Optimal sugar components provide essential cues for the formation of host‐specialised cotton‐melon aphids
作者:Yongqian Zhang, Yue Zhang, Xinxiang Wang, Hongyu Yan, Zhiyong Zhang, Ran Huo, A. Chen, Yanli Du, Honggang Guo · 发表于:Ecological Entomology · 年份:2024 · DOI:10.1111/een.13414 · 研究领域:Insect-Plant Interactions and Control、Plant and animal studies、Insect and Arachnid Ecology and Behavior
Abstract Host specialisation is a common phenotype in herbivores and is considered as an important driver for species diversity of herbivores. Previous studies have revealed that a distinct plant defence mechanism underlies herbivores' host specialisation. However, the role of plant nutritional status, especially sugar metabolism, is a widely overlooked driver of host specialisation formation. Here, the Cucurbitaceae biotype (CA) and Malvaceae biotype (MA) of cotton‐melon aphids, Aphis gossypii , were used to reveal the potential role of plant sugar metabolism in the formation of host‐specialised aphid biotypes. The abundance, intrinsic rate of increase and net reproductive rate of CA and MA biotypes significantly decreased after reciprocal host transfer, suggesting a host utilisation trade‐off between these biotypes. Further analysis of sugar quality showed differences in sugar components, especially raffinose‐family oligosaccharides (RFOs), between watermelon and cotton plants. The concentrations and ratios of raffinose and stachyose were higher in watermelon leaves than in cotton leaves, respectively. Exogenous application of different sugar substrates showed that CA biotypes performed the best on artificial diets with sucrose and raffinose (3:8) while MA biotypes established populations on artificial diets with only sucrose. Moreover, the level of aphid's galactosidase activity, a key enzyme in RFOs metabolism, decreased in CA biotypes but increased in MA biotypes after r...