生物
基因组
计算生物学
基因组学
基因组
特质
微生物群
数据科学
系统发育树
DNA测序
人类微生物组计划
生态学
比例(比率)
进化生物学
钥匙(锁)
全基因组测序
系统生物学
生物技术
遗传建筑学
基因组信息
基因预测
计算机科学
基因调控网络
生命之树(生物学)
基础(证据)
作者
Qiang Kang,Yucheng Guo,Bozhen Hu,Xiaoping Li,Qirong Yang,Yujie Yang,Dongli Lu,Haotong Sun,Ruilai Xu,Ziyao Xu,Haochen Wang,Yuheng Lin,Yuxiang Li,Yong Zhang,Feiran Li,Xiaoming Zhang,Peng Yin
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-12-29
标识
DOI:10.64898/2025.12.28.696777
摘要
Abstract Microorganisms underpin global biogeochemical cycles and represent a vast, underexplored reservoir for sustainable biotechnology and human health. Their diversity, arising from the interplay of numerous genes within holistic genomic contexts, dictates complex ecophysiological traits across varied environments. To bridge the gap between complex genomic sequences and associated biological functions and phenotypic outcomes, we present MicroGenomer, a foundation model for transferable microbial genome representations enabling multi-scale genomic understanding and ecophysiological trait prediction. MicroGenomer leverages a hierarchical training strategy comprising pre-training on large-scale genomic sequences (234.5 billion base pairs), domain-specific mid-training using the GTDB-curated marker gene set, and task-specific post-training. Despite a streamlined architecture of 470 million parameters, MicroGenomer achieves performance on key tasks competitive with models nearly 85 times its size. Advancing beyond established gene-scale encoders, MicroGenomer generates robust embeddings at the genome scale for downstream modeling. Extensive evaluations demonstrate that MicroGenomer effectively captures phylogenetic structures in species space, excelling in geneand genome-scale understanding as well as ecophysiological trait prediction. The practical utility of these capabilities is further demonstrated by targeted wet-lab validation on newly isolated strains, indicating that MicroGenomer’s predictions provide reliable guidance for biological experiments. Collectively, MicroGenomer offers a high-performance, resource-efficient framework that transforms raw sequence data into actionable biological insights, providing a powerful foundation for microbiome research and biotechnology.
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