Integrating proteomics and enzymatic profiling to decipher seed metabolism affected by temperature in seed dormancy and germination

发芽 渗吸 休眠 生物 蛋白质组 种子休眠 蛋白质组学 蛋白质降解 葵花籽 蛋白酶体 生物化学 蛋白酵素 新陈代谢 磷酸甘油酸变位酶 植物 向日葵 园艺 糖酵解 基因
作者
Qiong Xia,Maharajah Ponnaiah,Gwendal Cueff,Loïc Rajjou,Duyên Prodhomme,Yves Gibon,Christophe Bailly,Françoise Corbineau,Patrice Meimoun,Christophe Bailly
出处
期刊:Plant Science [Elsevier]
卷期号:269: 118-125 被引量:30
标识
DOI:10.1016/j.plantsci.2018.01.014
摘要

Temperature is an important environmental factor affecting seed dormancy and germination. The mechanism by which temperature induces germination in dormant seeds is however still unclear. Proteomic study has been performed in dormant sunflower seeds during imbibition at permissive and non-permissive temperatures for germination, 20 and 10 °C, respectively. Proteome analysis showed an increase of proteins belonging to metabolism and energy from the first hours of imbibition followed by a decrease of proteins involved in protein metabolism and seed storage in germinating compared to non-germinating seeds. Proteomic study was completed by polysome and proteasome activity assessment and enzymatic profiling on several altered proteins involved in metabolism and energy. Results showed that 20 °C treatment induced the activation of both protein synthesis and degradation processes, the latter being related to proteasome activity during the germination sensu stricto, and to other degradation processes such as proteases during the post-germination. Interestingly, enzymatic profiles showed that TCA cycle and glycolysis were more active in non-germinating seeds in the phase I of the germination sensu stricto. This result suggests the regulation of central metabolism activity in germinating seeds. The control of energy production during imbibition seems to be involved in molecular networks controlling seed dormancy and germination.

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