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.
New Phytol. 2022 Sep;235(5):1780-1795. doi: 10.1111/nph.18287. Epub 2022 Jun 18.
During germination, seed reserves are mobilised to sustain the metabolic and energetic demands of plant growth. Mitochondrial respiration is presumably required to drive germination in several species, but only recently its role in this process has begun to be elucidated. Using Arabidopsis thaliana lines with changes in the levels of the respiratory chain component cytochrome c (CYTc), we investigated the role of this protein in germination and its relationship with hormonal pathways. Cytochrome c deficiency causes delayed seed germination, which correlates with decreased cyanide-sensitive respiration and ATP production at the onset of germination. In addition, CYTc affects the sensitivity of germination to abscisic acid (ABA), which negatively regulates the expression of CYTC-2, one of two CYTc-encoding genes in Arabidopsis. CYTC-2 acts downstream of the transcription factor ABSCISIC ACID INSENSITIVE 4 (ABI4), which binds to a region of the CYTC-2 promoter required for repression by ABA and regulates its expression. The results show that CYTc is a main player during seed germination through its role in respiratory metabolism and energy production. In addition, the direct regulation of CYTC-2 by ABI4 and its effect on ABA-responsive germination establishes a link between mitochondrial and hormonal functions during this process.
在种子萌发过程中,种子储备被动员起来以维持植物生长的代谢和能量需求。线粒体呼吸被认为是驱动几种物种萌发所必需的,但直到最近,其在这一过程中的作用才开始被阐明。使用拟南芥中呼吸链成分细胞色素 c(CYTc)水平变化的品系,我们研究了该蛋白在萌发过程中的作用及其与激素途径的关系。细胞色素 c 缺乏导致种子萌发延迟,这与萌发起始时氰化物敏感呼吸和 ATP 产生减少相关。此外,CYTc 影响萌发对脱落酸(ABA)的敏感性,ABA 负调节拟南芥中两个 CYTc 编码基因之一的 CYTC-2 的表达。CYTC-2 作为转录因子 ABSCISIC ACID INSENSITIVE 4(ABI4)的下游发挥作用,ABI4 结合到 CYTC-2 启动子的一个区域,该区域需要 ABA 抑制并调节其表达。结果表明,CYTc 通过其在呼吸代谢和能量产生中的作用,成为种子萌发过程中的主要参与者。此外,ABI4 对 CYTC-2 的直接调节及其对 ABA 响应萌发的影响,在这一过程中建立了线粒体和激素功能之间的联系。