Cao Hehe, Wang Xi, Wang Jiawei, Lu Zhaozhi, Liu Tongxian
Shandong Engineering Research Center for Environment-Friendly Agricultural Pest Management, College of Plant Health and Medicine, Qingdao Agricultural University, Qingdao 266109, China.
Institute of Entomology, Guizhou University, Guiyang 550025, China.
Insects. 2024 Apr 16;15(4):279. doi: 10.3390/insects15040279.
The pea aphid, , is a major pest of legume crops, exhibiting distinct polymorphism in terms of wings and body color. We found that, under crowded conditions, the red morph produced more winged offspring than the green morph. The signaling pathways involved in aphid wing determination, like insulin and ecdysone, also play important roles in regulating growth, development, and metabolism. Thus, here, we examined the association between the wing-producing ability and the growth rate, development time, reproductive capacity, and energy metabolism in these two color morphs. The growth rate of red morphs was significantly higher than that of green morphs, whereas green morphs produced more offspring during the first 6 days of the adult stage. Red morphs accumulated higher levels of glycogen and triglycerides and consumed more triglycerides during starvation; however, green aphids consumed more trehalose during food deprivation. Red aphids exhibited stronger starvation tolerance, possibly due to their higher triglyceride catabolic activity. Furthermore, the expression levels of genes involved in the insulin pathway, glycolysis, and lipolysis in red aphids were higher than those in green aphids. These results suggest that the wing-producing ability of the pea aphid may be associated with its growth and metabolism, which may be due to the shared regulatory signaling pathways.
豌豆蚜是豆科作物的主要害虫,在翅型和体色方面表现出明显的多态性。我们发现,在拥挤条件下,红色形态的豌豆蚜产生的有翅后代比绿色形态的更多。参与蚜虫翅型决定的信号通路,如胰岛素和蜕皮激素,在调节生长、发育和代谢方面也发挥着重要作用。因此,在这里,我们研究了这两种体色形态的豌豆蚜在产生翅的能力与生长速率、发育时间、繁殖能力和能量代谢之间的关联。红色形态豌豆蚜的生长速率显著高于绿色形态的,而绿色形态的豌豆蚜在成虫阶段的前6天产生更多后代。红色形态的豌豆蚜积累了更高水平的糖原和甘油三酯,并且在饥饿期间消耗更多的甘油三酯;然而,绿色蚜虫在食物缺乏期间消耗更多的海藻糖。红色蚜虫表现出更强的饥饿耐受性,这可能是由于它们更高的甘油三酯分解代谢活性。此外,红色蚜虫中参与胰岛素信号通路、糖酵解和脂解的基因表达水平高于绿色蚜虫。这些结果表明,豌豆蚜产生翅的能力可能与其生长和代谢有关,这可能是由于共享的调节信号通路所致。