ADDITION OF COMMERCIAL PROBIOTIC (LACTOBACILLUS DELBRUEKII AND L. FERMENTUM) IN RED TILAPIA BROODSTOCK DIET IN DIFFERENT REARING SYSTEMS. I- EFFECTS ON REPRODUCTIVE PERFORMANCE AND LARVAL QUALITY

A. Tahoun
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引用次数: 1

Abstract

SUMMARY his experiment was carried-out to evaluate the combined effects of dietary commercial probiotic Lactéol Fort ® supplementation and different rearing systems on reproductive performance of red tilapia broodstock. In completely randomized, 2X2 factorial design, 2 different tank systems, clear water (CW) and biofloc combined with two different levels (0 and 1 g kg -1 ) of dietary probiotic Lactéol Fort ® attaining 4 experimental treatments; T1: CW without probiotic), T2: CW + probiotic, T3: biofloc without probiotic) and T4: biofloc + probiotic with three replicates for each treatment compromising twelve tanks (each 2 m 3 ). Red tilapia broodstock reproductive performance was compared during the reproductive period. The probiotic Lactéol Fort ® containing Lactobacillus delbruekii (10 13 CFU: colony forming unit) g -1 and L. fermentum (10 13 CFU) g -1 was administered as a feed additive to broodstock diet. For the reproductive performance assay, 216 females and 72 males of red tilapia Oreochromis mossambicus × O. niloticus at density of 24 (18 females: 6 males) tank -1 equivalent to stocking density of 9: females: 3 males m -3 with a sex ratio of 3 females to 1 male. Average body weight of female and male tilapia broodstock were 127.5 and 148 g, respectively). Reproductive variables (spawned female %, absolute and relative fecundity) were estimated in four subsequent seed clutches. No mortalities were found in male and female tilapia broodstock as affected by biofloc and probiotic levels. The results revealed that broodstock fed the commercial probiotic in biofloc tanks (T4: biofloc + probiotic), had the highest values for reproductive performance followed by T3 (biofloc without probiotic addition), T2 (CW + probiotic), and finally T1 (CW without probiotic). The results recommend continuous intake of probiotic (Lactéol Fort ® containing Lactobacillus delbruekii (10 13 ) CFU g -1 and L. fermentum , 10 13 CFU (colony forming unit) g -1 at a dose of 1 g kg -1 of broodstock feed in biofloc tanks during the spawning season of red tilapia, due to the higher reproductive performance and fry survival .
不同饲养体系下红罗非鱼日粮中添加商业益生菌(德尔布鲁氏乳杆菌和发酵乳杆菌)的研究。对繁殖性能和幼虫品质的影响
本试验旨在研究饲粮中添加商业益生菌lactacimol Fort®和不同饲养制度对红罗非鱼繁殖性能的联合影响。在完全随机、2X2析因设计中,采用2种不同的水罐系统,在清水罐和生物菌群中添加2种不同水平(0和1 g kg -1)的益生菌lactacimol Fort®,分别进行4个试验处理;T1:不含益生菌的连续菌),T2:连续菌+益生菌,T3:不含益生菌的生物菌群)和T4:生物菌群+益生菌,每个处理3个重复,共12个水箱(每个2立方米)。比较了红罗非鱼种鱼在繁殖期内的繁殖性能。本试验将含有德尔布鲁氏乳杆菌(10 13 CFU:菌落形成单位)g -1和发酵乳杆菌(10 13 CFU) g -1的益生菌lact Fort®作为饲料添加剂添加到种鱼饲料中。在繁殖性能试验中,以24只(雌性18:雄性6)池-1的密度为216只雌鱼和72只雄鱼,相当于放养密度为9只雌鱼:3只雄鱼m -3,性别比为3雌1雄。母罗非鱼和公罗非鱼的平均体重分别为127.5和148 g)。在随后的四个种子窝中估计了生殖变量(产卵雌性百分比,绝对和相对繁殖力)。未发现雄性和雌性罗非鱼亲鱼因生物絮团和益生菌水平的影响而死亡。结果表明,在生物絮团池中饲喂商业益生菌(T4:生物絮团+益生菌)的鱼的繁殖性能最高,其次是T3(不添加益生菌的生物絮团)、T2 (CW +益生菌)和T1(不添加益生菌的CW)。结果提示,在红罗非鱼产卵季节,在生物絮凝池中连续添加含有德尔布鲁氏乳杆菌(10 13)CFU g -1和发酵乳杆菌(10 13 CFU(菌落形成单位)g -1的益生菌(Lactobacillus delbruekii (10 13) CFU g -1)和发酵乳杆菌(10 13 CFU(菌落形成单位)g -1,剂量为1 g kg -1。
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