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Comparative study on apparent digestibility coefficients of crude protein and amino acids from ten novel protein sources in Chinese mitten crab (<italic>Eriocheir sinensis</italic>)

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中国科学数据2026-04-23 更新2026-04-25 收录
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The global shortage and rising cost of fish meal have driven growing interest in novel protein sources for aquafeed. Advanced processing technologies, including enzymatic hydrolysis, fermentation, extrusion, and hydrolysis, have enabled the production of various deeply processed protein ingredients; however, their digestive utilization in aquatic animals remains insufficiently characterized. As a commercially important crustacean, Chinese mitten crab (Eriocheir sinensis) possesses a digestive physiology that differs fundamentally from that of fish, and the direct application of fish-derived digestibility data to crab feed formulation can lead to substantial errors. However, systematic digestibility data for novel protein sources in this species remain scarce, and whether crude protein apparent digestibility coefficients (ADCs) can reliably predict amino acid availability in highly processed ingredients has not been empirically examined. This study aimed to evaluate the ADCs of ten novel protein ingredients in Chinese mitten crab and to investigate the discrepancy between crude protein and amino acid digestibility across different processing technologies. Ten commercial protein ingredients were tested against fish meal (FM) as the control, including enzymatically hydrolyzed chicken meal (EHCM), feather meal (EHFM), full-fat soybean (EHFS), and soy protein (EHSP); fermented cottonseed meal (FCM) and soybean meal (FSM); extruded soybean meal (ESM) and feather meal (EFM); hydrolyzed feather meal (HFM) and hydrolyzed processed fish meal (HF). Male crabs [initial body weight (125.0 ± 6.1) g] were assigned to 12 groups (3 replicates, 6 crabs each). Using yttrium oxide (Y2O3, 0.1%) as an inert marker, ADCs of dry matter, crude protein, crude lipid, and 17 amino acids were determined via the 70% basal diet + 30% test ingredient substitution method, with fecal collection conducted over 80 days. Ingredient type and processing technology significantly affected all nutrient ADCs (P P > 0.05), while ESM, HFM (65.28%), EHFS (65.11%), and HF (69.22%) were significantly lower (P r = 0.796, P = 0.003). EHCM and FCM exhibited the largest positive DDI values (+30.4% and +27.0%), indicating that non-protein nitrogen substantially inflated crude protein ADC relative to actual amino acid utilization. Conversely, ESM showed the largest negative DDI (−21.8%), demonstrating that crude protein ADC underestimated its amino acid utilization potential. In conclusion, EHCM and EFM are high-quality alternative protein sources for Chinese mitten crab with protein digestibility comparable to fish meal. This study reveals that crude protein ADC is an unreliable predictor of amino acid availability in deeply processed ingredients. It is recommended that amino acid-based digestibility data be incorporated into feed formulation systems to correct evaluation biases introduced by processing technologies.

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2026-04-23
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