Application of lactic acid bacteria in the growth of aquatic animals

JIANG Dongxue, LIU Wenhan, ZHANG Chunnuan, ZHOU Yang

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PDF(635 KB)
Animals Breeding and Feed ›› 2025, Vol. 24 ›› Issue (02) : 18-24. DOI: 10.13300/j.cnki.cn42-1648/s.2025.02.004

Application of lactic acid bacteria in the growth of aquatic animals

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Abstract

Objectives The roles of lactic acid bacteria (LAB) in the growth of aquatic animals were studied to promote the better development of aquaculture industry. Methods The effects of LAB on the growth, gut health, immune ability and fat regulation of aquatic animals were reviewed. Results LAB can improve the growth performance, gut health and disease resistance of aquatic animals, with the advantages of no pollution, good effect and no side effects. Conclusions LAB as a green additive has the major trend of development in the future. However, there are many types of LAB that proliferate rapidly, and different strains have different functional characteristics. Modern molecular biology technology should be used to analyze their specific mechanisms of action, and different types and quantities of LAB should be given to aquatic animals according to their different functional requirements.

Key words

lactic acid bacteria (LAB) / aquatic animals / growth / gut health / fat regulation

CLC number

S963.211

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JIANG Dongxue , LIU Wenhan , ZHANG Chunnuan , et al. Application of lactic acid bacteria in the growth of aquatic animals. Animals Breeding and Feed. 2025, 24(02): 18-24 https://doi.org/10.13300/j.cnki.cn42-1648/s.2025.02.004

References

1
AGUIRRE M M COLLINS D. Lactic acid bacteria and human clinical infection [J].Journal of applied microbiology, 2008,75(2):95-107.
2
MUSARRAT J, GEORGE G, RICHARDI S, et al.Horizontal transfer of antibiotic resistance from Enterococcus faecium of fermented meat origin to clinical isolates of E-faecium and Enterococcus faecalis [J].International journal of food microbiology, 2015(199):78-85.
3
REDDY G, ALTAF M, NAVEENA B J, et al.Amylolytic bacterial lactic acid fermentation:a review [J].Biotechnology advances,2008,26(1):22-34.
4
BOURDICHON F, CASAREGOLA S, FARROKH C, et al.Food fermentations: microorganisms with technological beneficial use[J].International journal of food microbiology,2012,154(3):87-97.
5
MOHAMMADIAN T, ALISHAHI M, TABANDEH M R, et al.Effect of Lactobacillus plantarum and Lactobacillus delbrueckii subsp. bulgaricus on growth performance, gut microbial flora and digestive enzymes activities in Tor grypus (Karaman,1971)[J].Iranian journal of fisheries sciences, 2017,16(1):296-317.
6
GIACINTO C D, MARINARO M, SANCHEZ M,et al.Probiotics ameliorate recurrent Th1-mediated murine molitis by inducing IL-10 and IL-10-dependent TGF-β-bearing regulatory Cells[J].Journal of immunology,2005, 174(6):3237-3239.
7
ROCHET V, RIGOTTIER-GOIS L, LEVENEZ F, et al.Modulation of lactobacillus casei in ileal and fecal samples from healthy volunteers after consumption of a fermented milk containing Lactobacillus casei DN-114 001Rif [J].Canadian journal of microbiology,2008,54(8):660-667.
8
BIRK R Z, RUBIO-ALIAGA I, BOEKSCHOTEN M V,et al.Differential regulation of pancreatic digestive enzymes during chronic high-fat diet-induced obesity in C57BL/6J mice[J].British journal of nutrition,2014, 112(2):154-161.
9
ISHIKAWA H, AKEDO I, OTANI T, et al.Randomized trial of dietary fiber and Lactobacillus casei administration for prevention of colorectal tumors[J].International journal of cancer,2010,116(5):762-767.
10
刘辉,季海峰,王四新,等.益生菌对生长猪生长性能、粪便微生物数量、养分表观消化率和血清免疫指标的影响[J].动物营养学报,2015,27(3):829-837.
11
GOVINDARAJAN R J, RESEARCH A.Scope of bacteriocins as a viable alternative to the traditional antibiotics [J].Advances in plants & agriculture research,2016,5(2):1-3.
12
ALBER G J, TACON A, MARC METAIN B.Global overview on the use of fish meal and fish oil in industrially compounded aquafeeds:trends and future prospects[J].Aquaculture,2008,285(1-4): 146-158.
13
刘艳莉,胡毅,钟蕾,等.丁酸对动物肠道健康的影响及水产应用前景[J].水产科学,2019,38(2):6-8.
14
WANG Y, XU Z.Effect of probiotics for common carp (Cyprinus carpio) based on growth performance and digestive enzyme activities [J].Animal feed science and technology,2006,127(3-4):285-292.
15
VINE N G, LEUKES W D, KAISER H J. Probiotics in marine larviculture[J].Federation of european microbiological societies,2006,30(3):404-427.
16
闫波,刘宁.乳酸菌及其在食品工业中的应用与展望[J].食品研究与开发,2004,25(4):4-6.
17
卢海鹏.传统酸马奶乳酸菌的鉴定及降胆固醇作用[D].呼和浩特:内蒙古农业大学,2018.
18
华鹤良.乳酸菌的分离鉴定及其抗菌肽与发酵性能研究[D].扬州:扬州大学,2014.
19
YANG K M, JIANG Z Y, ZHENG C T,et al.Effect of Lactobacillus plantarum on diarrhea and intestinal barrier function of young piglets challenged with enterotoxigenic Escherichia coli K88 [J].Journal of animal science, 2014,92(4):1496-1503.
20
赵亚选,宋雨明,周建平,等.饲料中单独或联合添加乳酸菌对大口黑鲈生长及免疫性能的影响[J].水生生物学报,2024,48(9):1494-1501.
21
BECK B R, KIM D, JEON J,et al.The effects of combined dietary probiotics Lactococcus lactis BFE920 and Lactobacillus plantarum FGL0001 on innate immunity and disease resistance in olive flounder (Paralichthys olivaceus)[J].Fish & shellfish immunology,2015,42(1):177-183.
22
李军亮,杨奇慧,谭北平,等.嗜酸乳杆菌对斜带石斑鱼幼鱼生长、消化性能和抗病力的影响[J].水生生物学报,2019, 43(5):9-12.
23
王国霞,黄燕华,周晔,等.乳酸菌对凡纳滨对虾幼虾生长性能、消化酶活性和非特异性免疫的影响[J].动物营养学报,2010,22(1):228-234.
24
杨洁,杨锦英,高峰,等.乳酸菌对河蟹生长及蟹塘环境影响的研究[J].渔业致富指南,2018(12): 59-61.
25
孟晓林,李文均,聂国兴.鱼类肠道菌群影响因子研究进展[J].水产学报,2019,43(1):143-155.
26
刘艳莉,胡毅,钟蕾,等.丁酸对动物肠道健康的影响及水产应用前景[J].水产科学,2019,38(2):276-281.
27
耿爽,耿春银,杨濛,等.两种无抗制剂对育肥猪生长性能及肠道健康的影响[J].中国畜牧兽医,2021(4):1240-1250.
28
CASPARY W F.Physiology and pathophysiology of intestinal absorption[J].American journal of clinical nutrition,1992,55(1):299-308.
29
XIAY, LU M X, CHEN G,et al.Effects of dietary Lactobacillus rhamnosus JCM1136 and Lactococcus lactis subsp lactis JCM5805 on the growth, intestinal microbiota, morphology, immune response and disease resistance of juvenile Nile tilapia, Oreochromis niloticus [J].Fish & shellfish immunology,2018(76):368-379.
30
黄其永.德氏乳杆菌对哺乳仔猪消化器官及消化酶活性的影响研究[D].长沙:湖南农业大学,2013.
31
SABB J E, GODFREY P M, BRANNON P M.Adaptive response of rat pancreatic lipase to dietary fat: effects of amount and type of fat[J].The journal of nutrition,1986,116(5):892-899.
32
IEHATA S, INAGAKI T, OKUNISHI S,et al.Colonization and probiotic effects of lactic acid bacteria in the gut of the abalone Haliotis gigantea [J].Fisheries ence,2009,75(5):1285-1293.
33
MACEY B, MACEY B, COYNE V, et al.Improved growth rate and disease resistance in farmed Haliotis midae through probiotic treatment[J].Aquaculture,2005,245(1):249-261.
34
SUN Y Z, YANG H L, MA R L, et al.Effect of Lactococcus lactis and Enterococcus faecium on growth performance, digestive enzymes and immune response of grouper Epinephelus coioides [J].Aquaculture nutrition,2012, 18(3):281-289.
35
王琪,肖融,王敬,等.乳酸菌胞外多糖对动物肠道屏障功能的调控作用及机制[J].动物营养学报,2021,33(7):8-10.
36
YHA B, JZA B, JX B, et al.Effects of dietary soy isoflavone and soy saponin on growth performance, intestinal structure,intestinal immunity and gut microbiota community on rice field eel (Monopterus albus) [J].Aquaculture,2021(5):537-540.
37
GHOSH A R.Appraisal of probiotics and prebiotics in gastrointestinal infections[EB/OL].(2015-04-20)[2024-11-07].
38
STANDEN B T, RAWLING M D, DAVIES S J,et al.Probiotic Pediococcus acidilactici modulates both localised intestinal and peripheral-immunity in tilapia (Oreochromis niloticus) [J].Fish & shellfish immunology,2013, 35(4):1097-1104.
39
PICCHIETTI S, MAZZINI M, TADDEI A R, et al.Effects of administration of probiotic strains on GALT of larval gilthead seabream: immunohistochemical and ultrastructural studies[J].Fish & shellfish immunology, 2007, 22(1):57-67.
40
SIMONA P, ANNA M F, RANDELLI E, et al.Early treatment with Lactobacillus delbrueckii strain induces an increase in intestinal T-cells and granulocytes and modulates immune-related genes of larval Dicentrarchus labrax [J].Fish & shellfish immunology,2009,26(3):368-376.
41
胡宗福,牛化欣,于建华,等.饲料中添加植物乳杆菌对细鳞鲑生长及肠道菌群多样性的影响[J].动物营养学报,2020,32(1):346-356.
42
CAPURSO L.Thirty years of lactobacillus rhamnosus GG:a review[J].Journal of clinical gastroenterology, 2019(53):1-41.
43
YUN S, HE M, CAO Z, et al.Effects of dietary administration of Lactococcus lactis HNL12 on growth, innate immune response, and disease resistance of humpback grouper (Cromileptes altivelis) [J].Fish & shellfish immunology,2018(82):296-303.
44
NIKOSKELAINEN S, OUWEHAND A C, BYLUND G, et al.Immune enhancement in rainbow trout (Oncorhynchus mykiss) by potential probiotic bacteria (Lactobacillus rhamnosus)[J].Fish & shellfish immunology,2003, 15(5):443-452.
45
覃初斌.乳酸菌对斑马鱼繁殖力、免疫力及生长发育的作用研究[D].杨凌:西北农林科技大学, 2013.
46
VILLAMIL L, TAFALLA C, FIGUERAS A,et al.Evaluation of immunomodulatory effects of lactic acid bacteria in turbot (Scophthalmus maximus) [J]. Clin Diagn Lab Immunol,2002,9(6):1318-1323.
47
SON V M, CHANG C C, WU M C, et al.Dietary administration of the probiotic, Lactobacillus plantarum, enhanced the growth, innate immune responses, and disease resistance of the grouper Epinephelus coioides [J]. Fish & shellfish immunology, 2009(26):691-698.
48
ABDEL-TAWWAB M, ABDEL-RAHMAN A M, ISMAEL N E.Evaluation of commercial live bakers' yeast, saccharomyces cerevisiae as a growth and immunity promoter for fry Nile tilapia, Oreochromis niloticus challenged in situ with Aeromonas hydrophila [J].Aquaculture,2008,280(1-4):185-189.
49
孙盛明,苏艳莉,张武肖,等.饲料中添加枯草芽孢杆菌对团头鲂幼鱼生长性能、肝脏抗氧化指标、肠道菌群结构和抗病力的影响[J].动物营养学报,2016,28(2):507-514.
50
郭媛华,齐景伟,包海眉.我国鱼类寄生虫病的研究现状[J].中国动物传染病学报,1995(1):3-5.
51
ALKASSAA I, HOBER D, HAMZE M,et al.Antiviral potential of lactic Aacid bacteria and their bacteriocins [J]. Probiotics and antimicrobial proteins,2014,6(3-4):177-185.
52
李桂英,宋晓玲,孙艳,等.几株肠道益生菌对凡纳滨对虾非特异免疫力和抗病力的影响[J].中国水产科学,2011, 18(6):1358-1367.
53
王国霞,黄燕华,周晔,等.乳酸菌对凡纳滨对虾幼虾生长性能、消化酶活性和非特异性免疫的影响[J].动物营养学报, 2010,22(1):228-234.
54
ADESHINA I, I-O ABUBAKAR M, AJALA B E.Dietary supplementation with Lactobacillus acidophilus enhanced the growth, gut morphometry, antioxidant capacity, and the immune response in juveniles of the common carp, Cyprinus carpio [J].Fish physiology and biochemistry, 2020,46(4):1375-1385.
55
HAJIMORADL O O, ABDOLMAJ I D, VAKI L I, et al.The effects of Lactobacillus acidophilus as feed supplement on skin mucosal immune parameters, intestinal microbiota, stress resistance and growth performance of black swordtail (Xiphophorus helleri) [J]. Fish & shellfish immunology, 2015,42(2):533-538.
56
VILLAMIL L, TAFALLA C, FIGUERAS A,et al.Evaluation of immunomodulatory effects of lactic acid bacteria in turbot (Scophthalmus maximus) [J].Clinical and diagnostic laboratory immunology,2002,9(6):1318-1323.
57
张洪玉.干酪乳杆菌YYL3和植物乳杆菌YYL5的生物学特性及其对斑点叉尾鮰生长,免疫及肠道菌群的影响[D].上海:上海海洋大学,2019.
58
POURGHOLAM M A, KHARA H, SAFARI R, et al.Dietary Administration of Lactobacillus plantarum enhanced growth performance and innate immune response of Siberian Sturgeon, Acipenser baerii [J].Probiotics and antimicrobial proteins,2016,8(1):1-7.
59
HAMDANA M, El-SAYED A F M, Mahmoud M M.Effects of a novel marine probiotic, Lactobacillus plantarum AH 78, on growth performance and immune response of Nile tilapia (Oreochromis niloticus) [J].Journal of applied microbiology,2016,120(4):1061-1073.
60
GIRI S S, SUKUMARAN V, OVIYA M. Potential probiotic Lactobacillus plantarum VSG3 improves the growth, immunity, and disease resistance of tropical freshwater fish,Labeo rohita [J].Fish & shellfish immunol,2013, 34(2):660-666.
61
HARIKRISHNAN R, BALASUNDARAM C, HEO M S. Lactobacillus sakei BK19 enriched diet enhances the immunity status and disease resistance to streptococcosis infection in kelp grouper, Epinephelus bruneus [J].Fish & shellfish immunology,2010,29(6):1037-1043.
62
陈永艳,冯军厂,李梦,等.鱼源植物乳杆菌HS-07胞外多糖对鲤的益生作用[J].中国水产科学,2021,28(5):591-601.
63
FANG H, WANG B, JIANG K, et al.Effects of Lactobacillus pentosus HC-2 on the growth performance, intestinal morphology, immune-related genes and intestinal microbiota of Penaeus vannamei affected by aflatoxin B1 [J]. Aquaculture,2020(525):735289-735295.
64
ZHENG C N, WANG W.Effects of Lactobacillus pentosus on the growth performance, digestive enzyme and disease resistance of white shrimp,Litopenaeus vannamei(Boone,1931)[J].Aquaculture research, 2017, 48(6):2767-2777.
65
KHADEMZADE O, ZAKERI M, HAGHI M,et al.The effects of water additive bacillus cereus and Pediococcus acidilactici on water quality, growth performances, economic benefits, immunohematology and bacterial flora of whiteleg shrimp (Penaeus vannamei Boone, 1931) reared in earthen ponds [J]. Aquaculture research, 2020, 51(5):1759-1770.
66
ZHANG J, DONG C, FENG J,et al.Effects of dietary supplementation of three strains of Lactococcus lactis on HIFs genes family expression of the common carp following Aeromonas hydrophila infection[J].Fish & shellfish immunology,2019(92):590-599.
67
SOUSA N D C, SILVA DO COUTO M V, ABE H A, et al. Effects of an Enterococcus faecium-based probiotic on growth performance and health of Pirarucu, Arapaima gigas [J].Aquaculture research, 2019,50(12):3720-3728.
68
ALLAMEH S K, RING E, YUSOFF F M,et al.Dietary supplement of Enterococcus faecalis on digestive enzyme activities, short‐chain fatty acid production, immune system response and disease resistance of Javanese carp (Puntius gonionotus, Bleeker 1850)[J].Aquaculture nutrition,2017(23):331-338.
69
杨晶,杨庆.具有降胆固醇作用乳酸菌的研究和开发进展[J].中国微生态学杂志,2011,23(11):1047-1049.
70
周晓波,黄燕华,曹俊明,等.5种乳酸菌对罗非鱼生长性能、体成分、血清生化指标及肠道菌群的影响[J].动物营养学报,2014,26(7):2009-2017.
71
王文梅,许丽.乳酸菌体外和体内降解胆固醇的机理及其应用[J].动物营养学报,2014,26(2):295-303.
72
王之怡,钱烨,陈怡然,等.腐乳来源乳酸菌的分离及其对斑马鱼生长发育的影响[J].生物学杂志,2020,37(5):76-80.

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