Cook Daniel, Fowler Sarah, Fiehn Oliver, Thomashow Michael F
Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, MI 48824, USA.
Proc Natl Acad Sci U S A. 2004 Oct 19;101(42):15243-8. doi: 10.1073/pnas.0406069101. Epub 2004 Sep 21.
The Arabidopsis CBF cold response pathway has a central role in cold acclimation, the process whereby plants increase in freezing tolerance in response to low nonfreezing temperatures. Here we examined the changes that occur in the Arabidopsis metabolome in response to low temperature and assessed the role of the CBF cold response pathway in bringing about these modifications. Of 434 metabolites monitored by GC-time-of-flight MS, 325 (75%) were found to increase in Arabidopsis Wassilewskija-2 (Ws-2) plants in response to low temperature. Of these 325 metabolites, 256 (79%) also increased in nonacclimated Ws-2 plants in response to overexpression of C-repeat/dehydration responsive element-binding factor (CBF)3. Extensive cold-induced changes also occurred in the metabolome of Arabidopsis Cape Verde Islands-1 (Cvi-1) plants, which were found to be less freezing tolerant than Ws-2 plants. However, low-temperature-induced expression of CBF1, CBF2, CBF3, and CBF-targeted genes was much lower in Cvi-1 than in Ws-2 plants, and the low-temperature metabolome of Cvi-1 plants was depleted in metabolites affected by CBF3 overexpression. Taken together, the results indicate that the metabolome of Arabidopsis is extensively reconfigured in response to low temperature, and that the CBF cold response pathway has a prominent role in this process.
拟南芥CBF冷响应途径在低温驯化过程中起核心作用,低温驯化是指植物在非冰冻低温下提高抗冻性的过程。在此,我们研究了拟南芥代谢组对低温响应时发生的变化,并评估了CBF冷响应途径在促成这些变化中的作用。通过气相色谱-飞行时间质谱监测的434种代谢物中,发现325种(75%)在拟南芥Wassilewskija-2(Ws-2)植株中因低温而增加。在这325种代谢物中,256种(79%)在未驯化的Ws-2植株中因C-重复/脱水响应元件结合因子(CBF)3的过表达也增加。拟南芥佛得角群岛-1(Cvi-1)植株的代谢组也发生了广泛的冷诱导变化,该植株的抗冻性低于Ws-2植株。然而,CBF1、CBF2、CBF3和CBF靶向基因的低温诱导表达在Cvi-1中比在Ws-2植株中低得多,并且Cvi-植株的低温代谢组中受CBF3过表达影响的代谢物减少。综上所述,结果表明拟南芥的代谢组在低温响应时会广泛重新配置,并且CBF冷响应途径在这一过程中起重要作用。