Department Lothar Willmitzer, Max Planck Institute of Molecular Plant Physiology, Universität Potsdam Potsdam, Germany.
Front Plant Sci. 2013 Jun 25;4:219. doi: 10.3389/fpls.2013.00219. eCollection 2013.
Plants have the capacity to adapt growth to changing environmental conditions. This implies the modulation of metabolism according to the availability of carbon (C). Particular interest in the response to the C availability is based on the increasing atmospheric levels of CO2. Several regulatory pathways that link the C status to growth have emerged. The extracellular EXO protein is essential for cell expansion and promotes shoot and root growth. Homologous proteins were identified in evolutionarily distant green plants. We show here that the EXO protein connects growth with C responses. The exo mutant displayed altered responses to exogenous sucrose supplemented to the growth medium. Impaired growth of the mutant in synthetic medium was associated with the accumulation of starch and anthocyanins, altered expression of sugar-responsive genes, and increased abscisic acid levels. Thus, EXO modulates several responses related to the C availability. Growth retardation on medium supplemented with 2-deoxy-glucose, mannose, and palatinose was similar to the wild type. Trehalose feeding stimulated root growth and shoot biomass production of exo plants whereas it inhibited growth of the wild type. The phenotypic features of the exo mutant suggest that apoplastic processes coordinate growth and C responses.
植物具有根据环境条件变化调整生长的能力。这意味着根据碳 (C) 的可用性来调节代谢。对 C 可用性响应的特别关注基于大气中 CO2 水平的不断增加。已经出现了将 C 状态与生长联系起来的几种调节途径。细胞外 EXO 蛋白对于细胞扩展是必需的,并促进芽和根的生长。在进化上相距甚远的绿色植物中鉴定出同源蛋白。我们在这里表明,EXO 蛋白将生长与 C 响应联系起来。exo 突变体对添加到生长培养基中的外源蔗糖的反应发生改变。在合成培养基中突变体的生长受损与淀粉和花色素苷的积累、糖响应基因表达的改变以及脱落酸水平的增加有关。因此,EXO 调节与 C 可用性相关的几种响应。在添加 2-脱氧葡萄糖、甘露糖和海藻糖的培养基上,生长迟缓与野生型相似。海藻糖喂养刺激 exo 植物的根生长和地上生物量产生,而抑制野生型的生长。exo 突变体的表型特征表明质外体过程协调生长和 C 响应。