Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos 62250, Mexico.
J Exp Bot. 2012 Jun;63(10):3587-601. doi: 10.1093/jxb/ers025. Epub 2012 Mar 21.
Roots are highly plastic and can acclimate to heterogeneous and stressful conditions. However, there is little knowledge of the effect of moisture gradients on the mechanisms controlling root growth orientation and branching, and how this mechanism may help plants to avoid drought responses. The aim of this study was to isolate mutants of Arabidopsis thaliana with altered hydrotropic responses. Here, altered hydrotropic response 1 (ahr1), a semi-dominant allele segregating as a single gene mutation, was characterized. ahr1 directed the growth of its primary root towards the source of higher water availability and developed an extensive root system over time. This phenotype was intensified in the presence of abscisic acid and was not observed if ahr1 seedlings were grown in a water stress medium without a water potential gradient. In normal growth conditions, primary root growth and root branching of ahr1 were indistinguishable from those of the wild type (wt). The altered hydrotropic growth of ahr1 roots was confirmed when the water-rich source was placed at an angle of 45° from the gravity vector. In this system, roots of ahr1 seedlings grew downward and did not display hydrotropism; however, in the presence of cytokinins, they exhibited hydrotropism like those of the wt, indicating that cytokinins play a critical role in root hydrotropism. The ahr1 mutant represents a valuable genetic resource for the study of the effects of cytokinins in the differential growth of hydrotropism and control of lateral root formation during the hydrotropic response.
根具有很强的可塑性,可以适应不均匀和有压力的条件。然而,人们对水分梯度对控制根生长方向和分支的机制的影响知之甚少,也不知道这种机制如何帮助植物避免干旱反应。本研究的目的是分离拟南芥中改变向水性反应的突变体。在这里,改变向水性反应 1(ahr1)是一个半显性等位基因,作为单一基因突变分离。ahr1 指导其主根生长朝向水分供应较高的源,并随着时间的推移发展出广泛的根系。在存在脱落酸的情况下,这种表型会加剧,而如果 ahr1 幼苗在没有水势梯度的水分胁迫培养基中生长,则不会观察到这种表型。在正常生长条件下,ahr1 主根生长和根分支与野生型(wt)没有区别。当富含水分的源放置在与重力向量成 45°角的位置时,ahr1 根的改变向水性生长得到了证实。在这个系统中,ahr1 幼苗的根向下生长,不表现向水性;然而,在细胞分裂素的存在下,它们表现出与 wt 相似的向水性,表明细胞分裂素在根向水性中起着关键作用。ahr1 突变体是研究细胞分裂素在向水性和控制向水性反应中侧根形成的差异生长中的作用的有价值的遗传资源。