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不同密度生物絮团系统养殖凡纳滨对虾(Litopenaeus vannamei)的生长性能、微生物群落、细菌食物质量及基因表达评估

Assessment of Performance, Microbial Community, Bacterial Food Quality, and Gene Expression of Whiteleg Shrimp () Reared under Different Density Biofloc Systems.

作者信息

Said Mohamed M, El-Barbary Y A, Ahmed O M

机构信息

Department of Aquaculture, Faculty of Fish Resources, Suez University, Suez, Egypt.

Department of Fish Health and Diseases, Faculty of Fish Resources, Suez University, Suez, Egypt.

出版信息

Aquac Nutr. 2022 Sep 21;2022:3499061. doi: 10.1155/2022/3499061. eCollection 2022.

Abstract

Biofloc shrimp culture, as a way of improving shrimp production, gains worldwide consideration. However, the effects of the biofloc system on shrimp culture at high densities could be a challenge. Here, this study is aimed at identifying a better stocking density of whiteleg shrimp () between two intensive biofloc systems of 100 and 300 org./m. Achieving that was done by comparing growth performance, water quality, feed utilization, microbial loads from water and shrimps, and gene expression of growth, stress, and immune-related genes. Shrimp postlarvae with a mean weight of 35.4 ± 3.7 mg were reared in six indoor cement tanks (36 m total capacity each) at two stocking densities (3 replicates each) for a rearing period of 135 days. Better final weight, weight gain, average daily weight gain, specific growth rate, biomass increase percentage, and survival rate were associated with lower density (100/m), whereas high-density showed significantly higher total biomass. Better feed utilization was found in the lower density treatment. Lower density treatment enhanced water quality parameters, including higher dissolved oxygen and lower nitrogenous wastes. Heterotrophic bacterial count in water samples was recorded as 5.28 ± 0.15 and 5.11 ± 0.28 log CFU/ml from the high- and low-density systems, respectively, with no significant difference. Beneficial bacteria such as spp. were identified in water samples from both systems, still, the -like count was developed in the higher density system. Regarding shrimp food bacterial quality, the total bacterial count in the shrimp was recorded as 5.09 ± 0.1 log CFU/g in the 300 org./m treatment compared to 4.75 ± 0.24 log CFU/g in the lower density. was isolated from the shrimps in a lower density group while and were associated with shrimps from a higher density system. Immune-related genes including prophenoloxidase, superoxide dismutase (SOD), and lysozyme (LYZ) expressions were all significantly higher expressed in the shrimp from the lower density treatment. Toll receptor (LvToll), penaiedin4 (PEN4), and stress-related gene (HSP 70) showed a decreased gene expression in the shrimp raised in the lower density. ignificant upregulation of growth-related gene (Ras-related protein-RAP) expression was associated with the lower stocking density system. In conclusion, the current study found that applying high stocking density (300 org./m) contributes negatively to performance, water quality, microbial community, bacterial food quality, and gene expression of immune, stress, and growth-related genes when compared with the lower stocking density system (100 org./m) under biofloc system.

摘要

生物絮团养虾作为一种提高对虾产量的方法,已获得全球关注。然而,生物絮团系统对高密度对虾养殖的影响可能是一个挑战。在此,本研究旨在确定凡纳滨对虾在100和300个微生物/毫升这两种集约化生物絮团系统中的更佳放养密度。通过比较生长性能、水质、饲料利用率、水体和对虾中的微生物负荷以及生长、应激和免疫相关基因的表达来实现这一目标。平均体重为35.4±3.7毫克的对虾幼体在六个室内水泥池(每个总容量为36立方米)中,以两种放养密度(每种密度3个重复)饲养135天。更好的终末体重、增重、日均增重、特定生长率、生物量增加百分比和存活率与较低密度(100个/毫升)相关,而高密度组的总生物量显著更高。在较低密度处理中发现饲料利用率更高。较低密度处理改善了水质参数,包括更高的溶解氧和更低的含氮废物。高密度和低密度系统水样中的异养细菌计数分别记录为5.28±0.15和5.11±0.28 log CFU/毫升,无显著差异。在两个系统的水样中均鉴定出有益细菌,如弧菌属,但类弧菌数量在高密度系统中更多。关于对虾的食物细菌质量,300个微生物/毫升处理组对虾中的总细菌计数记录为5.09±0.1 log CFU/克,而低密度组为4.75±0.24 log CFU/克。在低密度组的对虾中分离出了哈维氏弧菌,而在高密度系统的对虾中发现了溶藻弧菌和副溶血弧菌。免疫相关基因,包括酚氧化酶原、超氧化物歧化酶(SOD)和溶菌酶(LYZ)的表达在低密度处理的对虾中均显著上调。Toll受体(LvToll)、对虾抗菌肽4(PEN4)和应激相关基因(HSP 70)在低密度饲养的对虾中基因表达降低。生长相关基因(Ras相关蛋白-RAP)表达的显著上调与较低的放养密度系统相关。总之,本研究发现,与生物絮团系统下的较低放养密度系统(100个微生物/毫升)相比,采用高放养密度(300个微生物/毫升)对生长性能、水质、微生物群落、细菌食物质量以及免疫、应激和生长相关基因的表达产生负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffd4/9973138/3ab4b2b314b2/ANU2022-3499061.001.jpg

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