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◆ Environmental science and ecotechnology2026-09-01

Global intI1 abundance quantifies livestock antimicrobial-resistance risk.

Chengcheng Yao, Liusheng Lei, Wenyan Wang, Lan Jiang, Wenshan Yang, Yaqi Sheng, Zishu Liu, Xun Qian

原始摘要(英文原文)· Original abstract
Livestock farming environments are major reservoirs of antimicrobial resistance (AMR), yet scalable genetic indicators that quantitatively capture AMR risk remain limited. The class 1 integrase gene intl1 is a hallmark of class 1 integrons (CL1s), which couple gene capture with horizontal transfer capacity and have emerged as leading candidates. However, their suitability as a direct proxy for livestock-associated AMR risk has not been rigorously tested at scale. Here we show that the abundance of intI1 functions as a robust quantitative indicator of livestock-associated AMR risk. Using a custom Class 1 Integrase Database expanded by 63.5% and integrating 4017 livestock metagenomes, 9625 livestock-derived isolate genomes, and approximately 1.2 million human clinical isolate genomes, we demonstrate that intI1 abundance tracks host- and geography-dependent risk patterns, that livestock CL1s carry compact, conserved resistance-cassette arrays matching clinical spectra, and that nearly all are plasmid-borne, with their efficient dissemination facilitated by Tn402, ISCR, and IS110 family elements. A random-forest model trained on these data predicts global intI1 abundance and associated risk with high accuracy (R 2 = 0.93), revealing persistent hotspots across Asia, sub-Saharan Africa, and South America over two decades. These findings establish intI1 as a practical, single-platform proxy that can be incorporated into One Health surveillance and early-warning systems.
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Global intI1 abundance quantifies livestock antimicrobial-resistance risk. — 科研速览 Science Skim