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鸡肠道宏基因组和植物源性苄基异喹啉生物碱的调节作用。

The chicken gut metagenome and the modulatory effects of plant-derived benzylisoquinoline alkaloids.

机构信息

Hunan Key Laboratory of Traditional Chinese Veterinary Medicine, Hunan Agricultural University, Changsha, 410128, Hunan, China.

College of Horticulture and Landscape, Hunan Agricultural University, Changsha, 410128, Hunan, China.

出版信息

Microbiome. 2018 Nov 27;6(1):211. doi: 10.1186/s40168-018-0590-5.

Abstract

BACKGROUND

Sub-therapeutic antibiotics are widely used as growth promoters in the poultry industry; however, the resulting antibiotic resistance threatens public health. A plant-derived growth promoter, Macleaya cordata extract (MCE), with effective ingredients of benzylisoquinoline alkaloids, is a potential alternative to antibiotic growth promoters. Altered intestinal microbiota play important roles in growth promotion, but the underlying mechanism remains unknown.

RESULTS

We generated 1.64 terabases of metagenomic data from 495 chicken intestinal digesta samples and constructed a comprehensive chicken gut microbial gene catalog (9.04 million genes), which is also the first gene catalog of an animal's gut microbiome that covers all intestinal compartments. Then, we identified the distinctive characteristics and temporal changes in the foregut and hindgut microbiota. Next, we assessed the impact of MCE on chickens and gut microbiota. Chickens fed with MCE had improved growth performance, and major microbial changes were confined to the foregut, with the predominant role of Lactobacillus being enhanced, and the amino acids, vitamins, and secondary bile acids biosynthesis pathways being upregulated, but lacked the accumulation of antibiotic-resistance genes. In comparison, treatment with chlortetracycline similarly enriched some biosynthesis pathways of nutrients in the foregut microbiota, but elicited an increase in antibiotic-producing bacteria and antibiotic-resistance genes.

CONCLUSION

The reference gene catalog of the chicken gut microbiome is an important supplement to animal gut metagenomes. Metagenomic analysis provides insights into the growth-promoting mechanism of MCE, and underscored the importance of utilizing safe and effective growth promoters.

摘要

背景

亚治疗剂量的抗生素被广泛用作家禽养殖业的生长促进剂;然而,由此产生的抗生素耐药性威胁着公共健康。一种源自植物的生长促进剂,博落回提取物(MCE),其有效成分是苄基异喹啉生物碱,是抗生素生长促进剂的潜在替代品。肠道微生物群的改变在生长促进中起着重要作用,但潜在的机制尚不清楚。

结果

我们从 495 个鸡肠道消化物样本中生成了 16.4 太字节的宏基因组数据,并构建了一个全面的鸡肠道微生物基因目录(904 万个基因),这也是第一个涵盖所有肠道隔间的动物肠道微生物组的基因目录。然后,我们确定了前肠和后肠微生物群的独特特征和时间变化。接下来,我们评估了 MCE 对鸡和肠道微生物群的影响。用 MCE 喂养的鸡生长性能得到改善,主要微生物变化局限于前肠,其中乳杆菌的主导作用增强,氨基酸、维生素和次级胆汁酸生物合成途径被上调,但缺乏抗生素耐药基因的积累。相比之下,使用金霉素治疗同样在前肠微生物群中富集了一些营养物质的生物合成途径,但增加了抗生素产生细菌和抗生素耐药基因。

结论

鸡肠道微生物组的参考基因目录是动物肠道宏基因组的一个重要补充。宏基因组分析提供了对 MCE 生长促进机制的深入了解,并强调了利用安全有效的生长促进剂的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f026/6260706/8dc019840430/40168_2018_590_Fig1_HTML.jpg

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