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首页> 外文期刊>Plant Molecular Biology >Heat shock factor HSFB2a involved in gametophyte development of Arabidopsis thaliana and its expression is controlled by a heat-inducible long non-coding antisense RNA
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Heat shock factor HSFB2a involved in gametophyte development of Arabidopsis thaliana and its expression is controlled by a heat-inducible long non-coding antisense RNA

机译:拟南芥配子体发育中涉及的热休克因子HSFB2a,其表达受热诱导的长非编码反义RNA控制

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摘要

Heat stress transcription factors (HSFs) are central regulators of the heat stress response. Plant HSFs of subgroup B lack a conserved sequence motif present in the transcriptional activation domain of class A-HSFs. Arabidopsis members were found to be involved in non-heat shock functions. In the present analysis we investigated the expression, regulation and function of HSFB2a. HSFB2a expression was counteracted by a natural long non-coding antisense RNA, asHSFB2a. In leaves, the antisense RNA gene is only expressed after heat stress and dependent on the activity of HSFA1a/HSFA1b. HSFB2a and asHSFB2a RNAs were also present in the absence of heat stress in the female gametophyte. Transgenic overexpression of HSFB2a resulted in a complete knock down of the asHSFB2a expression. Conversely, asHSFB2a overexpression leads to the absence of HSFB2a RNA. The knockdown of HSFB2a by asHSFB2a correlated with an improved, knockdown of asHSFB2a by HSFB2a overexpression with an impaired biomass production early in vegetative development. In both cases the development of female gametophytes was impaired. A T-DNA knock-out line did not segregate homozygous mutant plants, only heterozygots hsfB2a-tt1/+ were viable. Approximately 50 % of the female gametophytes were arrested in early development, before mitosis 3, resulting in 45 % of sterile ovules. Our analysis indicates that the "Yin-Yang" regulation of gene expression at the HSFB2a locus influences vegetative and gametophytic development in Arabidopsis.
机译:热应激转录因子(HSF)是热应激反应的中心调节剂。 B亚组的植物HSF缺乏A-HSF类转录激活域中存在的保守序列基序。发现拟南芥属成员参与非热激功能。在目前的分析中,我们调查了HSFB2a的表达,调控和功能。 HSFB2a表达被天然的长非编码反义RNA asHSFB2a抵消。在叶子中,反义RNA基因仅在热胁迫后表达,并取决于HSFA1a / HSFA1b的活性。在雌配子体中不存在热应激的情况下也存在HSFB2a和asHSFB2a RNA。 HSFB2a的转基因过表达导致asHSFB2a表达的完全敲低。相反,asHSFB2a过表达导致HSFB2a RNA缺失。 asHSFB2a对HSFB2a的敲低与HSFB2a过表达对asHSFB2a的改善,敲低有关,且营养生长早期的生物量产生受损。在这两种情况下,雌配子体的发育均受到损害。 T-DNA敲除品系没有分离纯合突变植物,只有杂合子hsfB2a-tt1 / +可以存活。大约50%的雌配子体在有丝分裂3之前的早期发育中被捕,导致45%的无菌胚珠。我们的分析表明,HSFB2a基因座基因表达的“阴阳”调节影响拟南芥的营养和配子体发育。

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