Parasitoid parasitism reprograms host metabolism to nourish the developing offspring, yet its impact on alternative carbohydrate pathways, such as the polyol pathway, is poorly understood. Here, we demonstrate that a generalist parasitoid wasp, Meteorus pulchricornis, suppresses sorbitol contents in the larvae of Spodoptera frugiperda by downregulating polyol metabolism in the fat body. Two aldose reductase genes of S. frugiperda, AKR1B1-1 and AKR1B1-2, responsible for catalyzing glucose-to-sorbitol conversion, are identified as key mediators of this metabolic shift. Furthermore, sorbitol restoration in hosts disrupts parasitoid larval development and reduces its fitness, including a decrease in pupation rate, reduced cocoon weight, smaller adult size, and lower parasitism rates. Transcriptomic analysis and the fluctuating reactive oxygen species level suggest that the elevated host-circulating sorbitol may disrupt redox homeostasis in developing wasp larvae. These findings provide new insights into host-parasite metabolic interactions centered on polyol metabolism and lay the groundwork for enhancing parasitoid-based biological control strategies.