Biofloc System with Different Carbon Sources Improved Growth, Haematology, Nonspecific Immunity, and Resistivity against the Aeromonas hydrophila in Common Carp, Cyprinus carpio

IF 1.9 4区 农林科学 Q2 FISHERIES Aquaculture Research Pub Date : 2024-02-13 DOI:10.1155/2024/7652354
Samiyah Tasleem, Bader S. Alotaibi, Samrah Masud, Syed Sikandar Habib, Ümit Acar, Stefano Cecchini Gualandi, Mujeeb Ullah, Khalid Khan, Francesco Fazio, Khayyam Khayyam
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Abstract

Biofloc technology (BFT) is one of the most sustainable aquaculture system, which is based on the principle of nutrient recycling and addition of carbon to enable heterotrophic microorganisms to the system. To evaluate the performance of the biofloc culture system for Cyprinus carpio fingerlings, a 60-day growth trial was conducted. The fingerlings (n = 600) of average body weight (4.92 g ± 0.14) were stocked in 12 circular fiberglass tanks (300 L, volume 10.59 cft) to form three biofloc treatments (T1, T2, and T3) along with one control group. The carbon sources for treatments were sugarcane molasses, tapioca, and wheat. The C/N ratio of 15 was maintained for all treatments. After 60 days of rearing, the fish were challenged with Aeromonas hydrophila, and the relative percentage survival (RPS) was observed over 14 days. A haematological, nonspecific immune, and stress parameters were analyzed using blood and serum samples collected at intervals of 20, 40, and 60 days. According to the results, the carbon sources affected the water quality parameters but were still adequate for fish welfare. An increased biofloc volume was observed with tapioca. Growth performance and better feed conversion ratio were recorded in biofloc with the tapioca group. The hematological parameters, including haemoglobin (Hb), hematocrit (HCT), white blood cells and lymphocytes were significantly (P  < 0.05) higher in biofloc-based tapioca group than in other treatments and control. Further, the serum protein, globulin, albumin, total immunoglobulin, and respiratory burst activity were also found significantly (P  < 0.05) higher in biofloc with tapioca as carbon source. However, the lysozyme activity was higher in biofloc with the wheat group. The RPS in tapioca was significantly higher, followed by biofloc with wheat. In conclusion, the tapioca-based biofloc can improve C. carpio growth, haematology, and nonspecific immune response under zero water exchange.

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含不同碳源的生物絮凝系统改善了鲤鱼的生长、血液学、非特异性免疫力和对嗜水气单胞菌的抵抗力
生物絮团技术(BFT)是最具可持续性的水产养殖系统之一,它基于营养循环和添加碳的原则,使异养微生物能够进入系统。为了评估生物絮团养殖系统对鲤鱼幼苗的性能,进行了为期 60 天的生长试验。将平均体重(4.92 克 ± 0.14)的鲤鱼幼苗(n = 600)放入 12 个圆形玻璃纤维水槽(300 升,容积 10.59 立方英尺)中,形成三个生物絮凝物处理组(T1、T2 和 T3)和一个对照组。处理的碳源为甘蔗糖蜜、木薯和小麦。所有处理的碳氮比均为 15。饲养 60 天后,用嗜水气单胞菌挑战鱼体,并在 14 天内观察相对存活率(RPS)。每隔 20 天、40 天和 60 天采集血液和血清样本,分析血液学、非特异性免疫和应激参数。结果表明,碳源影响了水质参数,但仍足以保证鱼类的福利。木薯絮的生物体积有所增加。使用木薯粉组的生物絮凝物的生长性能和饲料转化率更高。血液学参数,包括血红蛋白 (Hb)、血细胞比容 (HCT)、白细胞和淋巴细胞,以生物絮为基础的木薯组明显高于其他处理和对照组(P <0.05)。此外,以木薯粉为碳源的生物絮凝物组的血清蛋白、球蛋白、白蛋白、总免疫球蛋白和呼吸爆发活性也明显高于对照组(P <0.05)。然而,小麦组生物絮凝物中的溶菌酶活性较高。木薯中的 RPS 明显较高,其次是小麦生物絮凝物。总之,木薯生物絮凝物能在零换水条件下改善鲤鱼的生长、血液学和非特异性免疫反应。
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来源期刊
Aquaculture Research
Aquaculture Research 农林科学-渔业
CiteScore
4.60
自引率
5.00%
发文量
464
审稿时长
5.3 months
期刊介绍: International in perspective, Aquaculture Research is published 12 times a year and specifically addresses research and reference needs of all working and studying within the many varied areas of aquaculture. The Journal regularly publishes papers on applied or scientific research relevant to freshwater, brackish, and marine aquaculture. It covers all aquatic organisms, floristic and faunistic, related directly or indirectly to human consumption. The journal also includes review articles, short communications and technical papers. Young scientists are particularly encouraged to submit short communications based on their own research.
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