日粮硒水平对虹鳟肌肉蛋白质自噬性降解的影响
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滕振雷(1996–),男,硕士研究生,研究方向为水产品品质形成.E-mail:zhenleiteng@webmail.hzau.edu.cn

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S963

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国家重点研发计划项目(2019YFD0900303); 中央高校基本科研业务费专项资金资助项目(2662019FW013).


Effects of dietary selenium level on autophagic degradation of muscle protein of Oncorhyrchus mykiss
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    摘要:

    为了探究日粮硒水平对虹鳟(Oncorhynchus mykiss)肌肉生长和肌肉蛋白质自噬性降解的影响, 以酵母硒为硒源, 配制 3 种硒水平的日粮: 缺硒(DSe, 0 mg/kg)、足量硒(ASe, 4.0 mg/kg)、过量硒(ESe, 16.0 mg/kg), 对虹鳟进行 10 周的养殖实验。结果表明, DSe 和 ESe 组虹鳟的增重率、肌纤维直径与肌肉蛋白质含量显著低于 ASe 组(P<0.05)。 此外, DSe 和 ESe 组虹鳟肌肉中自噬相关基因(Atg4b、Atg12l、LC3B、Atg13、Atg7、Atg5)的表达量显著高于 ASe 组(P<0.05); 并且其自噬标志物肌肉微管相关蛋白轻链 3-II (LC3-II)的水平相对于 ASe 组显著升高, 而 P62 的含量显著降低(P<0.05)。同时对自噬的上游调节通路蛋白激酶 B-雷帕霉素靶蛋白(Akt-TOR)通路进行了检测, 发现日粮硒的缺乏和过量均显著抑制了虹鳟肌肉中 Akt 和 TOR 的磷酸化水平, 降低了 Akt-TOR 通路的活性。对腺苷酸活化蛋白激酶 α(AMPKα)的磷酸化分析也表明, DSe 和 ESe 组虹鳟肌肉的 AMPK 活性显著升高。在对虹鳟肌肉氧化状态的分析中也发现 DSe和 ESe组的虹鳟肌肉中丙二醛(MDA)和脂质过氧化物(LPO)的含量显著增加, 表明其肌肉氧化应激加剧, 这可能是日粮硒影响 Akt-TOR 和 AMPK 通路的一种途径。综上所述, 日粮硒的缺乏和过量通过抑制 Akt-TOR 的活性, 激活 AMPK 通路, 促进了虹鳟肌肉蛋白质的自噬性降解, 本研究结果为进一步研究硒对鱼类肌肉生长的调控机制奠定了基础。

    Abstract:

    Selenium (Se) is an essential trace element for fish, and deficient or excess dietary Se influence their growth. The body growth of fish is mainly influenced by muscle growth, which is mainly determined by the deposition rate of protein in muscle tissue. There is evidence that the autophagic degradation of fish muscle protein is significantly influenced by the level of dietary Se. The autophagy lysosomal pathway is one of the main pathways for muscle protein degradation. Studies have shown that adequate dietary Se (4.0 mg Se/kg diet) inhibited autophagic degradation in rainbow trout (Oncorhynchus mykiss) muscle. However, the effects of deficient or excess dietary Se on the autophagic degradation of rainbow trout muscle requires further exploration. This study aimed to explore the effects and possible mechanisms of dietary Se level on the growth of rainbow trout. Different amounts of Se yeast (as source of Se) were added to the basal diet to reach deficient (DSe, 0 mg Se/kg diet), adequate (ASe, 4.0 mg Se/kg diet), and excessive (ESe, mg Se/kg diet) Se levels. Results showed that DSe and ESe diets were not conducive to the growth performance of rainbow trout. The final body weight and weight gain rate in the rainbow trout fed DSe and ESe diets were significantly lower than those fed ASe diets (P<0.05). The feed conversion ratio of fish in the ASe group was significantly higher than those in DSe and ESe groups. There was no significant difference in condition factor or feed intake. Furthermore, the diameter of rainbow trout muscle fibers in the DSe and ESe groups was significantly lower than those in the ASe group (P<0.05). Additionally, dietary Se significantly affected the protein and total Se content of rainbow trout muscle. The autophagy-related gene (Atg) expression and autophagy markers (microtubule-associated protein light chain 3 (LC3) and P62 level are important biomarkers for assessing the level of autophagy. Results showed that mRNA levels of Atg4b, Atg12l, LC3B, Atg13, Atg7, and Atg5 in the muscle of rainbow trout in DSe and ESe groups were significantly higher than those in the ASe group (P<0.05). The LC3-II level of rainbow trout in DSe and ESe groups was significantly induced, while the content of P62 was significantly reduced (P<0.05). These results indicate that deficient or excess dietary Se led to increased levels of autophagy in the muscle of rainbow trout. The protein kinase B-target of rapamycin (Akt-TOR) and amp-activated protein kinase (AMPK) pathways are important pathways for autophagy regulation. Both deficient and excessive Se levels significantly inhibited the phosphorylation of Akt and TOR and inhibited the activity of the Akt-TOR pathway. The AMPK activity of rainbow trout muscle was induced in DSe and ESe groups. The malondialdehyde and lipid peroxide contents of rainbow trout muscle were significantly higher in the DSe and ESe groups than that in the ASe group, as revealed through analysis of the oxidation status of rainbow trout muscle. The muscle oxidative stress was intensified, which may have allowed dietary Se to affect the Akt-TOR and AMPK pathways. In summary, this study explored the comprehensive effects of dietary Se on somatic and muscle growth in rainbow trout. The effects and possible mechanisms of dietary Se level on autophagic degradation of rainbow trout muscle protein were also preliminarily revealed. The results can enrich our understanding of the nutritional function of Se and provide a foundation for further research on the mechanism by which Se regulates fish growth.

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滕振雷,张学振,张峰,王力,王龙,黄涛涛.日粮硒水平对虹鳟肌肉蛋白质自噬性降解的影响[J].中国水产科学,2022,29(6):843-853
TENG Zhenlei, ZHANG Xuezhen, ZHANG Feng, WANG Li, WANG Long, HUANG Taotao. Effects of dietary selenium level on autophagic degradation of muscle protein of Oncorhyrchus mykiss[J]. Journal of Fishery Sciences of China,2022,29(6):843-853

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  • 在线发布日期: 2022-07-19
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