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Rapid Accumulation of Trihydroxy Oxylipins and Resistance to the Bean Rust Pathogen Uromyces fabae Following Wounding in Vicia faba

机译:蚕豆受伤后三聚羟基脂的快速积累和对豆锈病病原菌Umomyces fabae的抗性

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摘要

• Background and Aims Insect damage to plants leads to wound-activated responses directed to healing of damaged tissues, as well as activation of defences to prevent further insect damage. Negative cross-talk exists between the jasmonic acid-based signalling system that is activated upon insect attack and the salicylic acid-based system frequently activated following pathogen infection. Thus, insect attack may compromise the ability of the plant to defend itself against pathogens and vice versa. However, insect herbivory and mechanical wounding have been shown to reduce fungal infections on some plants, although the underlying mechanisms remain to be defined. This work examines the effects of mechanical wounding on rust infection both locally and systemically in the broad bean, Vicia faba and follows changes in oxylipins in wounded leaves and unwounded leaves on wounded plants.• Methods The lamina of first leaves was wounded by crushing with forceps, and first and second leaves were then inoculated, separately, with the rust Uromyces fabae at various times over a 24 h period. Wounded first leaves and unwounded second leaves were harvested at intervals over a 24 h period and used for analysis of oxylipin profiles.• Key Results Mechanical wounding of first leaves of broad bean led to significantly reduced rust infection in the wounded first leaf as well as the unwounded second leaf. Increased resistance to infection was induced in plants inoculated with rust just 1 h after wounding and was accompanied by rapid and significant accumulation of jasmonic acid and two trihydroxy oxylipins in both wounded first leaves and unwounded second leaves. The two trihydroxy oxylipins were found to possess antifungal properties, reducing germination of rust spores.• Conclusions These results demonstrate the rapidity with which resistance to pathogen infection can be induced following wounding and provides a possible mechanism by which pathogen infection might be halted.
机译:•背景和目的昆虫对植物的伤害会导致伤口活化反应,直接作用于受损组织的愈合,并激活防御系统以防止昆虫进一步受到伤害。虫害发作后激活的基于茉莉酸的信号系统与病原体感染后经常激活的基于水杨酸的系统之间存在负串扰。因此,昆虫的攻击可能会损害植物抵御病原体的能力,反之亦然。然而,昆虫食草和机械损伤已显示可减少某些植物上的真菌感染,尽管其潜在机理尚待确定。这项工作研究了机械伤害对蚕豆蚕豆局部和全身锈蚀的影响,并跟踪了受伤植物上受伤叶子和未受伤叶子上的脂蛋白的变化。•方法用镊子压碎第一片叶子的叶片然后,在24小时内的不同时间分别用锈菌Uromyces fabae分别接种第一叶和第二叶。在24小时内,每隔一段时间收获受伤的第一片叶子和未受伤的第二片叶子,并用于分析脂蛋白的分布。•主要结果机械损伤蚕豆的第一片叶子可显着减少受伤的第一片叶子和第二片叶子中的锈病感染。未受伤的第二片叶子。受伤后仅1h接种了铁锈的植物就诱导了更高的抗感染能力,并且在受伤的第一片叶子和未受伤的第二片叶子中都伴随着茉莉酸和两种三羟基羟脂的迅速大量积累。发现这两种三羟基脂蛋白具有抗真菌特性,可减少锈孢子的萌发。•结论这些结果证明了伤口后可快速诱导对病原体感染的抵抗力,并提供了可能的机制来阻止病原体感染。

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