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奶牛乳腺炎相关的转录组学破坏

Mastitis associated transcriptomic disruptions in cattle.

作者信息

Rinaldi Manuela, Li Robert W, Capuco Anthony V

机构信息

Department of Virology, Parasitology and Immunology, Faculty of Veterinary Medicine, Ghent University, Belgium.

出版信息

Vet Immunol Immunopathol. 2010 Dec 15;138(4):267-79. doi: 10.1016/j.vetimm.2010.10.005. Epub 2010 Oct 30.

Abstract

Mastitis is ranked as the top disease for dairy cattle based on traditional cost analysis. Greater than 100 organisms from a broad phylogenetic spectrum are able to cause bovine mastitis. Transcriptomic characterization facilitates our understanding of host-pathogen relations and provides mechanistic insight into host resistance to mastitis. In this review, we discuss effector mechanisms and transcriptomic changes within the mammary gland in response to experimental infections. We compare temporal, spatial and pathogen-specific local transcriptomic disruptions in the mammary gland as well as pathogen-induced systemic responses and transcriptional changes in distant organs. We attempt to explain why studies on transcriptomic changes during critical physiological periods and in response to non-mastitic pathogens may have important implications for mastitis studies. Future perspectives on revealing bidirectional molecular cross-talk between mastitis pathogens and host cells using cutting-edge genomic technologies are also discussed.

摘要

基于传统成本分析,乳腺炎被列为奶牛的首要疾病。来自广泛系统发育谱的100多种微生物能够引发牛乳腺炎。转录组学特征有助于我们理解宿主与病原体的关系,并为宿主对乳腺炎的抗性提供机制性见解。在本综述中,我们讨论了乳腺内响应实验性感染的效应机制和转录组变化。我们比较了乳腺中随时间、空间和病原体特异性的局部转录组破坏,以及病原体诱导的全身反应和远处器官的转录变化。我们试图解释为什么在关键生理时期以及对非乳腺炎病原体的转录组变化研究可能对乳腺炎研究具有重要意义。还讨论了利用前沿基因组技术揭示乳腺炎病原体与宿主细胞之间双向分子相互作用的未来前景。

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