土(古典元素)
生态系统
地球科学
天体生物学
地理
数据科学
数据库
环境资源管理
环境科学
生态学
计算机科学
地质学
生物
数学
数学物理
作者
João F. Matias Rodrigues,Janko Tackmann,Lukas Malfertheiner,David Patsch,Eugenio Perez‐Molphe‐Montoya,Nicolas Näpflin,Daniela Gaio,Gregor Rot,Mihai Danaila,Matteo Eustachio Peluso,Marija Dmitrijeva,Thomas Schmidt,Christian von Mering
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-07-18
被引量:16
标识
DOI:10.1101/2025.07.18.665519
摘要
Abstract Environmental DNA sequencing has revolutionized our understanding of microbial diversity and ecology. Microbiomes have now been sequenced across the entire planet—from the deep subsurface to the mountain tops—covering a myriad of hosts, biomes, and conditions. Yet, the diversity of sequencing and processing strategies hampers universal insights. MicrobeAtlas unifies more than two million microbiome samples in a single resource, harmonized to facilitate discoveries across technologies. Communities are hierarchically quantified at adjustable SSU rRNA marker gene resolution and feature detailed metadata, including rich geographic information. Connections to genome, phenotype, and ecological resources enable multimodal insights. Microbial lineages can be reliably tracked across environments, including a ‘long tail’ of rare, uncharacterized species. Recurring community structures and geographic preferences become apparent, and global, taxonomy-specific generalism trends emerge. With MicrobeAtlas ( www.microbeatlas.org ), both known and newly described species and communities can readily be placed into ecological context, taking full advantage of earlier work.
科研通智能强力驱动
Strongly Powered by AbleSci AI