Quint Marcel, Barkawi Lana S, Fan Kai-Ting, Cohen Jerry D, Gray William M
Department of Plant Biology, University of Minnesota, St. Paul, Minnesota 55108, USA.
Plant Physiol. 2009 Jun;150(2):748-58. doi: 10.1104/pp.109.136671. Epub 2009 Apr 24.
In a screen for enhancers of tir1-1 auxin resistance, we identified two novel alleles of the putative mitochondrial pyruvate dehydrogenase E1alpha-subunit, IAA-Alanine Resistant4 (IAR4). In addition to enhancing the auxin response defects of tir1-1, iar4 single mutants exhibit numerous auxin-related phenotypes including auxin-resistant root growth and reduced lateral root development, as well as defects in primary root growth, root hair initiation, and root hair elongation. Remarkably, all of these iar4 mutant phenotypes were rescued when endogenous indole-3-acetic acid (IAA) levels were increased by growth at high temperature or overexpression of the YUCCA1 IAA biosynthetic enzyme, suggesting that iar4 mutations may alter IAA homeostasis rather than auxin response. Consistent with this possibility, iar4 mutants exhibit increased Aux/IAA stability compared to wild type under basal conditions, but not in response to an auxin treatment. Measurements of free IAA levels detected no significant difference between iar4-3 and wild-type controls. However, we consistently observed significantly higher levels of IAA-amino acid conjugates in the iar4-3 mutant. Furthermore, using stable isotope-labeled IAA precursors, we observed a significant increase in the relative utilization of the Trp-independent IAA biosynthetic pathway in iar4-3. We therefore suggest that the auxin phenotypes of iar4 mutants are the result of altered IAA homeostasis.
在一项针对tir1-1生长素抗性增强子的筛选中,我们鉴定出了假定的线粒体丙酮酸脱氢酶E1α亚基的两个新等位基因,即抗IAA-丙氨酸4(IAR4)。除了增强tir1-1的生长素反应缺陷外,iar4单突变体还表现出许多与生长素相关的表型,包括生长素抗性根生长和侧根发育减少,以及主根生长、根毛起始和根毛伸长方面的缺陷。值得注意的是,当通过高温生长或YUCCA1生长素生物合成酶的过表达来提高内源性吲哚-3-乙酸(IAA)水平时,所有这些iar4突变体表型都得到了挽救,这表明iar4突变可能改变IAA稳态而不是生长素反应。与这种可能性一致的是,在基础条件下,iar4突变体与野生型相比,Aux/IAA稳定性增加,但在生长素处理时则不然。游离IAA水平的测量未检测到iar4-3与野生型对照之间有显著差异。然而,我们一直观察到iar4-3突变体中IAA-氨基酸缀合物的水平显著更高。此外,使用稳定同位素标记的IAA前体,我们观察到iar4-3中不依赖色氨酸的IAA生物合成途径的相对利用率显著增加。因此,我们认为iar4突变体的生长素表型是IAA稳态改变的结果。