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在人为控制光周期条件下饲养的生长和健康状况。

Growth and health status of reared under manipulated photoperiod conditions.

机构信息

Fisheries and Marine Science Faculty, Universitas Riau, Pekanbaru, Riau, Indonesia.

出版信息

F1000Res. 2021 Feb 26;10:154. doi: 10.12688/f1000research.28259.2. eCollection 2021.

Abstract

In general, the length of photoperiod affects the physiology of . This study aimed to understand the growth and health status of this fish reared under manipulated photoperiods. The study was conducted between June to August 2020[A1] . Three treatments were applied: control (natural photoperiod); 18 hours of darkness (18D6L; tanks were placed under a dark tarp tent for 18 hours); and 24 hours of darkness (24D0L; tanks were placed under a dark tarp tent continuously). Three replications were performed per treatment. At baseline, fish were approx. 7.5 cm  [A2] total length (TL) and 4 g body weight (BW), and were reared in circular plastic tanks (100 L; 30 fish/tank) with aerators and filters, and fed with commercial fish feed pellet (2 times/day to satiation). Fish growth and survival were studied once/week, and blood and tissue samples were taken at the end of the experiment (8 week). Tissue was formalin fixed and HE stained. The survival of fish in all treatment was 100%. The fish reared in 24D0L and 18D6L grew better than control, achieving mean TL of 23 cm and BW of 98 g (control = 19 cm TL and 72 g BW). There was no difference in hematology condition or tissue structure between the three groups. Tissue structure of gill, kidney and liver were normal, but light abnormality due to parasites was present in the gill of fish reared in 24D0L. Blood samples for all three groups showed mean red blood cell count of 1,800,000 cells/ml and white blood cell (WBC) count of 55,200 cells/ml. WBC consisted of lymphocyte 65%, monocyte 24%, thrombocyte 6%, neutrophil 3%, eosinophil 1% and basophile 1%. Data obtained indicate that a short photoperiod improves the growth of fish and does not negatively affects their health.

摘要

一般来说,光周期的长短会影响[物种名称]的生理机能。本研究旨在了解在人为控制的光周期下饲养这种鱼类的生长和健康状况。该研究于 2020 年 6 月至 8 月进行[A1]。应用了三种处理方法:对照组(自然光周期);18 小时黑暗(18D6L;将鱼缸置于黑色防水布帐篷下 18 小时);24 小时黑暗(24D0L;将鱼缸连续置于黑色防水布帐篷下)。每种处理方法进行了三次重复。在基线时,鱼体长约 7.5 厘米[A2],体重 4 克,在带有增氧器和过滤器的圆形塑料水箱(100 升;每个水箱 30 条鱼)中饲养,并投喂商业鱼饲料颗粒(每天 2 次,直至饱食)。每周研究一次鱼的生长和成活率,并在实验结束时(8 周)采集血液和组织样本。组织用福尔马林固定和 HE 染色。所有处理组的鱼成活率均为 100%。在 24D0L 和 18D6L 光照下饲养的鱼比对照组生长得更好,体长达到 23 厘米,体重达到 98 克(对照组的体长为 19 厘米,体重为 72 克)。三组间的血液学状况或组织结构无差异。鳃、肾和肝的组织结构正常,但在 24D0L 光照下饲养的鱼的鳃中存在寄生虫引起的轻微异常。三组的血液样本平均红细胞计数为 180 万个/毫升,白细胞(WBC)计数为 55200 个/毫升。WBC 由淋巴细胞 65%、单核细胞 24%、血小板 6%、中性粒细胞 3%、嗜酸性粒细胞 1%和嗜碱性粒细胞 1%组成。获得的数据表明,短光周期可促进[鱼类名称]的生长,且不会对其健康产生负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e89d/8261900/562e5a61b201/f1000research-10-56748-g0000.jpg

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