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首页> 外文期刊>Plant signaling & behavior >From systems biology to photosynthesis and whole-plant physiology: a conceptual model for integrating multi-scale networks.
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From systems biology to photosynthesis and whole-plant physiology: a conceptual model for integrating multi-scale networks.

机译:从系统生物学到光合作用和全植物生理学:一个集成多尺度网络的概念模型。

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摘要

Network analysis is now a common statistical tool for molecular biologists. Network algorithms are readily used to model gene, protein and metabolic correlations providing insight into pathways driving biological phenomenon. One output from such an analysis is a candidate gene list that can be responsible, in part, for the biological process of interest. The question remains, however, as to whether molecular network analysis can be used to inform process models at higher levels of biological organization. In our previous work, transcriptional networks derived from three plant species were constructed, interrogated for orthology and then correlated with photosynthetic inhibition at elevated temperature. One unique aspect of that study was the link from co-expression networks to net photosynthesis. In this addendum, we propose a conceptual model where traditional network analysis can be linked to whole-plant models thereby informing predictions on key processes such as photosynthesis, nutrient uptake and assimilation, and C partitioning.
机译:网络分析现在是分子生物学家常用的统计工具。网络算法很容易用于对基因,蛋白质和代谢相关性进行建模,从而深入了解驱动生物现象的途径。此类分析的一个输出是候选基因列表,该列表可能部分负责目标生物学过程。然而,关于分子网络分析是否可用于在更高层次的生物组织中为过程模型提供信息的问题仍然存在。在我们之前的工作中,构建了来自三种植物的转录网络,对其进行了正交研究,然后与高温下的光合作用相关。该研究的一个独特方面是从共表达网络到净光合作用的联系。在本附录中,我们提出了一个概念模型,在该模型中,传统的网络分析可以与整个植物模型链接,从而为诸如光合作用,养分吸收和同化以及碳分配等关键过程提供预测信息。

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