丁酸梭菌对光唇鱼幼鱼耐高温能力的影响

CLOSTRIDIUM BUTYRICUM ON HIGH TEMPERATURE TOLERANCE OF JUVENILE ACROSSOCHEILUS FASCIATUS

  • 摘要: 研究旨在探讨丁酸梭菌(Clostridium butyricum)作为饲料添加剂对高温胁迫下光唇鱼(Acrossocheilus fasciatus)生理机制的影响, 试验设置4组, 分别在普通饲料中添加0、5×107、5×108和1×109 CFU/g的丁酸梭菌, 以1℃/24h升温至32℃饲喂维持60d, 采集肠道组织用于肠道酶活性、代谢组学、肠道微生物多样性分析。结果显示: 饲料添加丁酸梭菌后, 光唇鱼增重率、特定生长率均显著提高, 饲料系数显著降低; 肠道过氧化氢酶、超氧化物歧化酶等抗氧化酶活性显著提升, 丙二醛含量减少; 两组光唇鱼肠道菌群在门水平上的组成无显著差异, 在属水平上相对增加了有益菌属的丰度(例如索利氏菌科细菌、假单胞菌属和紫红细菌属等有益菌属), 保证了光唇鱼的肠道健康; 差异代谢物的主要种类包括核苷酸及其衍生物、氨基酸及其衍生物等, 其中有大量脂肪酸类代谢物发生明显变化。这表明饲料添加丁酸梭菌可增强光唇鱼生长性能和抗氧化能力及对通过增强嘌呤代谢和调节肠道菌群应对高温胁迫的能力。

     

    Abstract: With global warming increasing the frequency of extreme heat events, Acrossocheilus fasciatus aquaculture faces significant challenges. This study examined the effects of feed additive Clostridium butyricum on A. fasciatus under high-temperature stress, aiming to support its cultivation in high-temperature environments. The trial involves four groups with the bacterium added to regular feed at 0, 5×107, 5×108, and 1×109 CFU/g. After 60d feeding, water temperature was increased to 32℃ at a rate of 1℃/24h, and intestinal tissues were collected to analyze digestive enzyme activity, metabolomics, and intestinal microbial diversity. Results showed that C. butyricum-supplemented feed significantly increased weight gain rate and specific growth rate of A. fasciatus while reducing the feed coefficient. Intestinal antioxidant enzyme activities (e.g., hydrogen peroxide and superoxide dismutase) increased significantly, with a concurrent decrease in malondialdehyde content. No significant differences exist in intestinal bacterial composition at phylum level between the two groups, but at the genus level, treatment groups exhibited higher relative abundance of beneficial bacteria, such as Solitrichaceae family, Pseudomonas genus, and Rhodobacter genus, which ensure the intestinal health of A. fasciatus. Key differential metabolites included nucleotides and their derivatives, as well as amino acids and their derivatives. Meanwhile, many fatty acid metabolites changed remarkably. The addition of C. butyricum to feed can enhance fish growth and antioxidant capacity, and help fish cope with heat stress by boosting purine metabolism and modulating gut microbiota.

     

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