Jia Sifan, Ren Chenxi, Yang Ping, Qi Desheng
Department of Animal Nutrition and Feed Science, College of Animal Science and Technology, Huazhong Agricultural University, No.1, Shizishan Street, Wuhan 430070, China.
Animals (Basel). 2022 Aug 2;12(15):1962. doi: 10.3390/ani12151962.
Zearalenone (ZEN) is an estrogenic mycotoxin, and chickens are relatively insensitive to it. In this study, the effects of intestinal microorganisms on ZEN metabolism and toxicity mitigation in broilers were studied by two experiments. Firstly, in vitro, ZEN was incubated anaerobically with chyme from each part of the chicken intestine to study its intestinal microbial metabolism. Then, in vivo, we explored the effects of intestinal microbiota on ZEN by inhibiting intestinal microorganisms. Broilers were fed a control diet, 2.5 mg/kg ZEN diet, microbial inhibition diet or 'microbial inhibition +2.5 mg/kg ZEN' diet. In vitro, the results showed that the rates of ZEN degradation by microorganisms in the duodenum, ileum, caecum, and colon were 56%, 12%, 15%, and 17%, respectively, and the microorganisms could convert ZEN into Zearalenol (ZOL). After microbial inhibition in vivo, the content of ZEN and its metabolites in excreta of broilers increased significantly, and antioxidant damage and liver damage were aggravated. 16S rRNA sequencing results showed that antioxidant indices and the content of ZEN and its metabolites in excreta were significantly correlated with the relative abundance of and , etc. In conclusion, the intestinal microorganisms of broilers play an important role in ZEN metabolism and ZEN-induced antioxidant and liver injury mitigation, among which the key bacteria include , and , etc.
玉米赤霉烯酮(ZEN)是一种具有雌激素活性的霉菌毒素,鸡对其相对不敏感。在本研究中,通过两个实验研究了肠道微生物对肉鸡体内ZEN代谢及毒性减轻的影响。首先,在体外,将ZEN与鸡肠道各部位的食糜进行厌氧培养,以研究其肠道微生物代谢情况。然后,在体内,通过抑制肠道微生物来探究肠道微生物群对ZEN的影响。给肉鸡饲喂对照日粮、2.5 mg/kg ZEN日粮、微生物抑制日粮或“微生物抑制+2.5 mg/kg ZEN”日粮。体外实验结果表明,十二指肠、回肠、盲肠和结肠中微生物对ZEN的降解率分别为56%、12%、15%和17%,且微生物可将ZEN转化为玉米赤霉醇(ZOL)。体内微生物抑制后,肉鸡排泄物中ZEN及其代谢产物的含量显著增加,抗氧化损伤和肝脏损伤加剧。16S rRNA测序结果表明,排泄物中的抗氧化指标以及ZEN及其代谢产物的含量与 、 等的相对丰度显著相关。综上所述,肉鸡肠道微生物在ZEN代谢以及减轻ZEN诱导的抗氧化和肝脏损伤方面发挥着重要作用,其中关键细菌包括 、 和 等。