Functional and Taxonomic Dysbiosis of the Gut, Urine, and Semen Microbiomes in Male Infertility

微生物群 精液 男性不育 精液分析 失调 基因组 精子 不育 蔷薇花 生理学 医学 生物 男科 生物信息学 遗传学 拟杆菌 怀孕 基因 细菌
作者
Scott D. Lundy,Naseer Sangwan,Neel Parekh,Manesh Kumar Panner Selvam,Sajal Gupta,Peter McCaffrey,Kovi Bessoff,Ayin Vala,Ashok Agarwal,Edmund S. Sabanegh,Sarah C. Vij,Charis Eng
出处
期刊:European Urology [Elsevier]
卷期号:79 (6): 826-836 被引量:147
标识
DOI:10.1016/j.eururo.2021.01.014
摘要

Little is known about the role of the genitourinary and gastrointestinal microbiota in the pathogenesis of male infertility. To compare the taxonomic and functional profiles of the gut, semen, and urine microbiomes of infertile and fertile men. We prospectively enrolled 25 men with primary idiopathic infertility and 12 healthy men with proven paternity, and we collected rectal swabs, semen samples, midstream urine specimens, and experimental controls. We performed comprehensive semen analysis, 16S rRNA sequencing for quantitative high-resolution taxonomy, and shotgun metagenomics with a median of 140 million reads per sample for functional metabolic pathway profiling. We identified a diverse semen microbiome with modest similarity to the urinary microbiome. Infertile men harbored increased seminal α-diversity and distinct β-diversity, increased seminal Aerococcus, and decreased rectal Anaerococcus. Prevotella abundance was inversely associated with sperm concentration, and Pseudomonas was directly associated with total motile sperm count. Vasectomy appeared to alter the seminal microbiome, suggesting a testicular or epididymal contribution. Anaerobes were highly over-represented in the semen of infertile men with a varicocele, but oxidative stress and leukocytospermia were associated with only subtle differences. Metagenomics data identified significant alterations in the S-adenosyl-L-methionine cycle, which may play a multifaceted role in the pathogenesis of infertility via DNA methylation, oxidative stress, and/or polyamine synthesis. This pilot study represents the first comprehensive investigation into the microbiome in male infertility. These findings provide the foundation for future investigations to explore causality and identify novel microbiome-based diagnostics and therapeutics for men with this complex and emotionally devastating disease. We explored the resident populations of bacteria living in the gut, semen, and urine of infertile and fertile men. We found several important bacterial and metabolic pathway differences with the potential to aid in diagnosing and treating male infertility in the future.

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