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Aphid Feeding Induces Phytohormonal Cross-Talk without Affecting Silicon Defense against Subsequent Chewing Herbivores

机译:蚜虫喂养诱导狂欢狂暴的跨谈而不会影响随后的咀嚼食草动物的硅防御

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摘要

Prior feeding by insect herbivores frequently affects plant quality for herbivores that subsequently feed on the plant. Facilitation occurs when one herbivore improves plant quality for other herbivores, including when the former compromises plant defenses. Silicon (Si) is an important defense in grasses that increases following activation of the jasmonic acid (JA) pathway. Given that aphids often stimulate the salicylic acid (SA) pathway, we hypothesized that this could reduce Si defense because of the well documented antagonistic cross-talk between SA and JA. We tested this in the model grass with and without Si (+Si and −Si, respectively); half of the plants were exposed to aphids ( ) and half remained aphid-free. Aphid-free and aphid-exposed plants were then fed to chewing herbivores ( ). Aphids triggered higher SA concentrations which suppressed JA concentrations but this did not affect foliar Si. Chewing herbivores triggered higher JA concentrations and induced Si uptake, regardless of previous feeding by aphids. Chewer growth rates were not impacted by prior aphid herbivory but were reduced by 75% when feeding on +Si plants. We concluded that aphids caused phytohormonal cross-talk but this was overridden by chewing herbivory that also induced Si uptake.
机译:昆虫食草饲料之前的饲料经常影响食草动物的植物质量,随后喂养植物。当一个草食动物提高其他食草动物的工厂质量时,就会发生促进,包括当前妥协植物防御。硅(Si)是在茉莉酸(JA)途径激活后增加的草地的重要防御。鉴于蚜虫经常​​刺激水杨酸(SA)途径,我们假设这可能会降低SI防御,因为SA和JA之间的良好拮抗串扰。我们在模型草中测试了它,没有SI(分别为+ Si和-SI);一半的植物暴露于蚜虫(),一半仍然保持蚜虫。然后将蚜虫和蚜虫暴露的植物喂养给口味()。蚜虫引发了更高的SA浓度,抑制了JA浓度,但这并不影响叶酸Si。咀嚼食草动物引发了更高的JA浓度并诱导SI摄取,无论蚜虫以前喂养。在+ Si植物喂食时,咀嚼剂生长率不会受到先前蚜虫食草的影响,但在+ Si植物时减少了75%。我们得出结论,蚜虫引起了浮肿狂野交谈,但这是通过咀嚼草食病而诱发SI吸收的草药覆盖。

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