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Ethylene signaling pathway is not linear however its lateral part is responsible for sensing and signaling of sulfur status in plants

机译:乙烯信号传递途径不是线性的但是其侧向部分负责感测和信号传递植物中的硫状态

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摘要

A secondary, non-linear, lateral part of ethylene signaling pathway has been anticipated and speculated before. Recently, it has been found that part of the proteomic response of Eruca sativa to silver nitrate (which is an inhibitor of ethylene signaling) is related to sulfur metabolism. Using public Arabidopsis thaliana microarray data, I show that silver nitrate mimics the signal of sulfur starvation at the transcriptome level. This, combined with data mined from literature, indicates that ethylene receptors are localized at the beginning of the response to sulfur deficiency in plants. This means that the non-linear, lateral part of ethylene signaling pathway exists and is responsible for transduction of the signal of sulfur deficit. Here, I present a model of such a pathway and anticipate it to be the starting point for more detailed analysis of the lateral part of ethylene signaling pathway and the exact mechanism of sulfur status sensing in plants.
机译:乙烯信号传导途径的次级,非线性,侧向部分之前已经被预期和推测。近来,已经发现,紫草对硝酸银(它是乙烯信号的抑制剂)的部分蛋白质组学反应与硫代谢有关。使用公开的拟南芥芯片数据,我证明了硝酸银在转录组水平上模拟了硫饥饿的信号。这与从文献中获得的数据相结合,表明乙烯受体位于植物对硫缺乏反应的开始时。这意味着存在乙烯信号传导途径的非线性侧向部分,并负责转导硫缺乏信号。在这里,我提出了一种这样的途径的模型,并希望它是对乙烯信号途径的侧向部分以及植物中硫状态感测的确切机制进行更详细分析的起点。

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