Bethi Cathrine Monica Spandana, Prakash Gowthami Jay, Pedda Muthukumar Serva, Kudre Tanaji G
Department of Meat and Marine Sciences, CSIR-Central Food Technological Research Institute, Mysore, Karnataka 570020 India.
Department of Biochemistry, CSIR-Central Food Technological Research Institute, Mysore, Karnataka 570020 India.
3 Biotech. 2023 Feb;13(2):69. doi: 10.1007/s13205-023-03487-1. Epub 2023 Jan 30.
The present study aimed to evaluate the impact of fermented meat processing wastewater protein hydrolysate (FWMPH) prepared by fermentation as an alternative protein source on growth performance, serum biochemistry, and hematological parameters of broiler chicks. FWMPH exhibited antioxidant, anti-angiotensin converting enzyme (ACE), and antimicrobial properties. A total of 60 one-day-old Vencobb broiler chicks were divided into five dietary groups on day 8 and a feeding trial was performed for 48 days. Diets were prepared by replacing soya protein concentrate (SPC) at different levels of FWMPH as the protein source. These diets were denoted as SPSD (100% SPC), FMP-25 (25% FWMPH + 75% SPC), FMP-50 (50% FWMPH + 50% SPC), FMP-75 (75% FWMPH + 25% SPC), and FMP-100 (100% FWMPH). FMP-25 and FMP-100 diet group broiler chicks showed the highest and lowest feed consumption ( < 0.05), respectively. However, the highest body weight gain (1506.08 ± 52.52 g) was observed in FMP-75 diet-fed chicks ( < 0.05). Furthermore, FMP-75 chicks displayed better feed conversion ratio (1.96), feed efficiency ratio (0.51), and protein efficiency ratio (2.32) values than other diet group chicks ( < 0.05), implying that the FMP-75 diet had better effect on the broiler growth. Also, the FMP-75 diet chicks showed better hematological values, serum biochemical parameters revealed no negative effect upon FWMPH consumption, and no pathological signs were observed in the histopathological examination as compared to the SPSD diet group ( < 0.05). Hence, the results could be helpful in the application of FWMPH at 75% level in the poultry feed as a potential protein ingredient in the countries looking for local feed protein products as soya bean meal replacement.
本研究旨在评估通过发酵制备的发酵肉类加工废水蛋白水解物(FWMPH)作为替代蛋白质来源对肉鸡生长性能、血清生化指标和血液学参数的影响。FWMPH具有抗氧化、抗血管紧张素转换酶(ACE)和抗菌特性。在第8天,将总共60只1日龄的Vencobb肉鸡雏鸡分为五个日粮组,并进行了48天的饲养试验。通过用不同水平的FWMPH替代大豆浓缩蛋白(SPC)作为蛋白质来源来制备日粮。这些日粮分别标记为SPSD(100% SPC)、FMP-25(25% FWMPH + 75% SPC)、FMP-50(50% FWMPH + 50% SPC)、FMP-75(75% FWMPH + 25% SPC)和FMP-100(100% FWMPH)。FMP-25和FMP-100日粮组的肉鸡雏鸡分别表现出最高和最低的采食量(<0.05)。然而,在FMP-75日粮喂养的雏鸡中观察到最高的体重增加(1506.08±52.52克)(<0.05)。此外,FMP-75组雏鸡的饲料转化率(1.96)、饲料效率比(0.51)和蛋白质效率比(2.32)值优于其他日粮组雏鸡(<0.05),这意味着FMP-75日粮对肉鸡生长有更好的效果。而且,FMP-75日粮组雏鸡的血液学值更好,血清生化指标显示食用FWMPH没有负面影响,与SPSD日粮组相比,组织病理学检查未观察到病理迹象(<0.05)。因此,这些结果可能有助于在寻求当地饲料蛋白质产品以替代豆粕的国家中,将75%水平的FWMPH作为潜在的蛋白质成分应用于家禽饲料中。