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水稻中硅动态模型:硅转运蛋白投资效率分析

A Model of Silicon Dynamics in Rice: An Analysis of the Investment Efficiency of Si Transporters.

作者信息

Sakurai Gen, Yamaji Naoki, Mitani-Ueno Namiki, Yokozawa Masayuki, Ono Keisuke, Ma Jian Feng

机构信息

Statistical Modeling Unit, Division of Informatics and Inventory, Institute for Agro-Environmental Sciences, National Agriculture and Food Research OrganizationTsukuba, Japan.

Group of Plant Stress Physiology, Institute of Plant Science and Resources, Okayama UniversityKurashiki, Japan.

出版信息

Front Plant Sci. 2017 Jul 11;8:1187. doi: 10.3389/fpls.2017.01187. eCollection 2017.

Abstract

Silicon is the second most abundant element in soils and is beneficial for plant growth. Although, the localizations and polarities of rice Si transporters have been elucidated, the mechanisms that control the expression of Si transporter genes and the functional reasons for controlling expression are not well-understood. We developed a new model that simulates the dynamics of Si in the whole plant in rice by considering Si transport in the roots, distribution at the nodes, and signaling substances controlling transporter gene expression. To investigate the functional reason for the diurnal variation of the expression level, we compared investment efficiencies (the amount of Si accumulated in the upper leaf divided by the total expression level of Si transporter genes) at different model settings. The model reproduced the gradual decrease and diurnal variation of the expression level of the transporter genes observed by previous experimental studies. The results of simulation experiments showed that a considerable reduction in the expression of Si transporter genes during the night increases investment efficiency. Our study suggests that rice has a system that maximizes the investment efficiency of Si uptake.

摘要

硅是土壤中含量第二丰富的元素,对植物生长有益。尽管水稻硅转运体的定位和极性已经阐明,但控制硅转运体基因表达的机制以及控制表达的功能原因尚不清楚。我们开发了一个新模型,通过考虑根系中的硅运输、节处的分布以及控制转运体基因表达的信号物质,来模拟水稻全株中硅的动态变化。为了研究表达水平昼夜变化的功能原因,我们比较了不同模型设置下的投资效率(上部叶片积累的硅量除以硅转运体基因的总表达水平)。该模型重现了先前实验研究中观察到的转运体基因表达水平的逐渐下降和昼夜变化。模拟实验结果表明,夜间硅转运体基因表达的显著降低提高了投资效率。我们的研究表明,水稻具有一个使硅吸收投资效率最大化的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c3e/5504195/63f155854d24/fpls-08-01187-g0001.jpg

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