卢迪亚纳市场销售的鱼类近似化学成分的年度变化:印度旁遮普邦

Pargi Narendrakumar Arjunsinh, S. N. Datta, Ajeet Singh, Prabjeet Singh
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引用次数: 0

摘要

研究调查了四种不同鱼类(Wallago attu、Labeo rohita、Pangasianodon hypophthalmus 和 Rastrelliger kanagurta)的营养成分,这些鱼类来自内陆和海洋领域,包括养殖和捕捞,于 2021 年 9 月至 2022 年 8 月在卢迪亚纳鱼类市场销售,包括四个不同的季节:季风后、冬季、季风前和季风。按照标准方法分析了近似参数,包括蛋白质、脂肪、碳水化合物、灰分和水分含量。四种鱼类的水分含量从 72.48% 到 81.08% 不等。季风前季节的水分含量最低,而季风季节的水分含量最高。不同季节的蛋白质含量从 9.72% 到 18.36% 不等。具体而言,P. hypophthalmus 的蛋白质含量最低(9.72±0.18%),而 R. kanagurta 的蛋白质含量最高(18.36±0.18)。W. attu、L. rohita、P. hypophthalmus 和 R. kanagurta 的肉中脂质含量在季风季节最低,分别为 0.69%、1.59%、9.33% 和 2.47%,而在冬季则最高,分别为 1.07%、2.05%、11.04% 和 4.05%。在不同季节,碳水化合物的含量从 0.23% 到 2.04% 不等。R. kanagurta 的碳水化合物含量最低,而 L. rohita 的碳水化合物含量最高。不同鱼种的灰分含量从 1.62% 到 4.34% 不等,鳙鱼的灰分含量最低,阿图鱼的灰分含量最高。总体而言,在季风期间,鱼类肌肉中的水分含量达到最高水平,而肌肉蛋白质含量则有所下降。肌肉中蛋白质含量的下降和水分含量的上升归因于性腺的发育和成熟,这在季风季节消耗了肌肉中的蛋白质储备。研究发现,鱼类的水分和脂肪含量之间存在反比关系,这表明脂肪含量高的鱼类通常水分含量相对较低。在鱼类肌肉的总近似成分中,碳水化合物含量较低,这表明淡水鱼的大部分糖原对身体储备的贡献不大。
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Annual Variation in Proximate Chemical Composition of Fish Sold in Ludhiana Market: Punjab, India
A study was carried out to investigate the nutritional composition of four different fish species (Wallago attu, Labeo rohita, Pangasianodon hypophthalmus, and Rastrelliger kanagurta) sourced from the inland and marine sector comprising both culture and capture fisheries marketed in Ludhiana fish market from September 2021 to August 2022, encompassing four distinct seasons: post-monsoon, winter, pre-monsoon, and monsoon. The proximate parameters including protein, lipid, carbohydrate, ash and moisture content were analysed following the standard methods. The moisture content across the four species ranged from 72.48% to 81.08% in selected fish. Lowest moisture content was recorded during the pre-monsoon season, contrasting with their highest levels during the monsoon season. Protein levels ranged from 9.72% to 18.36% across different seasons. Specifically, P. hypophthalmus displayed the lowest protein content (9.72±0.18%), while R. kanagurta exhibited the highest (18.36±0.18). W. attu, L. rohita, P. hypophthalmus, and R. kanagurta exhibited their lowest lipid content in flesh during the monsoon season, measuring at 0.69%, 1.59%, 9.33%, and 2.47%, respectively, contrasting with their highest levels during the winter season at 1.07%, 2.05%, 11.04%, and 4.05%, respectively. Across different seasons, carbohydrate content varied from 0.23% to 2.04%. R. kanagurta exhibited the lowest carbohydrate values; while L. rohita displayed the highest. Across different species, ash content varied from 1.62% to 4.34%, with the lowest observed in P. hypophthalmus and the highest in W. attu. Overall in fish muscle, water content reached its peak levels while muscle protein content decreased during the monsoon. The decline in protein and the rise in water content of the muscle were attributed to gonadal development and maturation, which depleted muscle protein reserves during the monsoon season. Inverse relationship between moisture and fat content in fish were observed, suggesting that fatty fish typically exhibit relatively lower moisture content. Lower levels of carbohydrate content are found in the total proximate composition of fish muscle, indicating that most of the glycogen in freshwater fish does not significantly contribute to body reserves.
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