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首页> 外文期刊>Journal of Experimental Botany >Hijacking of the jasmonate pathway by the mycotoxin fumonisin B1 (FB1) to initiate programmed cell death in Arabidopsis is modulated by RGLG3 and RGLG4
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Hijacking of the jasmonate pathway by the mycotoxin fumonisin B1 (FB1) to initiate programmed cell death in Arabidopsis is modulated by RGLG3 and RGLG4

机译:霉菌毒素伏马菌素B1(FB1)对茉莉酸途径的劫持以引发拟南芥中的程序性细胞死亡受到RGLG3和RGLG4的调控

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摘要

Two ubiquitin ligases control fumonisin B1-elicited programmed cell death by modulating jasmonate signalling transduction in Arabidopsis.The mycotoxin fumonisin B1 (FB1) is a strong inducer of programmed cell death (PCD) in plants, but its underlying mechanism remains unclear. Here, we describe two ubiquitin ligases, RING DOMAIN LIGASE3 (RGLG3) and RGLG4, which control FB1-triggered PCD by modulating the jasmonate (JA) signalling pathway in Arabidopsis thaliana. RGLG3 and RGLG4 transcription was sensitive to FB1. Arabidopsis FB1 sensitivity was suppressed by loss of function of RGLG3 and RGLG4 and was increased by their overexpression. Thus RGLG3 and RGLG4 have coordinated and positive roles in FB1-elicited PCD. Mutated JA perception by coi1 disrupted the RGLG3- and RGLG4-related response to FB1 and interfered with their roles in cell death. Although FB1 induced JA-responsive defence genes, it repressed growth-related, as well as JA biosynthesis-related, genes. Consistently, FB1 application reduced JA content in wild-type plants. Furthermore, exogenously applied salicylic acid additively suppressed JA signalling with FB1 treatment, suggesting that FB1-induced salicylic acid inhibits the JA pathway during this process. All of these effects were attenuated in rglg3 rglg4 plants. Altogether, these data suggest that the JA pathway is hijacked by the toxin FB1 to elicit PCD, which is coordinated by Arabidopsis RGLG3 and RGLG4.
机译:两种泛素连接酶通过调节拟南芥中的茉莉酸酯信号转导来控制伏马毒素B1引起的程序性细胞死亡。霉菌毒素伏马毒素B1(FB1)是植物中程序性细胞死亡(PCD)的强力诱导剂,但其潜在机制尚不清楚。在这里,我们描述了两种泛素连接酶,RING DOMAIN LIGASE3(RGLG3)和RGLG4,它们通过调节拟南芥中的茉莉酸酯(JA)信号传导途径来控制FB1触发的PCD。 RGLG3和RGLG4转录对FB1敏感。拟南芥FB1敏感性受到RGLG3和RGLG4功能丧失的抑制,并因其过表达而增加。因此,RGLG3和RGLG4在FB1引起的PCD中起着协调和积极的作用。 coi1突变的JA感知破坏了RGLG3和RGLG4相关的FB1反应,并干扰了它​​们在细胞死亡中的作用。尽管FB1诱导了JA响应防御基因,但它抑制了与生长相关的基因以及与JA生物合成相关的基因。一致地,FB1的施用减少了野生型植物中的JA含量。此外,外源施加的水杨酸通过FB1处理可额外抑制JA信号传导,表明FB1诱导的水杨酸在此过程中抑制JA途径。所有这些作用在rglg3 rglg4植物中均减弱。总之,这些数据表明,JA途径被毒素FB1劫持以引发PCD,PCD由拟南芥RGLG3和RGLG4协调。

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