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Root-mediated signal transmission of systemic acquired resistance against above-ground and below-ground pathogens

机译:根源介导的系统获得性抗地上和地下病原体的信号传递

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摘要

>Background and Aims Plants modulate defence signalling networks in response to various biotic stresses via inter-organ communications. The root-mediated transmission of systemic acquired resistance (SAR) against soil-borne and air-borne plant pathogens from SAR-induced plants to neighbouring plants subjected to local chemical and pathogen treatments was evaluated.>Methods The first two plants out of ten Nicotiana benthamiana seedlings were pre-treated with the SAR-triggering chemical benzothiadiazole (BTH). All ten seedlings were then challenged with two pathogenic bacteria, i.e. the root (bacterial wilt) pathogen Ralstonia solanacearum and the leaf (wildfire) pathogen Pseudomonas syringae pv. tabaci, at 7 d after SAR induction.>Key Results Disease severity was noticeably lower in BTH-pre-treated plants than in the control. Surprisingly, two plants located next to BTH-treated plants exhibited reduced disease symptoms indicating that SAR signal transmission occurred through the root system. Determinant(s) secreted from the root system were search for and it was found that salicylic acid (SA) is a major molecule involved in SAR transmission through the root. Analysis of the expression of the defence-related genes N. benthamiana pathogenesis-related gene 1a (NbPR1a) and NbPR2 confirmed that BTH treatment elicited SAR via root–root transmission between plants. Plants with knock-down of the multiple resistance component SGT1 and SA biosynthesis-related gene ICS1 by Tobacco rattle virus-mediated virus-induced gene silencing exhibited a lack of root-mediated SAR transmission. The biological relevance of this finding was validated by challenge with the SAR-inducing avirulent pathogen P. syringae pv. syringae instead of BTH, which produced similar results.>Conclusions Our findings demonstrated that SAR is transmissible through the root system from SAR-triggered plants to neighbouring plants.
机译:>背景和目的植物通过器官间的通讯响应各种生物胁迫来调节防御信号网络。评估了根系介导的对土壤传播和空气传播的植物病原体的系统获得性抗性(SAR)从SAR诱导的植物到经过本地化学和病原体处理的邻近植物的传播。>方法用触发SAR的化学苯并噻二唑(BTH)预处理了十株烟草本生烟草中的两株。然后,用两种病原细菌,即根(细菌性枯萎)病原体茄青枯病菌和叶(野火)致病性假单胞菌pv对全部十株幼苗进行攻击。烟粉虱,SAR诱导后第7天。>主要结果:BTH预处理植物的病害严重程度明显低于对照组。出人意料的是,与BTH处理植物相邻的两株植物表现出减轻的病害症状,表明SAR信号通过根系传播。寻找从根系分泌的决定因素,结果发现水杨酸(SA)是SAR通过根传递的主要分子。防御相关基因本氏烟草致病性相关基因1a(NbPR1a)和NbPR2的表达分析证实,BTH处理通过植物之间的根与根传播引发了SAR。烟草嘎嘎声病毒介导的病毒诱导的基因沉默导致多重抗性成分SGT1和SA生物合成相关基因ICS1敲低的植物表现出缺乏根介导的SAR传递。该发现的生物学相关性通过用SAR诱导无毒病原体丁香假单胞菌pv的攻击得到验证。 >结论。我们的研究结果表明,SAR可以通过根系从触发SAR的植物传播到邻近植物。

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