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反刍动物代谢系统生物学:组织对营养和生理状态功能反应背后转录组动力学的重建与整合

Ruminant metabolic systems biology: reconstruction and integration of transcriptome dynamics underlying functional responses of tissues to nutrition and physiological state.

作者信息

Bionaz Massimo, Loor Juan J

机构信息

Institute for Genomic Biology, University of Illinois, Urbana, IL, 61801.

出版信息

Gene Regul Syst Bio. 2012;6:109-25. doi: 10.4137/GRSB.S9852. Epub 2012 Jun 25.

DOI:10.4137/GRSB.S9852
PMID:22807626
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3394460/
Abstract

High-throughput 'omics' data analysis via bioinformatics is one key component of the systems biology approach. The systems approach is particularly well-suited for the study of the interactions between nutrition and physiological state with tissue metabolism and functions during key life stages of organisms such as the transition from pregnancy to lactation in mammals, ie, the peripartal period. In modern dairy cows with an unprecedented genetic potential for milk synthesis, the nature of the physiologic and metabolic adaptations during the peripartal period is multifaceted and involves key tissues such as liver, adipose, and mammary. In order to understand such adaptation, we have reviewed several works performed in our and other labs. In addition, we have used a novel bioinformatics approach, Dynamic Impact Approach (DIA), in combination with partly previously published data to help interpret longitudinal biological adaptations of bovine liver, adipose, and mammary tissue to lactation using transcriptomics datasets. Use of DIA with transcriptomic data from those tissues during normal physiological adaptations and in animals fed different levels of energy prepartum allowed visualization and integration of most-impacted metabolic pathways around the time of parturition. The DIA is a suitable tool for applying the integrative systems biology approach. The ultimate goal is to visualize the complexity of the systems at study and uncover key molecular players involved in the tissue's adaptations to physiological state or nutrition.

摘要

通过生物信息学进行的高通量“组学”数据分析是系统生物学方法的一个关键组成部分。系统方法特别适合研究营养与生理状态之间的相互作用,以及生物体关键生命阶段(如哺乳动物从怀孕到哺乳的过渡阶段,即围产期)的组织代谢和功能。在具有前所未有的牛奶合成遗传潜力的现代奶牛中,围产期生理和代谢适应的性质是多方面的,涉及肝脏、脂肪和乳腺等关键组织。为了理解这种适应,我们回顾了我们实验室和其他实验室进行的几项研究。此外,我们使用了一种新颖的生物信息学方法——动态影响方法(DIA),结合部分先前发表的数据,利用转录组学数据集来帮助解释牛肝脏、脂肪和乳腺组织对泌乳的纵向生物学适应。在正常生理适应过程中以及在产前饲喂不同能量水平的动物中,将DIA与来自这些组织的转录组数据结合使用,可以可视化和整合分娩前后受影响最大的代谢途径。DIA是应用综合系统生物学方法的合适工具。最终目标是可视化所研究系统的复杂性,并揭示参与组织对生理状态或营养适应的关键分子参与者。

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本文引用的文献

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Genomics of metabolic adaptations in the peripartal cow.围产期奶牛代谢适应的基因组学
Animal. 2010 Jul;4(7):1110-39. doi: 10.1017/S1751731110000960.
2
A novel dynamic impact approach (DIA) for functional analysis of time-course omics studies: validation using the bovine mammary transcriptome.一种新颖的动态冲击分析(DIA)方法,用于时间序列组学研究的功能分析:使用牛乳腺转录组进行验证。
PLoS One. 2012;7(3):e32455. doi: 10.1371/journal.pone.0032455. Epub 2012 Mar 16.
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Old and new stories: revelations from functional analysis of the bovine mammary transcriptome during the lactation cycle.
微小RNA在牛、山羊和绵羊乳腺发育、健康及功能中的作用
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Proteomic identification of ruminal epithelial protein expression profiles in response to starter feed supplementation in pre-weaned lambs.蛋白质组学鉴定断奶前羔羊补饲开食料后瘤胃上皮蛋白质表达谱。
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Nutritional Aspects of Ecologically Relevant Phytochemicals in Ruminant Production.反刍动物生产中具有生态相关性的植物化学物质的营养方面
Front Vet Sci. 2021 Mar 5;8:628445. doi: 10.3389/fvets.2021.628445. eCollection 2021.
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Diet Composition Affects Liver and Mammary Tissue Transcriptome in Primiparous Holstein Dairy Cows.日粮组成影响初产荷斯坦奶牛的肝脏和乳腺组织转录组
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Hepatic metabolomics and transcriptomics to study susceptibility to ketosis in response to prepartal nutritional management.利用肝脏代谢组学和转录组学研究产前营养管理对酮病易感性的影响。
J Anim Sci Biotechnol. 2019 Dec 18;10:96. doi: 10.1186/s40104-019-0404-z. eCollection 2019.
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