Timpte C, Lincoln C, Pickett F B, Turner J, Estelle M
Department of Biology, Indiana University, Bloomington 47405, USA.
Plant J. 1995 Oct;8(4):561-9. doi: 10.1046/j.1365-313x.1995.8040561.x.
The recessive mutations aux1 and axr1 of Arabidopsis confer resistance to the plant hormone auxin. The axr1 mutants display a variety of morphological defects. In contrast, the only morphological defect observed in aux1 mutants is a loss of root gravitropism. To learn more about the function of these genes in auxin response, the expression of the auxin-regulated gene SAUR-AC1 in mutant and wild-type plants has been examined. It has been found that axr1 plants display a pronounced deficiency in auxin-induced accumulation of SAUR-AC1 mRNA in seedlings as well as rosette leaves and mature roots. In contrast, the aux1 mutation has a modest effect on auxin induction of SAUR-AC1. To determine if the AUX1 and AXR1 genes interact to facilitate auxin response, plants which are homozygous for both aux1 and axr1 mutations have been constructed and characterized. The two mutations are additive in their effects on auxin response, suggesting that each mutation confers resistance by a different mechanism. However, the morphology of double mutant plants indicates that there is an inter-action between the AXR1 and AUX1 genes. In mature plants, the aux1-7 mutation acts to partially suppress the morphological defects conferred by the axr1-12 mutation. This suppression is not accompanied by an increase in auxin response, as measured by SAUR-AC1 expression, suggesting that the interaction between the AUX1 and AXR1 genes is indirect.
拟南芥的隐性突变体aux1和axr1对植物激素生长素具有抗性。axr1突变体表现出多种形态缺陷。相比之下,在aux1突变体中观察到的唯一形态缺陷是根失去向地性。为了更多地了解这些基因在生长素应答中的功能,研究人员检测了生长素调节基因SAUR-AC1在突变体和野生型植物中的表达。结果发现,axr1植株在幼苗、莲座叶和成熟根中,生长素诱导的SAUR-AC1 mRNA积累明显不足。相比之下,aux1突变对SAUR-AC1的生长素诱导作用影响较小。为了确定AUX1和AXR1基因是否相互作用以促进生长素应答,研究人员构建并鉴定了aux1和axr1突变均为纯合的植株。这两种突变对生长素应答的影响是累加的,表明每个突变通过不同的机制赋予抗性。然而,双突变体植株的形态表明AXR1和AUX1基因之间存在相互作用。在成熟植株中,aux1-7突变起到部分抑制axr1-12突变所导致的形态缺陷的作用。以SAUR-AC1表达量衡量,这种抑制作用并未伴随着生长素应答的增加,这表明AUX1和AXR1基因之间的相互作用是间接的。