Instituto de Agrobiotecnología del Litoral (CONICET-UNL), Cátedra de Biología Celular y Molecular, Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, 3000 Santa Fe, Argentina.
J Exp Bot. 2021 May 18;72(11):4102-4118. doi: 10.1093/jxb/eraa608.
Plant mitochondria harbour complex metabolic routes that are interconnected with those of other cell compartments, and changes in mitochondrial function remotely influence processes in different parts of the cell. This implies the existence of signals that convey information about mitochondrial function to the rest of the cell. Increasing evidence indicates that metabolic and redox signals are important for this process, but changes in ion fluxes, protein relocalization, and physical contacts with other organelles are probably also involved. Besides possible direct effects of these signalling molecules on cellular functions, changes in mitochondrial physiology also affect the activity of different signalling pathways that modulate plant growth and stress responses. As a consequence, mitochondria influence the responses to internal and external factors that modify the activity of these pathways and associated biological processes. Acting through the activity of hormonal signalling pathways, mitochondria may also exert remote control over distant organs or plant tissues. In addition, an intimate cross-talk of mitochondria with energy signalling pathways, such as those represented by TARGET OF RAPAMYCIN and SUCROSE NON-FERMENTING1-RELATED PROTEIN KINASE 1, can be envisaged. This review discusses available evidence on the role of mitochondria in shaping plant growth and stress responses through various signalling pathways.
植物线粒体拥有与其他细胞区室相互连接的复杂代谢途径,线粒体功能的变化会远程影响细胞不同部位的过程。这意味着存在着将有关线粒体功能的信息传递给细胞其他部分的信号。越来越多的证据表明代谢和氧化还原信号对此过程很重要,但离子通量的变化、蛋白质重定位以及与其他细胞器的物理接触也可能与之相关。除了这些信号分子对细胞功能可能产生的直接影响外,线粒体生理学的变化还会影响调节植物生长和应激反应的不同信号通路的活性。因此,线粒体影响对改变这些途径及其相关生物过程活性的内部和外部因素的反应。通过激素信号通路的活性,线粒体也可以对远程器官或植物组织进行远程控制。此外,可以设想线粒体与能量信号通路(如雷帕霉素靶蛋白和蔗糖非发酵 1 相关蛋白激酶 1 所代表的信号通路)之间存在密切的交叉对话。这篇综述讨论了线粒体通过各种信号通路在塑造植物生长和应激反应中的作用的现有证据。