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An oleic acid-mediated pathway induces constitutive defense signaling and enhanced resistance to multiple pathogens in soybean.

机译:油酸介导的途径诱导组成型防御信号传导并增强了对大豆中多种病原体的抗性。

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摘要

Stearoyl-acyl carrier protein-desaturase (SACPD)-catalyzed synthesis of oleic acid (18:1) is an essential step in fatty acid biosynthesis. Arabidopsis mutants (ssi2) with reduced SACPD activity accumulate salicylic acid (SA) and exhibit enhanced resistance to multiple pathogens. We show that reduced levels of 18:1 induce similar defense-related phenotypes in soybean. A Bean pod mottle virus (BPMV)-based vector was employed to effectively silence soybean SACPDs. The silenced plants contained reduced 18:1 and increased stearic acid, developed spontaneous cell death lesions, increased SA accumulation, and constitutively expressed pathogenesis-related genes. These plants also expressed elevated levels of resistance-like genes and showed resistance to bacterial and oomycete pathogens. Exogenous application of glycerol induced similar phenotypes, mimicking the effect of silencing SACPDs in healthy soybean plants. Overexpression of a soybean SACPD increased 18:1 levels in ssi2 but not in wild-type Arabidopsis plants, suggesting that the soybean enzyme was under feedback regulation similar to that of the Arabidopsis isozymes. These results suggest that soybean and Arabidopsis respond similarly to 18:1-derived cues by inducing a novel broad-spectrum resistance-conferring pathway, even though they differ significantly in their lipid biosynthetic pathways. We also demonstrate the efficacy of BPMV-induced gene silencing as a tool for functional studies in soybean.
机译:硬脂酰基-酰基载体蛋白去饱和酶(SACPD)催化的油酸(18:1)合成是脂肪酸生物合成中必不可少的步骤。 SACPD活性降低的拟南芥突变体(ssi2)积累了水杨酸(SA),并显示出对多种病原体的增强抗性。我们显示降低的18:1水平在大豆中诱导相似的防御相关表型。使用基于豆荚斑驳病毒(BPMV)的载体有效沉默大豆SACPD。沉默的植物含有减少的18:1和增加的硬脂酸,发展自发的细胞死亡病变,增加的SA积累和组成性表达与病程相关的基因。这些植物还表达了高水平的抗性样基因,并显示出对细菌和卵菌病原体的抗性。甘油的外源诱导诱导相似的表型,模仿了在健康大豆植物中沉默SACPD的作用。大豆SACPD的过表达在ssi2中增加了18:1的水平,但在野生型拟南芥植物中并未升高,这表明大豆酶处于与拟南芥同工酶相似的反馈调节之下。这些结果表明,大豆和拟南芥通过诱导新的赋予广谱抗性的途径,对18:1的信号产生相似的反应,即使它们的脂质生物合成途径差异很大。我们还证明了BPMV诱导的基因沉默作为大豆功能研究工具的功效。

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