Li Wen-Feng, Li Shuang, Liu Jie, Wang Xiao-Fei, Chen Hui-Yun, Hao Hua, Wang Ke-Jian
State Key Laboratory of Marine Environmental Science, College of Ocean & Earth Sciences, Xiamen University, Xiamen 361102, China.
State-Province Joint Engineering Laboratory of Marine Bioproducts and Technology, College of Ocean & Earth Sciences, Xiamen University, Xiamen 361102, China.
Metabolites. 2021 Sep 23;11(10):651. doi: 10.3390/metabo11100651.
Pubertal molt is a vital stage in the cultivation of mature female crabs in the aquacultural industry of . Since fasting occurs during molting, which requires a large supply of energy, internal energy reserves are critical. However, the dynamics of energy supply during pubertal molt is not clear. This study focuses on the variations of carbohydrates and lipids in serum during the pubertal molt of via a metabolomics approach. Eleven lipid or carbohydrate metabolic pathways were significantly influenced postmolt. A remarkable decrease in carbohydrates in serum suggested that free sugars were consumed for energy. A significant decrease in glucose and alpha-d-glucosamine 1-phosphate showed that chitin synthesis exhausted glycogen, resulting in insufficient glucose supply. An increase in l-carnitine and acetylcarnitine, and a significant decrease in 15 fatty acyls and 8 glycerophosphocholines in serum indicated that carnitine shuttle was stimulated, and β-oxidation was upregulated postmolt. In addition, astaxanthin, ponasterone A, and riboflavin in serum were significantly decreased postmolt. Eleven potential metabolite biomarkers were identified for pubertal molt. Taken together, carbohydrates and lipids were possibly major energy reserves in pubertal molt. This study suggests that an increase in carbohydrate and lipid levels in crab feed may alleviate the effects of fasting during molt and improve farm productivity in mature female crabs.
青春期蜕壳是螃蟹养殖业中培育成熟雌蟹的一个关键阶段。由于蜕壳期间会出现禁食情况,这需要大量能量供应,因此体内能量储备至关重要。然而,青春期蜕壳期间的能量供应动态尚不清楚。本研究通过代谢组学方法,聚焦于螃蟹青春期蜕壳过程中血清中碳水化合物和脂质的变化。蜕壳后,11条脂质或碳水化合物代谢途径受到显著影响。血清中碳水化合物显著减少,表明游离糖被消耗用于提供能量。葡萄糖和α - d - 葡糖胺1 - 磷酸显著减少,表明几丁质合成耗尽了糖原,导致葡萄糖供应不足。血清中左旋肉碱和乙酰肉碱增加,15种脂肪酰基和8种甘油磷酸胆碱显著减少,表明肉碱穿梭被激活,蜕壳后β - 氧化上调。此外,蜕壳后血清中的虾青素、蜕皮甾酮A和核黄素显著减少。确定了11种青春期蜕壳的潜在代谢物生物标志物。综上所述,碳水化合物和脂质可能是青春期蜕壳过程中的主要能量储备。本研究表明,提高螃蟹饲料中碳水化合物和脂质水平可能减轻蜕壳期间禁食的影响,并提高成熟雌蟹的养殖产量。