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联合转录组和代谢组分析鉴定了桃蚜受桃小食心虫侵害后三萜诱导的防御反应。

Combined transcriptome and metabolome analysis identifies triterpenoid-induced defense responses in Myzus persicae Sülzer-infested peach.

机构信息

National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, China.

Zhongyuan Research Center, Chinese Academy of Agricultural Sciences, Xinxiang 453500, China.

出版信息

J Exp Bot. 2024 Oct 30;75(20):6644-6662. doi: 10.1093/jxb/erae339.

DOI:10.1093/jxb/erae339
PMID:39110720
Abstract

Piercing/sucking insects such as green peach aphid (GPA) (Myzus persicae) cause direct damage by obtaining phloem nutrients and indirect damage by spreading plant viruses. To investigate the response of peach trees (Prunus persica) to aphids, the leaf transcriptome and metabolome of two genotypes with different sensitivities to GPA were studied. The gene expression of aphid-susceptible plants infested with aphids was similar to that of control plants, whereas the gene expression of aphid-resistant plants infested with aphids showed strong induced changes in gene expression compared with control plants. Furthermore, gene transcripts in defense-related pathways, including plant-pathogen interaction, MAPK signaling, and several metabolic pathways, were strongly enriched upon aphid infestation. Untargeted secondary metabolite profiling confirmed that aphid infestation induced larger changes in aphid-resistant than in aphid-susceptible peaches. Consistent with transcriptomic alterations, nine triterpenoids showed highly significant GPA-induced accumulation in aphid-resistant peaches, whereas triterpenoid abundance remained predominantly unchanged or undetected in aphid-susceptible peaches. Furthermore, some types of transcription factors (including WRKYs, ERFs, and NACs) were strongly induced upon GPA infestation in aphid-resistant, but not in aphid-susceptible peaches. These results suggested that the accumulation of specialized triterpenoids and the corresponding pathway transcripts may play a key role in peach GPA resistance.

摘要

吸食昆虫(如绿桃蚜)通过获取韧皮部养分造成直接损害,通过传播植物病毒造成间接损害。为了研究桃树对蚜虫的反应,研究了两种对绿桃蚜敏感性不同的基因型的叶片转录组和代谢组。受蚜虫侵害的蚜虫敏感植物的基因表达与对照植物相似,而受蚜虫侵害的抗蚜虫植物的基因表达与对照植物相比表现出强烈的诱导基因表达变化。此外,防御相关途径中的基因转录物,包括植物-病原体相互作用、MAPK 信号和几种代谢途径,在蚜虫侵害后强烈富集。非靶向性次生代谢物分析证实,蚜虫侵害在抗蚜虫桃树上引起的变化大于在蚜虫敏感桃树上引起的变化。与转录组变化一致,在抗蚜虫桃树上,有 9 种三萜类化合物在绿桃蚜的诱导下大量积累,而在蚜虫敏感桃树上,三萜类化合物的丰度基本不变或检测不到。此外,一些类型的转录因子(包括 WRKYs、ERFs 和 NACs)在抗蚜虫桃树上受到绿桃蚜的强烈诱导,但在蚜虫敏感桃树上则没有。这些结果表明,特化三萜类化合物的积累和相应的途径转录物可能在桃蚜抗绿桃蚜中发挥关键作用。

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