Statistical modeling of nitrogen-dependent modulation of root system architecture in Arabidopsis thaliana

被引:33
作者
Araya, Takao [1 ,2 ]
Kubo, Takuya [3 ]
von Wiren, Nicolaus [2 ]
Takahashi, Hideki [1 ]
机构
[1] Michigan State Univ, Dept Biochem & Mol Biol, E Lansing, MI 48824 USA
[2] Leibniz Inst Plant Genet & Crop Plant Res, Mol Plant Nutr, D-06466 Gatersleben, Germany
[3] Hokkaido Univ, Grad Sch Environm Sci, Sapporo, Hokkaido 0600810, Japan
基金
美国国家科学基金会;
关键词
Ammonium; mathematical modeling; nitrate; nitrogen; root system architecture; NITRATE; GROWTH; RESPONSES; AMMONIUM; PROLIFERATION; AVAILABILITY; POTASSIUM; PHOSPHATE; SOFTWARE; PLATFORM;
D O I
10.1111/jipb.12433
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Plant root development is strongly affected by nutrient availability. Despite the importance of structure and function of roots in nutrient acquisition, statistical modeling approaches to evaluate dynamic and temporal modulations of root system architecture in response to nutrient availability have remained as widely open and exploratory areas in root biology. In this study, we developed a statistical modeling approach to investigate modulations of root system architecture in response to nitrogen availability. Mathematical models were designed for quantitative assessment of root growth and root branching phenotypes and their dynamic relationships based on hierarchical configuration of primary and lateral roots formulating the fishbone-shaped root system architecture in Arabidopsis thaliana. Time-series datasets reporting dynamic changes in root developmental traits on different nitrate or ammonium concentrations were generated for statistical analyses. Regression analyses unraveled key parameters associated with: (i) inhibition of primary root growth under nitrogen limitation or on ammonium; (ii) rapid progression of lateral root emergence in response to ammonium; and (iii) inhibition of lateral root elongation in the presence of excess nitrate or ammonium. This study provides a statistical framework for interpreting dynamic modulation of root system architecture, supported by meta-analysis of datasets displaying morphological responses of roots to diverse nitrogen supplies.
引用
收藏
页码:254 / 265
页数:12
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