实时定量PCR分析表明,IiSDD1在所有测试的组织(包括根,茎和叶)中组成型表达,在四倍体和二倍体靛蓝中均以最高表达量表达。此外,还发现IiSDD1被信号传导的植物防御反应分子(例如脱落酸(100μM)和赤霉素(100 mg / L))以及包括盐,黑暗,寒冷和干旱在内的环境胁迫下调。干旱。我们的研究首次表明,SDD1不仅参与防御/胁迫响应途径,而且可能参与植物多倍体的进化。关键词环境胁迫-IiSDD1-板蓝根-多倍体进化-气孔密度和分布

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