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首页> 外文期刊>The Plant Cell >HEAT-INDUCED TAS1 TARGET1 mediates thermotolerance via HEAT STRESS TRANSCRIPTION FACTOR A1a-directed pathways in Arabidopsis.
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HEAT-INDUCED TAS1 TARGET1 mediates thermotolerance via HEAT STRESS TRANSCRIPTION FACTOR A1a-directed pathways in Arabidopsis.

机译:热诱导的TAS1 TARGET1通过拟南芥中的热应激转录因子A1a定向途径介导耐热性。

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Many heat stress transcription factors (Hsfs) and heat shock proteins (Hsps) have been identified to play important roles in the heat tolerance of plants. However, many of the key factors mediating the heat response pathways remain unknown. Here, we report that two genes, which are targets of TAS1 (trans-acting siRNA precursor 1)-derived small interfering RNAs that we named HEAT-INDUCED TAS1 TARGET1 (HTT1) and HTT2, are involved in thermotolerance. Microarray analysis revealed that the HTT1 and HTT2 genes were highly upregulated in Arabidopsis thaliana seedlings in response to heat shock. Overexpression of TAS1a, whose trans-acting small interfering RNAs target the HTT genes, elevated accumulation of TAS1-siRNAs and reduced expression levels of the HTT genes, causing weaker thermotolerance. By contrast, overexpression of HTT1 and HTT2 upregulated several Hsf genes, leading to stronger thermotolerance. In heat-tolerant plants overexpressing HsfA1a, the HTT genes were upregulated, especially at high temperatures. Meanwhile, HsfA1a directly activated HTT1 and HTT2 through binding to their promoters. HTT1 interacted with the heat shock proteins Hsp70-14 and Hsp40 and NUCLEAR FACTOR Y, SUBUNIT C2. Taken together, these results suggest that HTT1 mediates thermotolerance pathways because it is targeted by TAS1a, mainly activated by HsfA1a, and acts as cofactor of Hsp70-14 complexes.
机译:已确定许多热胁迫转录因子(Hsfs)和热休克蛋白(Hsps)在植物的耐热性中起重要作用。但是,介导热反应途径的许多关键因素仍然未知。在这里,我们报道了两个基因,它们是TAS1(反式作用siRNA前体1)衍生的小干扰RNA的靶标,我们将其命名为HEAT-INDUCED TAS1 TARGET1(HTT1)和HTT2,它们参与了耐热性。基因芯片分析显示,响应热休克,拟南芥幼苗中的HTT1和HTT2基因高度上调。 TAS1a的过表达(其反式作用的小干扰RNA靶向HTT基因),TAS1-siRNA的积累增加和HTT基因的表达水平降低,导致耐热性减弱。相比之下,HTT1和HTT2的过表达上调了多个Hsf基因,导致更强的耐热性。在过表达HsfA1a的耐热植物中,HTT基因被上调,尤其是在高温下。同时,HsfA1a通过与启动子结合直接激活了HTT1和HTT2。 HTT1与热激蛋白Hsp70-14和Hsp40以及核因子Y,SUBUNIT C2相互作用。综上所述,这些结果表明HTT1介导了耐热途径,因为它被TAS1a靶向,主要由HsfA1a激活,并充当Hsp70-14复合物的辅因子。

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