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首页> 外文期刊>BMC Genomics >Allyl-isothiocyanate treatment induces a complex transcriptional reprogramming including heat stress, oxidative stress and plant defence responses in Arabidopsis thaliana
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Allyl-isothiocyanate treatment induces a complex transcriptional reprogramming including heat stress, oxidative stress and plant defence responses in Arabidopsis thaliana

机译:异硫氰酸烯丙酯处理可诱导拟南芥中复杂的转录重编程,包括热胁迫,氧化胁迫和植物防御反应

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Background Isothiocyanates (ITCs) are degradation products of the plant secondary metabolites glucosinolates (GSLs) and are known to affect human health as well as plant herbivores and pathogens. To investigate the processes engaged in plants upon exposure to isothiocyanate we performed a genome scale transcriptional profiling of Arabidopsis thaliana at different time points in response to an exogenous treatment with allyl-isothiocyanate. Results The treatment triggered a substantial response with the expression of 431 genes affected ( P 2 ≥ 1 or ≤ -1) already after 30 min and that of 3915 genes affected after 9 h of exposure, most of the affected genes being upregulated. These are involved in a considerable number of different biological processes, some of which are described in detail: glucosinolate metabolism, sulphate uptake and assimilation, heat stress response, oxidative stress response, elicitor perception, plant defence and cell death mechanisms. Conclusion Exposure of Arabidopsis thaliana to vapours of allyl-isothiocyanate triggered a rapid and substantial transcriptional response affecting numerous biological processes. These include multiple stress stimuli such as heat stress response and oxidative stress response, cell death and sulphur secondary defence metabolism. Hence, effects of isothiocyanates on plants previously reported in the literature were found to be regulated at the gene expression level. This opens some avenues for further investigations to decipher the molecular mechanisms underlying the effects of isothiocyanates on plants.
机译:背景异硫氰酸盐(ITC)是植物次生代谢物硫代葡萄糖苷(GSL)的降解产物,已知会影响人类健康以及植物食草动物和病原体。为了研究在暴露于异硫氰酸酯后植物中所涉及的过程,我们响应于异硫氰酸烯丙酯的外源处理,在不同时间点对拟南芥进行了基因组规模的转录谱分析。结果该处理引发了显着的反应,在暴露30分钟后已经感染了431个基因(P 2 ≥1或≤-1),并且在暴露9小时后表达了3915个基因的表达,大多数受影响的基因是上调。这些涉及相当数量的不同生物过程,其中详细描述了其中的一些:芥子油苷代谢,硫酸盐吸收和同化,热应激反应,氧化应激反应,激发子知觉,植物防御和细胞死亡机制。结论拟南芥暴露于烯丙基异硫氰酸酯的蒸气中会触发快速而实质的转录反应,从而影响许多生物学过程。这些包括多种应激刺激,例如热应激反应和氧化应激反应,细胞死亡和硫的次级防御代谢。因此,发现异硫氰酸酯对先前文献中报道的植物的作用在基因表达水平上受到调节。这为进一步研究破译异硫氰酸酯对植物的影响的分子机制开辟了一些途径。

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