饲料减量对生物池系统中养殖的非洲鲶鱼生长性能、水质和血液状况的影响

Q4 Environmental Science
Azam Bachur Zaidy, Yuke Eliyani, T. Ruchimat
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引用次数: 1

摘要

生物定位技术是一种利用最小的水交换和在培养基中形成的微生物聚集体作为鱼类补充饲料的鱼类养殖方法。生物胶作为一种蛋白质来源目前还没有被认为是鲶鱼养殖中饲料剂量的一部分。本研究旨在确定商业饲料减少对生物池养殖鲶鱼生长性能、水质和血液学的影响。将平均体重为7.53±0.47克的鱼类放养在9个池塘中,放养密度为100条鱼/池塘,饲养9周。实验采用完全随机设计,采用以下处理:全饲料+非生物肥(C100)作为对照;饲料+生物肥料减少10%(B90);饲料+生物肥料减少20%(B80)。因此,每种处理鱼类生物量每天给予的总饲料剂量为:C100为5%,B90为4.5%,B80为4.0%。每种治疗都分为三组。结果表明,不同处理的水质参数(溶解氧、pH、TAN和亚硝酸盐)和生物块浓度差异不显著(P>0.05)。鱼类的比生长率、存活率、增重和饲料转化率也没有显著差异(P>0.05),生物块处理的B90和B80的增重分别达到2.71%和12.65%,分别地在治疗期间高于对照治疗。B90和B80的饲料转化率分别为14.39%和7.58%;低于对照处理。生物絮凝处理并没有对鱼类的血细胞特性产生不利影响。这项研究表明,减少饲料不会影响池塘的水质和鱼类的血细胞特征。此外,与未经处理的生物絮凝池中养殖的鱼类相比,经生物絮凝池处理的鱼类体重增加更高,食物转化率更低。本研究表明,与非生物絮凝系统相比,在鲶鱼养殖中使用生物絮凝系统可以减少高达10%-20%的饲料使用,生物量产量相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECTS OF FEED REDUCTION ON GROWTH PERFORMANCE, WATER QUALITY, AND HEMATOLOGY STATUS OF AFRICAN CATFISH, Clarias gariepinus REARED IN BIOFLOC POND SYSTEM
Biofloc technique is a method of fish culture using minimal water exchange and microbial aggregates formed within the culture media as fish supplementary feed. Biofloc as a protein source is currently not being considered part of the feeding dosage in catfish culture. This present work aimed to determine the effects of commercial feed reduction on growth performance, water quality, and hematology of catfish cultured in biofloc ponds. Fish with an average body weight of 7.53 ± 0.47 g were stocked in nine ponds with a stocking density of 100 fish/pond and reared for nine weeks. The experiment was arranged in a completely randomized design, with the following treatments: full feed + non-biofloc (C100) as control; 10% less feed + biofloc (B90); 20% less feed + biofloc (B80). As such, the total feed doses given daily per each treatment fish biomass were: 5% for C100, 4.5% for B90, and 4.0% for B80. Each treatment was arranged in triplicates. The results showed that all water quality parameters (dissolved oxygen, pH, TAN, and nitrite) and biofloc concentrations did not differ significantly among the treatments (P>0.05). Specific growth rate, survival rate, weight gain, and feed conversion ratio of the fish were also not significantly different (P>0.05). The weight gain of biofloc-treated fish in B90 and B80 reached 2.71% and 12.65%, respectively; which were higher than the control treatment during the treatment period. The feed conversion ratios of B90 and B80 were 14.39% and 7.58%, respectively; lower than the control treatment. The biofloc treatment did not adversely alter the fish’s blood cell profiles. This study revealed that feed reduction did not affect water quality in the ponds and blood cell profiles of the fish. Moreover, fish in the biofloc-treated ponds had higher weight gain and lower food conversion ratios compared to fish cultured in the non-treated biofloc ponds. This study suggests that using the biofloc system in catfish rearing can reduce the use of feed up to 10%-20% with similar biomass yield compared to the non-biofloc system.
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来源期刊
Indonesian Aquaculture Journal
Indonesian Aquaculture Journal Environmental Science-Water Science and Technology
CiteScore
0.50
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