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Effects of the virus satellite gene βC1 on host plant defense signaling and volatile emission

机译:病毒卫星基因βC1对宿主植物防御信号和挥发物释放的影响

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摘要

Tomato Yellow Leaf Curl China virus spreads together with its invasive vector, the silverleaf whitefly B biotype, which exhibits higher growth rates on infected plants. Previous studies indicate that the virus satellite gene βC1 accounts for the visible symptoms of infection and inhibits the constitutive expression of jasmonic acid (JA)—a phytohormone involved in plant defense against whiteflies—and of some JA-regulated genes. Here we present new details of the effects of on plant signaling and defense, obtained with (non-host) transgenic Arabidopsis thaliana and Nicotiana benthamiana plants. We found that JA induction in response to wounding was reduced in plants expressing βC1. This result implies that βC1 acts on conserved plant regulation mechanisms and might impair the entire JA defense pathway. Furthermore, transformed N. benthamiana plants exhibited elevated emissions of the volatile compound linalool, suggesting that βC1 also influences plant-derived olfactory cues available to vector and non-vector insects.
机译:番茄黄叶卷曲中国病毒与它的侵入性载体银叶粉虱B生物型一起传播,该病毒在受感染的植物上具有较高的生长速度。先前的研究表明,病毒卫星基因βC1引起了明显的感染症状,并抑制了茉莉酸(JA)的组成型表达,茉莉酸是一种植物激素,可防御粉虱,并抑制了一些JA调控的基因。在这里,我们介绍了使用(非寄主)转基因拟南芥和烟草本特米纳植物获得的对植物信号传导和防御的影响的新细节。我们发现表达βC1的植物对JA的响应引起的伤害降低。该结果暗示βC1作用于保守的植物调节机制,并且可能损害整个JA防御途径。此外,转化的本氏烟草植物显示出挥发性化合物芳樟醇的排放增加,这表明βC1还影响了可用于媒介和非媒介昆虫的植物来源的嗅觉提示。

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