Li Jisheng, Dai Xinhua, Zhao Yunde
Section of Cell and Developmental Biology, University of California San Diego, La Jolla, 92093-0116, USA.
Plant Physiol. 2006 Mar;140(3):899-908. doi: 10.1104/pp.105.070987. Epub 2006 Feb 3.
Although auxin response factors (ARFs) are the first well-characterized proteins that bind to the auxin response elements, elucidation of the roles of each ARF gene in auxin responses and plant development has been challenging. Here we show that ARF19 and ARF7 not only participate in auxin signaling, but also play a critical role in ethylene responses in Arabidopsis (Arabidopsis thaliana) roots, indicating that the ARFs serve as a cross talk point between the two hormones. Both arf19 and arf7 mutants isolated from our forward genetic screens are auxin resistant and the arf19arf7 double mutant had stronger auxin resistance than the single mutants and displayed phenotypes not seen in the single mutants. Furthermore, we show that a genomic fragment of ARF19 not only complements arf19, but also rescues arf7. We conclude that ARF19 complements ARF7 at the protein level and that the ARF7 target sequences are also recognized by ARF19. Therefore, it is the differences in expression level/pattern and not the differences in protein sequences between the two ARFs that determines the relative contribution of the two ARFs in auxin signaling and plant development. In addition to being auxin resistant, arf19 has also ethylene-insensitive roots and ARF19 expression is induced by ethylene treatment. This work provides a sensitive genetic screen for uncovering auxin-resistant mutants including the described arf mutants. This study also provides a likely mechanism for coordination and integration of hormonal signals to regulate plant growth and development.
尽管生长素响应因子(ARFs)是首批被充分表征的、能与生长素响应元件结合的蛋白质,但阐明每个ARF基因在生长素响应和植物发育中的作用一直具有挑战性。在这里,我们表明ARF19和ARF7不仅参与生长素信号传导,而且在拟南芥根的乙烯响应中也起着关键作用,这表明ARFs是这两种激素之间的一个相互作用点。从我们的正向遗传筛选中分离出的arf19和arf7突变体均对生长素具有抗性,并且arf19arf7双突变体比单突变体具有更强的生长素抗性,且表现出单突变体中未出现的表型。此外,我们表明ARF19的一个基因组片段不仅能互补arf19,还能拯救arf7。我们得出结论,ARF19在蛋白质水平上互补ARF7,并且ARF7的靶序列也能被ARF19识别。因此,决定这两个ARFs在生长素信号传导和植物发育中相对贡献的是表达水平/模式的差异,而不是这两个ARFs之间蛋白质序列的差异。除了对生长素具有抗性外,arf19的根对乙烯也不敏感,并且乙烯处理可诱导ARF19的表达。这项工作为发现包括所述arf突变体在内的抗生长素突变体提供了一个灵敏的遗传筛选方法。这项研究还为激素信号的协调和整合以调节植物生长和发育提供了一种可能的机制。