RIKEN Plant Science Center, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, Japan.
Plant J. 2012 May;70(4):624-36. doi: 10.1111/j.1365-313X.2012.04903.x. Epub 2012 Feb 10.
A comprehensive and large-scale metabolome quantitative trait loci (mQTL) analysis was performed to investigate the genetic backgrounds associated with metabolic phenotypes in rice grains. The metabolome dataset consisted of 759 metabolite signals obtained from the grains of 85 lines of rice (Oryza sativa, Sasanishiki × Habataki back-crossed inbred lines). Metabolome analysis was performed using four mass spectrometry pipelines to enhance detection of different classes of metabolites. This mQTL analysis of a wide range of metabolites highlighted an uneven distribution of 802 mQTLs on the rice genome, as well as different modes of metabolic trait (m-trait) control among various types of metabolites. The levels of most metabolites within rice grains were highly sensitive to environmental factors, but only weakly associated with mQTLs. Coordinated control was observed for several groups of metabolites, such as amino acids linked to the mQTL hotspot on chromosome 3. For flavonoids, m-trait variation among the experimental lines was tightly governed by genetic factors that alter the glycosylation of flavones. Many loci affecting levels of metabolites were detected by QTL analysis, and plausible gene candidates were evaluated by in silico analysis. Several mQTLs profoundly influenced metabolite levels, providing insight into the control of rice metabolism. The genomic region and genes potentially responsible for the biosynthesis of apigenin-6,8-di-C-α-l-arabinoside are presented as an example of a critical mQTL identified by the analysis.
进行了全面且大规模的代谢物数量性状基因座(mQTL)分析,以研究与稻米代谢表型相关的遗传背景。代谢组数据集由 85 条水稻(Sasanishiki×Habataki 回交自交系)的 759 个代谢物信号组成。使用四种质谱分析方法来增强对不同类代谢物的检测,从而进行代谢组分析。对广泛的代谢物的这种 mQTL 分析突出了在水稻基因组上 802 个 mQTL 的不均匀分布,以及不同类型代谢物之间的代谢性状(m-trait)控制的不同模式。稻米中大多数代谢物的水平对环境因素高度敏感,但与 mQTL 相关性较弱。几个代谢物群的协调控制得到了观察,例如与染色体 3 上 mQTL 热点相关的氨基酸。对于类黄酮,实验系之间的 m-trait 变异受改变类黄酮糖基化的遗传因素严格控制。通过 QTL 分析检测到许多影响代谢物水平的基因座,并且通过计算机分析评估了可能的基因候选。一些 mQTL 对代谢物水平有深远影响,为了解水稻代谢的控制提供了思路。提出了可能负责芹菜素-6,8-二-C-α-L-阿拉伯糖苷生物合成的基因组区域和基因作为通过分析确定的关键 mQTL 的一个例子。