Plant Biology Division, The Samuel Roberts Noble Foundation, Ardmore, OK, 73401, USA.
Plant Cell Environ. 2015 Jan;38(1):172-87. doi: 10.1111/pce.12378. Epub 2014 Jul 4.
Massive changes in gene expression occur when plants are subjected to phosphorus (P) limitation, but the breadth of metabolic changes in these conditions and their regulation is barely investigated. Nearly 350 primary and secondary metabolites were profiled in shoots and roots of P-replete and P-deprived Arabidopsis thaliana wild type and mutants of the central P-signalling components PHR1 and PHO2, and microRNA399 overexpresser. In the wild type, the levels of 87 primary metabolites, including phosphorylated metabolites but not 3-phosphoglycerate, decreased, whereas the concentrations of most organic acids, amino acids, nitrogenous compounds, polyhydroxy acids and sugars increased. Furthermore, the levels of 35 secondary metabolites, including glucosinolates, benzoides, phenylpropanoids and flavonoids, were altered during P limitation. Observed changes indicated P-saving strategies, increased photorespiration and crosstalk between P limitation and sulphur and nitrogen metabolism. The phr1 mutation had a remarkably pronounced effect on the metabolic P-limitation response, providing evidence that PHR1 is a key factor for metabolic reprogramming during P limitation. The effects of pho2 or microRNA399 overexpression were comparatively minor. In addition, positive correlations between metabolites and gene transcripts encoding pathway enzymes were revealed. This study provides an unprecedented metabolic phenotype during P limitation in Arabidopsis.
当植物受到磷(P)限制时,基因表达会发生巨大变化,但这些条件下代谢变化的广度及其调控机制几乎没有被研究过。在磷充足和磷缺乏的拟南芥野生型和中央磷信号成分 PHR1 和 PHO2 的突变体以及 microRNA399 过表达植株的地上部分和根部中,分析了近 350 种初级和次级代谢产物。在野生型中,包括磷酸化代谢物但不包括 3-磷酸甘油酸在内的 87 种初级代谢物的水平降低,而大多数有机酸、氨基酸、含氮化合物、多羟基酸和糖的浓度增加。此外,在磷限制期间,35 种次级代谢物,包括硫代葡萄糖苷、苯并二氧杂环丁烷、苯丙素和类黄酮的水平发生了变化。观察到的变化表明存在磷节约策略,增加了光呼吸作用以及磷限制与硫和氮代谢之间的串扰。 phr1 突变对代谢磷限制反应有显著的影响,这为 PHR1 是磷限制期间代谢重编程的关键因素提供了证据。 pho2 或 microRNA399 过表达的影响相对较小。此外,还揭示了代谢物与编码途径酶的基因转录物之间的正相关关系。本研究提供了拟南芥在磷限制下的空前代谢表型。