Sribounoy Unchaleeporn, Pirarat Nopadon, Solval Kevin Mis, Sathivel Subramaniam, Chotiko Arranee
Division of Biology, Faculty of Science and Technology, Rajamangala University of Technology Thanyaburi, Pathum Thani, 12110 Thailand.
Department of Pathology, Faculty of Veterinary Science, Chulalongkorn University, Bangkok, 10330 Thailand.
3 Biotech. 2021 Jun;11(6):279. doi: 10.1007/s13205-021-02829-1. Epub 2021 May 20.
Growth performance and immune systems of tilapias could be improved by GG (LGG) and Jerusalem artichoke. This research aimed to determine the effects of Jerusalem artichoke on LGG viability after drying and pelleting and their subsequent exposure to simulated gastrointestinal conditions. Fresh LGG cells were added into wall material solutions, including alginate (AL), alginate + milk powder (AM), and alginate + milk powder + Jerusalem artichoke at different concentrations (AMJ). The solutions were then spray dried to obtain LGG powders. The powder with the highest cell number was then selected to mix with tilapia feed mash and pelleted using a nonthermal feed extruder to obtain pelleted feed containing LGG and Jerusalem artichoke. The LGG viability spray dried powders and pelleted feed were analyzed for their cell counts after drying and after exposure to simulated gastrointestinal conditions. The result showed that the number of viable cells in AMJ was significantly higher than AM and AL after drying. The number of viable cells under both simulated gastric and bile salt fluids was improved with the increasing of Jerusalem artichoke concentrations. The number of viable cells after pelleting process could be maintained. LGG in the pelleted feed could also survive under the simulated gastric and bile salt conditions. The study indicates that JA enhanced LGG viability after drying and exposure to simulated gastrointestinal conditions. The pelleted feed containing LGG and Jerusalem artichoke could be applied in tilapia farming, providing convenience to the farmers, and valuable effects to the fish.
罗非鱼的生长性能和免疫系统可通过鼠李糖乳杆菌(LGG)和菊芋得到改善。本研究旨在确定菊芋对干燥和制粒后LGG活力的影响,以及它们随后在模拟胃肠道条件下的情况。将新鲜的LGG细胞添加到壁材溶液中,包括不同浓度的海藻酸钠(AL)、海藻酸钠+奶粉(AM)以及海藻酸钠+奶粉+菊芋(AMJ)。然后将这些溶液进行喷雾干燥以获得LGG粉末。接着选择细胞数量最高的粉末与罗非鱼饲料糊混合,并使用非热饲料挤出机制粒,以获得含有LGG和菊芋的颗粒饲料。对喷雾干燥粉末和颗粒饲料中的LGG活力进行分析,测定干燥后以及在模拟胃肠道条件下的细胞计数。结果表明,干燥后AMJ中的活细胞数量显著高于AM和AL。在模拟胃液和胆盐溶液中,随着菊芋浓度的增加,活细胞数量有所提高。制粒过程后活细胞数量能够得以维持。颗粒饲料中的LGG在模拟胃液和胆盐条件下也能存活。该研究表明,菊芋在干燥后以及在模拟胃肠道条件下能提高LGG的活力。含有LGG和菊芋的颗粒饲料可应用于罗非鱼养殖,为养殖户提供便利,并对鱼类产生有益影响。