运动强度对大学篮球运动员肠道菌群的影响

Deng Hong-xian, Li Huan-huan, Qiao Jiu-quan, Tong Yan, Wang Cui-juan, Liu Jiang
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摘要

目的:运动对肠道菌群具有正向调节作用,并参与调节人体多种生理功能。本文测试了不同运动强度的篮球运动对大学生肠道菌群的影响。方法:选取篮球队运动员为研究对象,年龄在18 ~ 25岁之间,进行不同强度的训练,共采集新鲜粪便样本101份。采用DNA提取试剂盒提取DNA,采用Illumina Hiseq平台对细菌16S rRNA基因V3-V4区进行高通量测序。对下游数据进行拼接、过滤和去三聚体化,然后用于研究肠道微生物群的差异。结果:不同运动强度的运动员肠道中对运动强度有反应的关键细菌类群不同,但以厚壁菌门为主。随着运动强度的增加,篮球运动员体内的丁酸梭菌、厌氧菌、草酸杆菌和梭菌增多。进一步的功能预测分析显示,高强度篮球运动员肠道菌群中碳水化合物代谢、氨基酸代谢、外源代谢和聚糖代谢以及代谢均显著表达。结论:本研究表明,运动员经过长期的专业训练后,肠道菌群能够适应运动刺激物,并对运动强度的变化做出快速反应。在高强度的训练中,通过丰富一些有益的细菌来保护生物体免受伤害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effects of exercise intensity on the gut microbiota of college basketball players
Purpose: Exercise has a positive regulatory effect on gut microbiota and is also involved in regulating multiple physiological functions of the human body. This article tested the effects of basketball exercises at different exercise intensities on the gut microbiota of college students. Methods: Athlete research subjects (male, aged 18 - 25) were selected from the basketball team and trained at different intensities to obtain a total of 101 fresh fecal samples. DNA was extracted by a DNA extraction kit and bacterial 16S rRNA gene V3-V4 region high-throughput sequencing using the Illumina Hiseq platform. The downstream data were spliced, filtered and de-trimerized and then used to study the difference in gut microbiota. Results: Key bacterial taxa in the gut that responded to exercise intensity differed among athletes of different exercise intensities but most belonged to Firmicutes. With increasing exercise intensity, Butyricicoccus, Anaerostipes, Oxalobacter and Clostridium_IV in basketball players enrich. Further analysis of the functional prediction revealed that carbohydrate metabolism, amino acid metabolism, metabolism of xenobiotics and glycans and metabolism were significantly expressed in the gut microbiota of basketball athletes with high intensity. Conclusion: The study demonstrated that after long-term professional training, the gut microbiota of athletes adapts to exercise stimulators and can quickly respond to changes in exercise intensity. In high-intensity training, the organism is protected from harm by enriching some beneficial bacteria.
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