生物
微生物群
代谢组
代谢组学
基因组
肠道菌群
肠道微生物群
疾病
基因组学
计算生物学
人口
人体微生物群
失调
作者
Menglei Shuai,Yuanqing Fu,Hai-li Zhong,Wanglong Gou,Zengliang Jiang,Yuhui Liang,Zelei Miao,Junming Xu,Tien Huynh,Mark L Wahlqvist,Yu-ming Chen,Ju-Sheng Zheng
出处
期刊:Gut
[BMJ]
日期:2022-01-11
卷期号:: gutjnl-326298
被引量:1
标识
DOI:10.1136/gutjnl-2021-326298
摘要
Objective The human gut fungal community, known as the mycobiome, plays a fundamental role in the gut ecosystem and health. Here we aimed to investigate the determinants and long-term stability of gut mycobiome among middle-aged and elderly adults. We further explored the interplay between gut fungi and bacteria on metabolic health. Design The present study included 1244 participants from the Guangzhou Nutrition and Health Study. We characterised the long-term stability and determinants of the human gut mycobiome, especially long-term habitual dietary consumption. The comprehensive multiomics analyses were performed to investigate the ecological links between gut bacteria, fungi and faecal metabolome. Finally, we examined whether the interaction between gut bacteria and fungi could modulate the metabolic risk. Results The gut fungal composition was temporally stable and mainly determined by age, long-term habitual diet and host physiological states. Specifically, compared with middle-aged individuals, Blastobotrys and Agaricomycetes spp were depleted, while Malassezia was enriched in the elderly. Dairy consumption was positively associated with Saccharomyces but inversely associated with Candida . Notably, Saccharomycetales spp interacted with gut bacterial diversity to influence insulin resistance. Bidirectional mediation analyses indicated that bacterial function or faecal histidine might causally mediate an impact of Pichia on blood cholesterol. Conclusion We depict the sociodemographic and dietary determinants of human gut mycobiome in middle-aged and elderly individuals, and further reveal that the gut mycobiome may be closely associated with the host metabolic health through regulating gut bacterial functions and metabolites.
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