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Dietary Exogenous α-Amylase Modulates the Nutrient Digestibility, Digestive Enzyme Activity, Growth-Related Gene Expression, and Diet Degradation Rate of Olive Flounder (Paralichthys olivaceus)

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논문

Dietary Exogenous α-Amylase Modulates the Nutrient Digestibility, Digestive Enzyme Activity, Growth-Related Gene Expression, and Diet Degradation Rate of Olive Flounder (Paralichthys olivaceus)

학술지

Journal of microbiology and biotechnology

저자명

Md. Tawheed Hasan; Hyeon Jong Kim; Sang-Woo Hur; Seong-Mok Jeong; Kang-Woong Kim; Seunghan Lee

초록

In this study, a 12-week feeding experiment was conducted to characterize the effects of exogenous &#x03B1;-amylase on the growth, feed utilization, digestibility, plasma &#x03B1;-amylase activity, feed degradation rate, and fecal particle size of olive flounder (Paralichthys olivaceus). Diet was supplemented with 0 (AA<sub>0</sub>; control), 100 (AA<sub>100</sub>), 200 (AA<sub>200</sub>), or 400 (AA<sub>400</sub>) mg/kg of &#x03B1;-amylase, respectively. Fish (273.1 &#x00B1; 2.3 g) were stocked into 12 tanks (25 fish/1,000-L tank) and 3 tanks were randomly selected for each diet group. As a result, &#x03B1;-amylase was found to have no significant effects (p &#x2265; 0.05) on the growth, feed utilization parameters, and whole-body proximate compositions. &#x03B1;-Amylase-treated fish exhibited only a significant increase in the apparent digestibility coefficient of carbohydrates compared to the controls. In addition, in vitro analyses revealed that &#x03B1;-amylase dose-dependently increased (p < 0.05) the feed degradation rate, while photographs of the intestinal content after 2, 4, and 8 h of feeding demonstrated an improved degradation rate in the &#x03B1;-amylase-treated groups. Plasma &#x03B1;-amylase content was higher in the AA<sub>200</sub> and AA<sub>400</sub> groups, whereas the control group produced significantly larger-sized fecal particles (90% size class) than these two groups. In the intestine, no changes were observed in the expression levels of the immune-related TNF-&#x03B1;, IL-1&#x03B2;, IL-2, immunoglobulin-M, HSP-70, lysozyme, and amylase alpha-2A. However, growth-related genes IGF-1, IGF-2, TGF-&#x03B2;3, and growth hormone genes were upregulated in muscle tissues. Collectively, exogenous &#x03B1;-amylase has positive roles in the modulation of the digestibility coefficient, blood &#x03B1;-amylase concentration, growth-related gene expression, and diet degradation for improved digestion in olive flounder.

발행연도

2023

발행기관

The Korean Society for Microbiology and Biotechnology

ISSN

1017-7825

ISSN

1738-8872

33

10

페이지

pp.1390-1401

주제어

Aqua-feed; feed additive; olive flounder; digestive enzymes; alpha-amylase; digestibility

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1 2023-12-11

논문; 2023-10-28

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