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FINET:快速推理网络。

FINET: Fast Inferring NETwork.

作者信息

Wang Anyou, Hai Rong

机构信息

The Institute for Integrative Genome Biology, University of California at Riverside, Riverside, CA, 92521, USA.

Department of Microbiology and Plant Pathology, University of California at Riverside, Riverside, CA, 92521, USA.

出版信息

BMC Res Notes. 2020 Nov 10;13(1):521. doi: 10.1186/s13104-020-05371-0.

Abstract

OBJECTIVES

Numerous software has been developed to infer the gene regulatory network, a long-standing key topic in biology and computational biology. Yet the slowness and inaccuracy inherited in current software hamper their applications to the increasing massive data. Here, we develop a software, FINET (Fast Inferring NETwork), to infer a network with high accuracy and rapidity from big data.

RESULTS

The high accuracy results from integrating algorithms with stability-selection, elastic-net, and parameter optimization. Tested by a known biological network, FINET infers interactions with over 94% precision. The high speed comes from partnering parallel computations implemented with Julia, a new compiled language that runs much faster than existing languages used in the current software, such as R, Python, and MATLAB. Regardless of FINET's implementations with Julia, users with no background in the language or computer science can easily operate it, with only a user-friendly single command line. In addition, FINET can infer other networks such as chemical networks and social networks. Overall, FINET provides a confident way to efficiently and accurately infer any type of network for any scale of data.

摘要

目标

已经开发了许多软件来推断基因调控网络,这是生物学和计算生物学中长期存在的关键课题。然而,当前软件中固有的缓慢和不准确阻碍了它们在日益庞大的数据中的应用。在这里,我们开发了一款软件FINET(快速推断网络),用于从大数据中高精度且快速地推断网络。

结果

高精度源于将稳定性选择、弹性网络和参数优化算法相结合。通过一个已知的生物网络进行测试,FINET推断相互作用的精度超过94%。高速度来自与用Julia实现的并行计算合作,Julia是一种新的编译语言,运行速度比当前软件中使用的现有语言(如R、Python和MATLAB)快得多。无论FINET是用Julia实现的,没有该语言或计算机科学背景的用户都可以轻松操作它,只需一个用户友好的单命令行。此外,FINET可以推断其他网络,如化学网络和社会网络。总体而言,FINET为高效准确地推断任何规模数据的任何类型网络提供了一种可靠的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/080d/7653809/b37e84e6b88d/13104_2020_5371_Fig1_HTML.jpg

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