Universität Potsdam, Max Planck Institute of Molecular Plant Physiology, Department Lothar Willmitzer, 14476 Golm, Germany.
Plant Physiol. 2011 Jul;156(3):1620-30. doi: 10.1104/pp.111.177204. Epub 2011 May 4.
Little is known about genes that control growth and development under low carbon (C) availability. The Arabidopsis (Arabidopsis thaliana) EXORDIUM-LIKE1 (EXL1) gene (At1g35140) was identified as a brassinosteroid-regulated gene in a previous study. We show here that the EXL1 protein is required for adaptation to C- and energy-limiting growth conditions. In-depth analysis of EXL1 transcript levels under various environmental conditions indicated that EXL1 expression is controlled by the C and energy status. Sugar starvation, extended night, and anoxia stress induced EXL1 gene expression. The C status also determined EXL1 protein levels. These results suggested that EXL1 is involved in the C-starvation response. Phenotypic changes of an exl1 loss-of-function mutant became evident only under corresponding experimental conditions. The mutant showed diminished biomass production in a short-day/low-light growth regime, impaired survival during extended night, and impaired survival of anoxia stress. Basic metabolic processes and signaling pathways are presumed to be barely impaired in exl1, because the mutant showed wild-type levels of major sugars, and transcript levels of only a few genes such as QUA-QUINE STARCH were altered. Our data suggest that EXL1 is part of a regulatory pathway that controls growth and development when C and energy supply is poor.
关于控制在低碳(C)可用性下生长和发育的基因知之甚少。在之前的研究中,拟南芥(Arabidopsis thaliana)EXORDIUM-LIKE1(EXL1)基因(At1g35140)被鉴定为赤霉素调节基因。我们在这里展示 EXL1 蛋白是适应 C 和能量限制生长条件所必需的。对各种环境条件下 EXL1 转录本水平的深入分析表明,EXL1 的表达受 C 和能量状态的控制。糖饥饿、延长的夜晚和缺氧胁迫诱导 EXL1 基因表达。C 状态也决定了 EXL1 蛋白水平。这些结果表明 EXL1 参与了 C 饥饿反应。只有在相应的实验条件下,exl1 功能丧失突变体的表型变化才变得明显。该突变体在短日照/低光照生长条件下生物量产生减少,在延长的夜晚生存能力受损,以及在缺氧胁迫下生存能力受损。由于突变体显示出主要糖的野生型水平,并且仅少数基因(如 QUA-QUINE STARCH)的转录本水平发生改变,因此推测 exl1 中的基本代谢过程和信号通路几乎没有受到损害。我们的数据表明,EXL1 是控制在 C 和能量供应不足时生长和发育的调节途径的一部分。