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- W2950874475 abstract "Abstract A feeding trial was conducted to determine the effect of dietary administration of β- glucan, mannan oligosaccharide (MOS) and Lactobacillus casei on growth performance, immune responses and disease resistance of Cyprinus carpio. To address that, 300 fish weighing 65 ± 5 g were divided into five treatments, including diet A: 0.5% β-glucan and MOS + 5 × 107 CFU L. casei kg−1 diet, B: 1% β-glucan and MOS + 5 × 107 CFU L. casei kg−1 diet, C 1.5% β-glucan and MOS + 5 × 107 CFU L. casei kg−1 diet, D: 5 × 107 CFU L. casei kg−1 diet and a control diet for 60 days and a subsequent 15 days as a cessation period. Results showed that supplementary diets and feeding period caused an increase in hematological parameters, serum lysozyme and complement activities whilst feeding cessation reduced them. Growth performance and feed utilization were enhanced especially following treatment B. In addition, intestine enzyme activities including, ALP, lipase, amylase, trypsin and protease were elevated significantly during the experimental period when compared with the control at the beginning of experiment. The kidney TNFα gene expression showed a significant increase. When all fed groups were subjected to a challenge test with Aeromonas hydrophila, lower mortality rate was observed in treatment B. The results suggest that these treatments, especially treatment B can improve C. carpio health status." @default.
- W2950874475 created "2019-06-27" @default.
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- W2950874475 date "2019-09-01" @default.
- W2950874475 modified "2023-10-16" @default.
- W2950874475 title "Synbiotic effects of β-glucan, mannan oligosaccharide and Lactobacillus casei on growth performance, intestine enzymes activities, immune-hematological parameters and immune-related gene expression in common carp, Cyprinus carpio: An experimental infection with Aeromonas hydrophila" @default.
- W2950874475 cites W116197063 @default.
- W2950874475 cites W1491291048 @default.
- W2950874475 cites W1540384225 @default.
- W2950874475 cites W1575484884 @default.
- W2950874475 cites W1579577273 @default.
- W2950874475 cites W1771876414 @default.
- W2950874475 cites W1893993890 @default.
- W2950874475 cites W1894046116 @default.
- W2950874475 cites W1915674162 @default.
- W2950874475 cites W1964597820 @default.
- W2950874475 cites W1964723272 @default.
- W2950874475 cites W1966575941 @default.
- W2950874475 cites W1966882862 @default.
- W2950874475 cites W1970662443 @default.
- W2950874475 cites W1971731453 @default.
- W2950874475 cites W1975338176 @default.
- W2950874475 cites W1984894682 @default.
- W2950874475 cites W1985402550 @default.
- W2950874475 cites W1988315223 @default.
- W2950874475 cites W1988821718 @default.
- W2950874475 cites W1990892857 @default.
- W2950874475 cites W1994102073 @default.
- W2950874475 cites W1994887950 @default.
- W2950874475 cites W1995269918 @default.
- W2950874475 cites W2002062788 @default.
- W2950874475 cites W2006840024 @default.
- W2950874475 cites W2011912117 @default.
- W2950874475 cites W2012258750 @default.
- W2950874475 cites W2014021948 @default.
- W2950874475 cites W2014594584 @default.
- W2950874475 cites W2016717371 @default.
- W2950874475 cites W2020136057 @default.
- W2950874475 cites W2020686859 @default.
- W2950874475 cites W2025103607 @default.
- W2950874475 cites W2036143626 @default.
- W2950874475 cites W2041721910 @default.
- W2950874475 cites W2048094980 @default.
- W2950874475 cites W2050846695 @default.
- W2950874475 cites W2052619733 @default.
- W2950874475 cites W2053952699 @default.
- W2950874475 cites W2055422882 @default.
- W2950874475 cites W2060111786 @default.
- W2950874475 cites W2060819382 @default.
- W2950874475 cites W2060907261 @default.
- W2950874475 cites W2062026917 @default.
- W2950874475 cites W2065551546 @default.
- W2950874475 cites W2066284951 @default.
- W2950874475 cites W2070501606 @default.
- W2950874475 cites W2070802449 @default.
- W2950874475 cites W2073755805 @default.
- W2950874475 cites W2074193475 @default.
- W2950874475 cites W2074410176 @default.
- W2950874475 cites W2085594378 @default.
- W2950874475 cites W2087068738 @default.
- W2950874475 cites W2090159877 @default.
- W2950874475 cites W2092376899 @default.
- W2950874475 cites W2092489009 @default.
- W2950874475 cites W2092605870 @default.
- W2950874475 cites W2095447051 @default.
- W2950874475 cites W2103486192 @default.
- W2950874475 cites W2105135948 @default.
- W2950874475 cites W2109320617 @default.
- W2950874475 cites W2114329602 @default.
- W2950874475 cites W2122467387 @default.
- W2950874475 cites W2135696075 @default.
- W2950874475 cites W2144300827 @default.
- W2950874475 cites W2154033107 @default.
- W2950874475 cites W2161129780 @default.
- W2950874475 cites W2162409712 @default.
- W2950874475 cites W2167307541 @default.
- W2950874475 cites W2171002713 @default.
- W2950874475 cites W2172491396 @default.
- W2950874475 cites W2256756668 @default.
- W2950874475 cites W2434941261 @default.
- W2950874475 cites W2624518398 @default.
- W2950874475 cites W2900587764 @default.
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- W2950874475 doi "https://doi.org/10.1016/j.aquaculture.2019.06.011" @default.
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