The global poultry industry faces a major transition driven by bans on antibiotic growth promoters (AGPs) and rising antimicrobial resistance threats. This has intensified the search for effective, sustainable alternatives to maintain productivity, animal health, and food safety. This review provides a comprehensive overview of next-generation probiotics (NGPs) and their evolving role in poultry production, highlighting their mechanisms of action, technological advancements, and applications for improving performance and health. Recent studies were systematically reviewed, covering conventional and NGPs, multi-omics-driven strain identification strategies, engineered microbial systems, and advanced delivery technologies. Key functional aspects, including gut microbiota modulation, immune responses, pathogen control, and productivity metrics were thoroughly assessed. NGPs exhibit enhanced capabilities over traditional probiotics, including improved gut colonization, targeted antimicrobial activity, and precise host immune modulation. Advances in synthetic biology, microencapsulation, and synbiotic formulations enhance their efficacy and stability. Additionally, NGPs also demonstrate significant potential in improving growth performance, feed conversion ratios, intestinal integrity, and enteric pathogen resistance. However, challenges such as strain-specific variability, regulatory constraints, and limited field-level validation persist. NGPs offer a promising and sustainable strategy for modern poultry production. Future integration with precision microbiome engineering, artificial intelligence, and sustainable farming will be essential to realize their full potential and ensure widespread adoption.
The emergence of antimicrobial resistance (AMR) has created a need for new, targeted alternatives to conventional antibiotics. Bacteriocins and other targeted antimicrobial peptides (AMPs) are emerging therapeutic approaches that have attracted attention for their potent antimicrobial properties and potential for more...
Vishakha Tyagi, Ajay Kumar, N. Thapliyal et al.· Applied microbiology· 0 citations
The rising crisis of antimicrobial resistance (AMR) in global aquaculture threatens food security and public health, calling for a shift away from prophylactic antibiotic use. Probiotics offer a potentially viable and sustainable alternative through competitive exclusion, pathogen suppression, and immunomodulation, the...
Kelvin E. Vulla, Beatrice Francis· Microbes & Immunity· 0 citations
The first part of this review synthesizes current evidence on probiotics as tools for nonspecific prevention of infectious fish diseases and technology-oriented health management in aquaculture. Infectious risks associated with intensive fish production and immunological features of fish that determine the effectivenes...
M. Manoyan, A. N. Ivanova, A. Panin et al.· Agrarian science· 1 citation
The widespread use of antibiotic growth promoters (AGPs) in livestock production has contributed to the emergence of antimicrobial resistance (AMR) in pathogens. Furthermore, improper dosing and insufficient withdrawal periods lead to the presence of antibiotic residues in meat, posing significant risks to human health...
A. Zain, Moazzam Rubab, W. Awad et al.· International Journal of Mol...· 0 citations
Simple Summary Many countries have banned antibiotic growth promoters in poultry feed, creating an urgent demand for safe and sustainable alternatives. Probiotics are one of the most promising substitutes to maintain poultry gut health and production performance. This review summarizes how probiotics protect chickens b...
Widespread antibiotic use in aquaculture has increased selective pressure on resident bacterial communities, accelerating the emergence of resistance in key pathogens and raising concerns for animal health, environmental microbiomes, and food-chain safety. Reducing dependence on therapeutic antimicrobials requires alte...
L. V. Nguyen, K. Lưu, P. Permpoonpattana et al.· Antibiotics· 0 citations
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