首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Chemical Ecology Special Feature: cis-Jasmone induces Arabidopsis genes that affect the chemical ecology of multitrophic interactions with aphids and their parasitoids
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Chemical Ecology Special Feature: cis-Jasmone induces Arabidopsis genes that affect the chemical ecology of multitrophic interactions with aphids and their parasitoids

机译:化学生态学特色:顺式茉莉酮诱导拟南芥基因影响与蚜虫及其寄生虫多营养相互作用的化学生态学

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摘要

It is of adaptive value for a plant to prepare its defenses when a threat is detected, and certain plant volatiles associated with insect damage, such as cis-jasmone (CJ), are known to switch-on defense metabolism. We used aphid and aphid parasitoid responses to Arabidopsis thaliana as a model system for studying gene expression and defense chemistry and its impact at different trophic levels. Differential responses to volatiles of induced Arabidopsis occurred for specialist and generalist insects: the generalist aphid, Myzus persicae, was repelled, whereas the specialist, Lipaphis erysimi, was attracted; the generalist aphid parasitoid Aphidius ervi was attracted, but the specialist parasitoid Diaeretiella rapae was not affected. A. ervi also spent longer foraging on induced plants than on untreated ones. Transcriptomic analyses of CJ-induced Arabidopsis plants revealed that a limited number of genes, including a gene for a cytochrome P450, CYP81D11, were strongly up-regulated in the treated plants. We examined transgenic Arabidopsis lines constitutively overexpressing this gene in bioassays and found insect responses similar to those obtained for wild-type plants induced with CJ, indicating the importance of this gene in the CJ-activated defense response. Genes involved in glucosinolate biosynthesis and catabolism are unaffected by CJ and, because these genes relate to interactions with herbivores and parasitoids specific to this family of plants (Brassicaceae), this finding may explain the differences in behavioral response of specialist and generalist insects.
机译:当发现威胁时,为植物准备防御措施具有适应性价值,并且已知与昆虫危害相关的某些植物挥发物(例如顺式茉莉酮(CJ))会开启防御代谢。我们使用拟南芥的蚜虫和蚜虫类寄生虫响应作为模型系统来研究基因表达和防御化学及其在不同营养水平的影响。普通昆虫和普通昆虫对诱导的拟南芥挥发物的反应不同:普通蚜虫Myzus persicae被驱除,而普通蚜虫Lipaphis erysimi被吸引。普通蚜虫寄生的蚜虫Aphidius ervi被吸引,但是专业寄生虫的菜蛾Diaretetella rapae没有受到影响。拟南芥还花费比未处理的植物更长的觅食诱导植物。 CJ诱导的拟南芥植物的转录组学分析显示,在处理过的植物中,有限数量的基因(包括细胞色素P450的基因CYP81D11)被强烈上调。我们在生物测定中检查了组成型过表达该基因的转基因拟南芥品系,发现与由CJ诱导的野生型植物获得的昆虫反应相似,表明该基因在CJ激活的防御反应中的重要性。芥子油苷生物合成和分解代谢所涉及的基因不受CJ的影响,并且由于这些基因与与该植物家族(十字花科)特有的草食动物和拟寄生物的相互作用有关,这一发现可能解释了专门昆虫和普通昆虫行为反应的差异。

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