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关于……中三酰甘油生物合成调控系统的推断

Inference of Regulatory System for TAG Biosynthesis in .

作者信息

Aburatani Sachiyo, Ishiya Koji, Itoh Toshikazu, Hayashi Toshihiro, Taniguchi Takeaki, Takaku Hiroaki

机构信息

Computational Bio Big-Data Open Innovation Laboratory (CBBD-OIL), National Institute of Advanced Industrial Science and Technology (AIST), Tokyo 305-8568, Japan.

BPRI, National Institute of Advance Industrial Science and Technology (AIST), Sapporo 062-8517, Japan.

出版信息

Bioengineering (Basel). 2020 Nov 19;7(4):148. doi: 10.3390/bioengineering7040148.

Abstract

Improving the bioproduction ability of efficient host microorganisms is a central aim in bioengineering. To control biosynthesis in living cells, the regulatory system of the whole biosynthetic pathway should be clearly understood. In this study, we applied our network modeling method to infer the regulatory system for triacylglyceride (TAG) biosynthesis in , using factor analyses and structural equation modeling to construct a regulatory network model. By factor analysis, we classified 89 TAG biosynthesis-related genes into nine groups, which were considered different regulatory sub-systems. We constructed two different types of regulatory models. One is the regulatory model for oil productivity, and the other is the whole regulatory model for TAG biosynthesis. From the inferred oil productivity regulatory model, the well characterized genes DGA1 and ACL1 were detected as regulatory factors. Furthermore, we also found unknown feedback controls in oil productivity regulation. These regulation models suggest that the regulatory factor induction targets should be selected carefully. Within the whole regulatory model of TAG biosynthesis, some genes were detected as not related to TAG biosynthesis regulation. Using network modeling, we reveal that the regulatory system is helpful for the new era of bioengineering.

摘要

提高高效宿主微生物的生物生产能力是生物工程的核心目标。为了控制活细胞中的生物合成,需要清楚了解整个生物合成途径的调控系统。在本研究中,我们应用网络建模方法,通过因子分析和结构方程建模构建调控网络模型,来推断酿酒酵母中三酰甘油(TAG)生物合成的调控系统。通过因子分析,我们将89个与TAG生物合成相关的基因分为九组,这些组被认为是不同的调控子系统。我们构建了两种不同类型的调控模型。一种是油脂生产率调控模型,另一种是TAG生物合成的整体调控模型。从推断出的油脂生产率调控模型中,已得到充分表征的基因DGA1和ACL1被检测为调控因子。此外,我们还发现了油脂生产率调控中未知的反馈控制。这些调控模型表明,应谨慎选择调控因子诱导靶点。在TAG生物合成的整体调控模型中,一些基因被检测为与TAG生物合成调控无关。通过网络建模,我们揭示该调控系统对生物工程的新时代是有帮助的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d923/7711605/de22565a05fe/bioengineering-07-00148-g001.jpg

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