Guannan Li, Yi Xiao, Jia Leng, Qinian Lou, Tianfu Zhao
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引用次数: 0
摘要
益生菌枯草芽孢杆菌对畜禽饲养的安全性和有效性已得到广泛评估。蚕(Bombyx mori L.)是一种著名的经济饲养昆虫,其人工日粮饲养正受到越来越多的关注。然而,益生菌枯草芽孢杆菌作为饲料添加剂对人工饲料饲养蚕的影响仍然未知。本研究采用多种生物学方法(酶活性测定、定量 PCR、转录组测序和 LC-MS)探讨了枯草芽孢杆菌 SWL-19 对家蚕生理机能的有益影响。结果表明,饲喂 SWL-19 菌株后,蚕的体重明显增加(P < 0.05)。枯草芽孢杆菌SWL-19明显增强了蚕的抗氧化性,抗菌肽(阿他霉素、溶菌酶和头孢肽)的基因表达水平受到SWL-19菌株的影响。此外,饲喂 SWL-19 菌株后,家蚕血淋巴中核黄素、烟酰胺、吡哆醇和吡哆醛的含量显著增加。转录组分析结果表明,肠道组织对枯草芽孢杆菌 SWL-19 的反应主要集中在外部生物刺激、生物种间相互作用、免疫系统过程和应激反应等方面。总之,益生菌 B. subtilis SWL-19 可显著提高家蚕的体重和抗氧化性,同时调节肠道免疫力,促进 B 族维生素的代谢。本研究为人工日粮饲养条件下应用益生菌 SWL-19 改善家蚕生理机能提供了理论参考。
Beneficial efficacy and mode of action of probiotic Bacillus subtilis SWL−19 on the silkworm (Bombyx mori L.)
The safety and efficacy of probiotic Bacillus subtilis to raising animals in the livestock and poultry have been widely evaluated. Silkworm (Bombyx mori L.) is a well-known economic rearing insect, and its artificial diet rearing is gaining interest. However, the effects of probiotic B. subtilis as feed additive on silkworms fed with an artificial diet remain unknown. In this study, we adopted multiple biological approaches (enzyme activity assay, quantitative PCR, transcriptome sequencing, and LC-MS) to explore the beneficial effects of B. subtilis SWL−19 on silkworm physiology. Results showed that the body weights of the silkworms significantly increased (P < 0.05) after feeding with SWL−19 strain. B. subtilis SWL−19 evidently enhanced the antioxidant property in the silkworms, and the gene expression levels of antimicrobial peptides (attacin, lysozyme, and cecropins) were affected by the SWL−19 strain. Moreover, the levels of riboflavin, nicotinamide, pyridoxine, and pyridoxal in the hemolymph of the silkworms remarkably increased after SWL−19 strain feeding. The results of transcriptomic analysis indicated that the response of intestinal tissues to B. subtilis SWL−19 focused mainly on the categories of external biotic stimulus, interspecies interaction between organisms, immune system process, and stress response. In conclusion, probiotic B. subtilis SWL−19 substantially enhanced the body weight and antioxidant property of silkworm and simultaneously regulated the intestinal immunity and promoted the metabolism of B vitamins. The present study provides a theoretical reference for the application of probiotic B. subtilis SWL−19 to improve silkworm physiology under artificial diet rearing condition.
期刊介绍:
Since 1985, Symbiosis publishes original research that contributes to the understanding of symbiotic interactions in a wide range of associations at the molecular, cellular and organismic level. Reviews and short communications on well-known or new symbioses are welcomed as are book reviews and obituaries. This spectrum of papers aims to encourage and enhance interactions among researchers in this rapidly expanding field.
Topics of interest include nutritional interactions; mutual regulatory and morphogenetic effects; structural co-adaptations; interspecific recognition; specificity; ecological adaptations; evolutionary consequences of symbiosis; and methods used for symbiotic research.