首页> 外文期刊>Plant Molecular Biology >Distinct heat-shock element arrangements that mediate the heat shock, but not the late-embryogenesis induction of small heat-shock proteins, correlate with promoter activation in root-knot nematode feeding cells
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Distinct heat-shock element arrangements that mediate the heat shock, but not the late-embryogenesis induction of small heat-shock proteins, correlate with promoter activation in root-knot nematode feeding cells

机译:介导热休克的独特热休克元件排列,而不是介导小的热休克蛋白的胚发生后期诱导,与根结线虫饲养细胞中的启动子激活相关

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摘要

Genes coding small heat-shock proteins (sHSPs) show distinct behaviours with respect to environmental and developmental signals. Their transcriptional regulation depends on particular combinations of heat stress cis-elements (heat-shock elements; HSEs) but many aspects regarding their regulation remain unclear. Cyst and root-knot nematodes induce, in the roots of infected plants, the differentiation of special feeding cells with high metabolic activity (syncytia and giant cells, respectively), a process accompanied by extensive gene expression changes. The Hahsp17.7G4 (G4) promoter was active in giant cells and its HSE arrangements were crucial for this activation. In the present work, we provide further basis to associate giant cell expression with the heat-shock response of this gene class, by analysing additional promoters. The Hahsp17.6G1 (G1) promoter, not induced by heat shock, was silent in giant cells, while Hahsp18.6G2 (G2), which responds to heat shock, was specifically induced in giant cells. In addition, a mutated Hahsp17.7G4 promoter version (G4MutP) with a strong heat-shock induction was also induced in giant cells. The responses of the different promoters correlated with distinct HSE configurations, which might have implications on differential trans-activation. Furthermore, the shortest giant cell and heat-shock-inducible sHSP promoter version analysed in tobacco (-83pb Hahsp17.7G4) fully maintained its expression profile in Arabidopsis. Cyst nematodes did not induce the Hahsp17.7G4 promoter, revealing additional specificity in the nematode response. These findings, together with the fact that the class I sHSP products of endogenous genes accumulated specifically in tobacco giant cells, support the idea that these nematode-induced giant cells represent a transcriptional state very similar to that produced by heat shock regarding this class of genes. The high metabolic rate of giant cells may result in unfolded proteins requiring class I sHSPs as chaperones, which might, somehow, mimic heat-shock and/or other stress responses.
机译:编码小型热休克蛋白(sHSP)的基因在环境和发育信号方面表现出独特的行为。它们的转录调控取决于热应激顺式元素(热休克元件; HSE)的特定组合,但有关其调控的许多方面仍不清楚。囊肿和根结线虫在受感染植物的根中诱导具有高代谢活性的特殊饲养细胞(分别为合胞体和巨细胞)的分化,此过程伴随着广泛的基因表达变化。 Hahsp17.7G4(G4)启动子在巨细胞中有活性,其HSE安排对该激活至关重要。在目前的工作中,我们通过分析其他启动子,为巨细胞表达与该基因类别的热休克反应相关提供了进一步的基础。不受热激诱导的Hahsp17.6G1(G1)启动子在巨细胞中沉默,而对热激有反应的Hahsp18.6G2(G2)在巨细胞中被特异性诱导。另外,在巨细胞中也诱导了具有强烈的热休克诱导作用的突变的Hahsp17.7G4启动子版本(G4MutP)。不同启动子的反应与不同的HSE构型相关,这可能对差异反式激活有影响。此外,在烟草(-83pb Hahsp17.7G4)中分析的最短的巨细胞和热休克诱导型sHSP启动子版本在拟南芥中完全保持了其表达谱。囊肿线虫并未诱导Hahsp17.7G4启动子,从而揭示了线虫应答中的其他特异性。这些发现,以及内源基因的I类sHSP产物专门在烟草巨细胞中积累的事实,支持以下观点:这些线虫诱导的巨细胞代表的转录状态与热激有关此类基因产生的转录状态非常相似。巨细胞的高代谢率可能会导致需要I类sHSP作为伴侣的未折叠蛋白,这可能以某种方式模仿热激和/或其他应激反应。

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