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Elucidation of the genomic basis of indirect plant defense against insects

机译:阐明植物对昆虫的间接防御的基因组基础

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摘要

Using airborne signals to attract herbivore predators and parasitoids is an important strategy that plants use in defense against herbivorous insects. The volatiles involved in this indirect plant defense are often chemically complex and variable across species. We recently established rice as a model for studying the molecular and genomic basis of volatile-mediated indirect plant defense. Rice plants when damaged by fall armyworm larvae become highly attractive to parasitic wasps. The volatiles potentially responsible for parasitoid attraction were determined to be a blend of compounds predominated by terpenoids, of which S-linalool is the most abundant. Racemic linalool alone was shown to be effective in attracting parasitic wasps. By combining volatile profiling and microarray analysis, a catalog of candidate genes for volatile biosynthesis was identified. Three genes encoding terpene synthases were biochemically characterized. They are responsible for the production of the majority of volatile terpenes released from insect-damaged rice plants. Additional candidate genes are being currently characterized for their role in production of other insect-induced volatiles from rice plants. Identification of a complete set of key genes for synthesizing herbivory-induced volatiles in rice will provide an important reference for comparative studies of this important defense trait across a variety of plant species.
机译:利用空气传播的信号吸引草食动物的食肉动物和寄生生物是植物用于防御草食性昆虫的重要策略。这种间接植物防御作用所涉及的挥发物在化学上通常很复杂,并且在物种之间是可变的。我们最近建立了水稻作为研究挥发性介导的间接植物防御的分子和基因组基础的模型。水稻植物在秋季被粘虫幼虫破坏后,对寄生性黄蜂极具吸引力。经测定,可能导致类寄生物吸附的挥发物是由萜类化合物为主的化合物的混合物,其中S-芳樟醇含量最高。研究表明,单独的外消旋芳樟醇可有效吸引寄生性黄蜂。通过结合挥发性分析和微阵列分析,确定了挥发性生物合成的候选基因目录。对三个编码萜烯合酶的基因进行了生化鉴定。它们负责生产从虫害水稻植物释放的大多数挥发性萜烯。目前正在表征其他候选基因在水稻中其他昆虫诱导的挥发物生产中的作用。鉴定用于合成水稻中草食性诱导的挥发物的完整关键基因的完整集,将为比较研究各种植物物种这一重要防御性状提供重要参考。

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