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Contrasting effects of necrotrophic and biotrophic plant pathogens on the aphid Aphis fabae

机译:坏死性和生物营养性植物病原体对蚜虫蚜虫的对比作用

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摘要

Phytophagous insects have to contend with a wide variation in food quality brought about by a variety of factors intrinsic and extrinsic to the plant. One of the most important factors is infection by plant pathogenic fungi. Necrotrophic and biotrophic plant pathogenic fungi may have contrasting effects on insect herbivores due to their different infection mechanisms and induction of different resistance pathways, although this has been little studied and there has been no study of their combined effect. We studied the effect of the biotrophic rust fungus Uromyces viciae-fabae (Pers.) Schroet (Basidiomycota: Uredinales: Pucciniaceae) and the necrotrophic fungus Botrytis cinerea Pers. (Ascomycota: Helotiales: Sclerotiniaceae) singly and together on the performance of the aphid Aphis fabae Scop. (Hemiptera: Aphididae) on Vicia faba (L.) (Fabaceae). Alone, botrytis had an inhibitory effect on individual A. fabae development, survival and fecundity, while rust infection consistently enhanced individual aphids’ performance. These effects varied in linear relation to lesion or pustule density. However, whole-plant infection by either pathogen resulted in a smaller aphid population of smaller aphids than on uninfected plants, indicating a lowering of aphid carrying capacity with infection. When both fungi were applied simultaneously to a leaf they generally cancelled the effect of each other out, resulting in most performance parameters being similar to the controls, although fecundity was reduced. However, sequential plant infection (pathogens applied five days apart) led to a 70% decrease in fecundity and 50% reduction in intrinsic rate of increase. The application of rust before botrytis had a greater inhibitory effect on aphids than applying botrytis before rust. Rust infection increased leaf total nitrogen concentration by 30% while infection by botrytis with or without rust led to a 38% decrease. The aphids’ responses to the two plant pathogens individually is consistent with the alteration in plant nutrient content by infection and also the induction of different plant defence pathways and the possible cross-talk between them. This is the first demonstration of the complex effects of the dual infection of a plant by contrasting pathogens on insect herbivores.ududKey words: Vicia faba, Botrytis cinerea, Uromyces viciae-fabae, tripartite interactions, induced resistance
机译:食草昆虫必须应对植物内在和外在的多种因素所带来的食品质量差异。最重要的因素之一是植物病原性真菌的感染。坏死性和生物营养性植物病原性真菌可能对昆虫食草动物具有相反的作用,这是由于它们的感染机制不同和诱导的不同抗性途径引起的,尽管对此进行了很少的研究并且尚未对其结合作用进行研究。我们研究了生物营养性锈菌Uromyces viciae-fabae(Pers。)Schroet(Basidiomycota:Uredinales:Pucciniaceae)和坏死性真菌灰葡萄孢的影响。 (Ascomycota:Helotiales:Sclerotiniaceae)在蚜虫Aphis fabae Scop上的表现。 (半翅目:蚜科)在蚕豆(豌豆科)上。单独的葡萄孢菌对个体的A. fabae的发育,存活和繁殖力具有抑制作用,而锈病感染则不断地增强个体的蚜虫的生长性能。这些作用与病变或脓疱密度呈线性关系。但是,与未感染的植物相比,两种病原体对整个植物的感染导致蚜虫种群的减少,蚜虫种群的减少,表明感染后蚜虫的携带能力降低。当将两种真菌同时施用到一片叶子上时,它们通常会相互抵消,尽管降低了繁殖力,但大多数性能参数与对照相似。但是,连续的植物感染(病原菌相隔五天使用)导致繁殖力降低70%,内在增长率降低50%。在灰霉病之前施用锈病比在灰霉病之前施用灰霉病对蚜虫具有更大的抑制作用。锈病感染使叶片总氮浓度增加了30%,而有或没有锈菌的葡萄孢菌感染使叶片总氮浓度降低了38%。蚜虫对两种植物病原体的反应分别与感染引起的植物养分含量的变化,不同植物防御途径的诱导以及它们之间可能的串扰相一致。这是首次通过对比病原体对昆虫食草动物的双重感染而产生的植物双重感染的复杂作用。 ud ud关键字:蚕豆,灰葡萄孢,乌里霉菌,三方相互作用,诱导抗性

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