Belin Christophe, Megies Christian, Hauserová Eva, Lopez-Molina Luis
Département de Biologie Végétale, Université de Genève, 1211 Genève 4, Switzerland.
Plant Cell. 2009 Aug;21(8):2253-68. doi: 10.1105/tpc.109.067702. Epub 2009 Aug 7.
Under unfavorable environmental conditions, the stress phytohormone ABA inhibits the developmental transition from an embryo in a dry seed into a young seedling. We developed a genetic screen to isolate Arabidopsis thaliana mutants whose early seedling development is resistant to ABA. Here, we report the identification of a recessive mutation in AUXIN RESISTANT1 (AUX1), encoding a cellular auxin influx carrier. Although auxin is a major morphogenesis hormone in plants, little is known about ABA-auxin interactions during early seedling growth. We show that aux1 and pin2 mutants are insensitive to ABA-dependent repression of embryonic axis (hypocotyl and radicle) elongation. Genetic and physiological experiments show that this involves auxin transport to the embryonic axis elongation zone, where ABA enhances the activity of an auxin-responsive promoter. We propose that ABA represses embryonic axis elongation by potentiating auxin signaling in its elongation zone. This involves repression of the AUXIN INDUCIBLE (Aux/IAA) gene AXR2/IAA7, encoding a key component of ABA- and auxin-dependent responses during postgerminative growth.
在不利的环境条件下,胁迫植物激素脱落酸(ABA)会抑制处于干燥种子状态的胚胎向幼苗的发育转变。我们开发了一种遗传筛选方法,以分离出拟南芥中早期幼苗发育对ABA具有抗性的突变体。在此,我们报告了生长素抗性1(AUX1)基因中的一个隐性突变的鉴定,该基因编码一种细胞生长素内流载体。尽管生长素是植物中的一种主要形态发生激素,但在幼苗早期生长过程中ABA与生长素之间的相互作用却鲜为人知。我们发现aux1和pin2突变体对ABA依赖的胚轴(下胚轴和胚根)伸长抑制不敏感。遗传和生理学实验表明,这涉及生长素向胚轴伸长区的运输,在该区域ABA增强了生长素响应启动子的活性。我们提出,ABA通过增强胚轴伸长区的生长素信号传导来抑制胚轴伸长。这涉及对生长素诱导(Aux/IAA)基因AXR2/IAA7的抑制,该基因编码萌发后生长过程中ABA和生长素依赖反应的关键成分。