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桃蚜(半翅目:蚜科)对甘蓝和辣椒植株的转录和生理可塑性

Transcriptional and physiological plasticity of the green peach aphid (Hemiptera: Aphididae) to cabbage and pepper plants.

作者信息

Wu Jun, Zhang Zhan-Feng, Cao He-He, Liu Tong-Xian

机构信息

Department of Plant Protection, Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, P. R. China.

Department of Entomology, State Key Laboratory of Crop Stress Biology in Arid Areas, Key Laboratory of Northwest Loess Plateau Crop Pest Management of Ministry of Agriculture, College of Plant protection, Northwest A&F University, Yangling, P. R. China.

出版信息

J Econ Entomol. 2025 Feb 11;118(1):416-429. doi: 10.1093/jee/toae258.

Abstract

Defensive metabolites and nutrient restriction of host plants are 2 major obstacles to the colonization of insect herbivores. The green peach aphid (GPA) Myzus persicae (Sulzer) broadly colonizes plants with diverse nutritional and defensive traits. However, how GPA adapts to nutritional and defensive traits within different plants remains largely unknown. To elucidate this, we first investigated the performances and transcriptomes of GPA feeding on cabbage Brassica oleracea and pepper Capsicum annuum. The green peach aphid had lower weight and fecundity when feeding on cabbage than on pepper. The transcriptomic analysis found 824 differentially expressed genes (DEGs), and 13 of the top 20 Kyoto Encyclopedia of Genes and Genomes pathways are related to nutrient metabolism, energy metabolism, and detoxification. Specifically, we found 160 DEGs associated with the metabolism of protein and amino acids, sugar and lipids, and xenobiotic substances, 86 upregulated in cabbage-fed GPA. Fourteen cathepsin B genes were strongly upregulated in cabbage-fed GPA, and were enriched in lysosome pathway and 2 dominated gene ontology terms peptidase activity and proteolysis. In addition, cabbage-fed GPA upregulated sugar and lipid digestion, while downregulated lipid biosynthesis processes. Furthermore, 55 metabolic detoxification enzyme genes were differentially expressed between GPA on 2 hosts, and detoxification enzyme activities of GPA indeed changed accordingly to the host. Then, we found that cabbage has lower amino acids nutrition quality for GPA compared to pepper. Our results suggested that adjustment of nitrogen nutrient metabolism, sugar and lipid metabolism, and metabolic detoxification in a host-specific manner play crucial roles in the adaptations of GPA to different host plants.

摘要

寄主植物的防御性代谢产物和营养限制是植食性昆虫定殖的两大主要障碍。桃蚜(GPA)烟粉虱广泛寄生于具有不同营养和防御特性的植物上。然而,桃蚜如何适应不同植物中的营养和防御特性在很大程度上仍不清楚。为了阐明这一点,我们首先研究了取食甘蓝和辣椒的桃蚜的性能和转录组。取食甘蓝的桃蚜比取食辣椒的桃蚜体重和繁殖力更低。转录组分析发现了824个差异表达基因(DEG),前20个京都基因与基因组百科全书通路中有13个与营养代谢、能量代谢和解毒有关。具体而言,我们发现160个DEG与蛋白质和氨基酸、糖和脂质以及异生物质的代谢相关,在取食甘蓝的桃蚜中有86个上调。14个组织蛋白酶B基因在取食甘蓝的桃蚜中强烈上调,并在溶酶体通路中富集,且在2个主要的基因本体术语肽酶活性和蛋白水解中占主导地位。此外,取食甘蓝的桃蚜上调了糖和脂质消化,而下调了脂质生物合成过程。此外,两种寄主上的桃蚜之间有55个代谢解毒酶基因差异表达,桃蚜的解毒酶活性确实根据寄主而发生相应变化。然后,我们发现与辣椒相比,甘蓝对桃蚜的氨基酸营养质量较低。我们的结果表明,以寄主特异性方式调节氮营养代谢、糖和脂质代谢以及代谢解毒在桃蚜对不同寄主植物的适应中起着关键作用。

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