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Alternaria Brassicae Induces Systemic Jasmonate Responses in Arabidopsis Which Travel to Neighboring Plants via a Piriformsopora Indica Hyphal Network and Activate Abscisic Acid Responses

机译:交链孢霉在拟南芥中诱导系统性茉莉酸响应拟南芥通过Piriformsopora Indica菌丝网络传到邻近植物并激活脱落酸响应。

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摘要

Stress information received by a particular local plant tissue is transferred to other tissues and neighboring plants, but how the information travels is not well understood. Application of Alternaria Brassicae spores to Arabidopsis leaves or roots stimulates local accumulation of jasmonic acid (JA), the expression of JA-responsive genes, as well as of NITRATE TRANSPORTER (NRT)2.5 and REDOX RESPONSIVE TRANSCRIPTION FACTOR1 (RRTF1). Infection information is systemically spread over the entire seedling and propagates radially from infected to non-infected leaves, axially from leaves to roots, and vice versa. The local and systemic NRT2.5 responses are reduced in the jar1 mutant, and the RRTF1 response in the rbohD mutant. Information about A. brassicae infection travels slowly to uninfected neighboring plants via a Piriformospora Indica hyphal network, where NRT2.5 and RRTF1 are up-regulated. The systemic A. brassicae-induced JA response in infected plants is converted to an abscisic acid (ABA) response in the neighboring plant where ABA and ABA-responsive genes are induced. We propose that the local threat information induced by A. brassicae infection is spread over the entire plant and transferred to neighboring plants via a P. indica hyphal network. The JA-specific response is converted to a general ABA-mediated stress response in the neighboring plant.
机译:特定的本地植物组织接收到的胁迫信息会转移到其他组织和附近的植物,但是该信息的传播方式尚不清楚。将芥蓝孢菌孢子施用到拟南芥叶或根上会刺激茉莉酸(JA)的局部积累,JA响应基因的表达以及NITRATE TRANSPORTER(NRT)2.5和REDOX响应转录因子1(RRTF1)。感染信息系统地分布在整个幼苗上,并从受感染的叶片径向传播到未感染的叶片,从叶片到根部轴向传播,反之亦然。 jar1突变体降低了局部和全身性NRT2.5响应,而rbohD突变体降低了RRTF1响应。关于芸苔假单胞菌感染的信息通过a梨孢子菌菌丝网络缓慢传播到未感染的邻近植物,其中上调了NRT2.5和RRTF1。在被感染植物中系统性的由油菜曲霉诱导的JA响应在邻近的植物中被转化为脱落酸(ABA)响应,在邻近的植物中诱导了ABA和ABA响应基因。我们建议由 A引起的本地威胁信息。芸苔科感染传播到整个植物,并通过 P转移到邻近的植物。 hy菌丝网络。 JA特异性反应在邻近植物中转换为一般ABA介导的胁迫反应。

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