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一名年轻赛艇运动员在使用膳食纤维补充剂一个月后,其微生物群因高强度耐力训练受到的剧烈影响。

Drastic Effects on the Microbiome of a Young Rower Engaged in High-Endurance Exercise After a Month Usage of a Dietary Fiber Supplement.

作者信息

Jaago Mariliis, Timmusk Uku Siim, Timmusk Tõnis, Palm Kaia

机构信息

Protobios Llc, Tallinn, Estonia.

Department of Chemistry and Biotechnology, Tallinn University of Technology, Tallinn, Estonia.

出版信息

Front Nutr. 2021 Apr 30;8:654008. doi: 10.3389/fnut.2021.654008. eCollection 2021.

Abstract

Food supplements are increasingly used worldwide. However, research on the efficacy of such supplements on athlete's well-being and optimal sports performance is very limited. This study performed in junior academic rowing explores the effects of nutritional supplements to aid to the high energy requirements at periods of intense exercise. Herein, the effects of prebiotic fibers on the intestinal microbiome composition of an 18-year-old athlete exercising at high loads during an 8-month period in a "real-life" setting were examined using next-generation sequencing analysis. Results demonstrated that although the alpha diversity of the subject's microbiome drastically decreased [from 2.11 precompetition to 1.67 ( < 0.05)] upon fiber consumption, the / ratio increased significantly [from 3.11 to 4.55, as compared with population average ( < 0.05)]. Underlying these macrolevel microbial alterations were demonstrable shifts from acetate- to butyrate-producing bacteria, although with stable effects on the species. To our knowledge, this a unique study that shows pronounced changes in the gut microbiome of the young athlete at the competition season and their favorable compensation by the dietary fiber intake. The data here expand the overall understanding of how the high energy needs in high-intensity sports like academic rowing could be supported by dietary fiber supplement consumption.

摘要

食品补充剂在全球范围内的使用日益增加。然而,关于此类补充剂对运动员健康和最佳运动表现功效的研究非常有限。这项针对初级学术赛艇运动员的研究探讨了营养补充剂对高强度运动期间高能量需求的辅助作用。在此,使用下一代测序分析,研究了益生元纤维对一名18岁运动员在“现实生活”环境中进行8个月高负荷运动时肠道微生物群组成的影响。结果表明,虽然食用纤维后受试者微生物群的α多样性大幅下降[从赛前的2.11降至1.67(<0.05)],但β/α比率显著增加[从3.11增至4.55,与总体平均值相比(<0.05)]。这些宏观层面的微生物变化背后,可证明存在从产乙酸菌向产丁酸菌的转变,尽管对物种有稳定影响。据我们所知,这是一项独特的研究,显示了年轻运动员在比赛季节肠道微生物群的显著变化以及膳食纤维摄入对其的有利补偿。此处的数据扩展了我们对如何通过食用膳食纤维补充剂来支持学术赛艇等高强度运动中的高能量需求的总体理解。

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