通过烘箱和高压锅加热优化翼状豆粕,将其作为植物性水产饲料的可行替代品

Shobrina Silmi Qori Tartila, Tholibah Mujtahidah, Muh. Azril, Anjali Apta Pramudita, Lusi Septiani, Bagas Putra Satria, Ignatius Abel Cristanto, Muhammad Abizar Sakti Oktavian, Sultan Jibran Risqulloh, Santika Dewi Astuti
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摘要

尽管翼豆粕具有胰蛋白酶抑制特性,但可通过加热过程减轻这种特性,因此可作为植物性鱼饲料中豆粕的替代品。本研究旨在根据近似物分析和胰蛋白酶活性,探讨翼豆粕在不同加热方法(即烤箱(110 °C,30 分钟)和高压锅(121 °C,30 分钟))下的潜力。研究采用了三种处理,四次重复:烤箱加热(O)、高压锅加热(A)和对照组(不加热,E)。所有数据均采用方差分析和邓肯多重范围检验进行分析,以确定最佳处理方法。数据还与印度尼西亚几种养殖淡水鱼的营养需求进行了比较。加热处理提高了体外胰蛋白酶活性(1300 单位/O 和 1135 单位/A 对 835 单位),但降低了蛋白质(29.05±1.96%/A 和 31.73±1.52%/O 对 35.17±0.38%)和水分含量。此外,O 型处理符合水产饲料蛋白质含量标准(27-45%),有可能满足鲶鱼(25-40%)、尼罗罗非鱼(30-35%)和爪哇鲃(30-32%)的蛋白质要求。因此,烤箱加热是一种可行的替代植物性水产饲料成分。不过,应进一步评估带翅豆粕作为水产饲料配料的体内应用,以确定加热处理是否能有效提高目标鱼类的消化活性、营养保留和生长性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing winged-bean meal through oven and autoclave heating as viable alternative for plant-based aquafeed
Winged-bean meal can serve as a substitute for soybean meal in plant-based fish feed, despite its trypsin-inhibitor properties, which can be alleviated through heating processes. This study aimed to explore the potential of winged-bean meal subjected to different heating methods, namely oven (110 °C for 30 minutes) and autoclave (121 °C for 30 minutes), based on proximate analysis and trypsin activity. The study applied three treatments with four replications: oven heating (O), autoclave heating (A), and control (without heating, E). All data were analyzed using analysis of variance and Duncan’s multiple range test to determine the best treatment. Data were also compared to the nutrient requirements of several cultured freshwater fish in Indonesia. Heating treatments improved in vitro trypsin activity (1300 units/O and 1135 units/A vs. 835 units) but reduced protein (29.05±1.96%/A and 31.73±1.52%/O vs. 35.17±0.38%) and moisture contents. Additionally, the O treatment met the standards for aquafeed protein content (27-45%) and potentially fulfilled the protein requirements for catfish (25-40%), Nile tilapia (30-35%), and Java barb (30-32%). Therefore, oven heating presents a viable candidate as an alternative plant-based aquafeed ingredient. Nevertheless, the in vivo application of winged-bean meal as an aquafeed ingredient should be further evaluated to determine whether heating treatment effectively enhances digestive activity, nutrient retention, and growth performance in target fish species.
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