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在低温条件下,富马酸和苹果酸的相反变化主导了生物量异常的拟南芥水杨酸突变体的代谢表型。

Opposite variations in fumarate and malate dominate metabolic phenotypes of Arabidopsis salicylate mutants with abnormal biomass under chilling.

作者信息

Scott Ian M, Ward Jane L, Miller Sonia J, Beale Michael H

机构信息

Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Aberystwyth, SY23 3DA, UK.

出版信息

Physiol Plant. 2014 Dec;152(4):660-74. doi: 10.1111/ppl.12210. Epub 2014 May 23.

DOI:10.1111/ppl.12210
PMID:24735077
Abstract

In chilling conditions (5°C), salicylic acid (SA)-deficient mutants (sid2, eds5 and NahG) of Arabidopsis thaliana produced more biomass than wild type (Col-0), whereas the SA overproducer cpr1 was extremely stunted. The hypothesis that these phenotypes were reflected in metabolism was explored using 600 MHz (1) H nuclear magnetic resonance (NMR) analysis of unfractionated polar shoot extracts. Biomass-related metabolic phenotypes were identified as multivariate data models of these NMR 'fingerprints'. These included principal components that correlated with biomass. Also, partial least squares-regression models were found to predict the relative size of plants in previously unseen experiments in different light intensities, or relative size of one genotype from the others. The dominant signal in these models was fumarate, which was high in SA-deficient mutants, intermediate in Col-0 and low in cpr1 at 5°C. Among signals negatively correlated with biomass, malate was prominent. Abundance of transcripts of the FUM2 cytosolic fumarase (At5g50950) showed strong positive correlation with fumarate levels and with biomass, whereas no significant differences were found for the FUM1 mitochondrial fumarase (At2g47510). It was confirmed that the morphological effects of SA under chilling find expression in the metabolome, with a role of fumarate highlighted.

摘要

在低温条件(5°C)下,拟南芥水杨酸(SA)缺陷型突变体(sid2、eds5和NahG)比野生型(Col-0)积累了更多的生物量,而SA过量产生的cpr1则严重发育不良。利用600 MHz氢核磁共振(NMR)对未分级的极性茎提取物进行分析,探究了这些表型在代谢方面的体现。将与生物量相关的代谢表型确定为这些NMR“指纹”的多变量数据模型。其中包括与生物量相关的主成分。此外,发现偏最小二乘回归模型能够预测在不同光照强度下之前未进行过的实验中植株的相对大小或一种基因型相对于其他基因型的相对大小。这些模型中的主要信号是富马酸,在5°C时,其在SA缺陷型突变体中含量较高,在Col-0中含量中等,而在cpr1中含量较低。在与生物量呈负相关的信号中,苹果酸较为突出。胞质富马酸酶FUM2(At5g50950)的转录本丰度与富马酸水平和生物量呈强正相关,而线粒体富马酸酶FUM1(At2g475,10)未发现显著差异。证实了低温条件下SA的形态学效应在代谢组中得以体现,突出了富马酸的作用。

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