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关于……中莫能菌素耐药性发展的基因组学见解 。(你提供的原文不完整,句末缺少具体内容)

Genomic insights into monensin resistance development in .

作者信息

Gu Xiaolong, Fang Sufang, Liu Hongbin, Shi Yubo, Zhang Yuanyuan, Wang Peng, Cui Ping, Tang Xinming

机构信息

College of Animal Science and Technology, Hebei North University, Zhangjiakou, China.

College of Veterinary Medicine, China Agricultural University, Beijing, China.

出版信息

Front Vet Sci. 2025 Apr 1;12:1459791. doi: 10.3389/fvets.2025.1459791. eCollection 2025.

Abstract

INTRODUCTION

Monensin resistance in poses a significant challenge in poultry farming, compromising the effectiveness of this widely used anticoccidial drug. The present study aimed to identify candidate mutated genes in associated with monensin resistance through experimental evolution and pooled genome sequencing.

METHODS

The monensin-resistant (MR) strains were rapidly generated by 6 generations of serial passage under gradient monensin treatments using Houghton strain as the parental strain. Genomic sequencing was applied to uncover genetic changes during passages under drug selective pressure. Comparative analysis between resistant and control populations was performed by using the ΔSNP-index and F values to identify loci with significant selective sweeps. Stringent thresholds were applied to pinpoint candidate genes, followed by annotation and analysis of their potential functions.

RESULTS AND DISCUSSION

The genetic diversity of MR parasites remained stable across generations, despite varying drug concentrations. Seven candidate genes with 11 missense mutations were identified in MR strains. Key genes include ETH2_0729200 (dynein motor protein), ETH2_0729400 (esterase/lipase), and ETH2_0730000 (pyridine nucleotide-disulfide oxidoreductase) annotated in both the selective sweeps by using ΔSNP-index and F methods. Further experimental validation of these candidate genes is essential to elucidate their roles in monensin resistance. This research contributes valuable insights into the molecular basis of resistance pressure in parasites, potentially informing future strategies for the control of coccidiosis.

摘要

引言

鸡球虫对莫能菌素产生抗性给家禽养殖带来了重大挑战,降低了这种广泛使用的抗球虫药物的有效性。本研究旨在通过实验进化和混合基因组测序来鉴定与莫能菌素抗性相关的候选突变基因。

方法

以霍顿株为亲本株,在梯度莫能菌素处理下连续传代6代,快速获得莫能菌素抗性(MR)株。应用基因组测序来揭示药物选择压力下传代过程中的遗传变化。通过使用ΔSNP指数和F值对抗性群体和对照群体进行比较分析,以鉴定具有显著选择性清除的位点。应用严格的阈值来确定候选基因,随后对其潜在功能进行注释和分析。

结果与讨论

尽管药物浓度不同,但MR寄生虫的遗传多样性在各代中保持稳定。在MR株中鉴定出7个具有11个错义突变的候选基因。关键基因包括在使用ΔSNP指数和F方法进行的选择性清除中均有注释的ETH2_0729200(动力蛋白)、ETH2_0729400(酯酶/脂肪酶)和ETH2_0730000(吡啶核苷酸 - 二硫化物氧化还原酶)。对这些候选基因进行进一步的实验验证对于阐明它们在莫能菌素抗性中的作用至关重要。本研究为鸡球虫寄生虫抗性压力的分子基础提供了有价值的见解,可能为未来控制球虫病的策略提供信息。

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