Yuen Christen Y L, Sedbrook John C, Perrin Robyn M, Carroll Kathleen L, Masson Patrick H
Laboratory of Genetics, University of Wisconsin, Madison, Wisconsin 53706, USA.
Plant Physiol. 2005 Jun;138(2):701-14. doi: 10.1104/pp.105.059774. Epub 2005 May 20.
Wild-type Arabidopsis (Arabidopsis thaliana L. Heynh.) roots growing on a tilted surface of impenetrable hard-agar media adopt a wave-like pattern and tend to skew to the right of the gravity vector (when viewed from the back of the plate through the medium). Reversible root-tip rotation often accompanies the clockwise and counterclockwise curves that form each wave. These rotations are manifested by epidermal cell file rotation (CFR) along the root. Loss-of-function alleles of ROOT HAIR DEFECTIVE3 (RHD3), a gene previously implicated in the control of vesicle trafficking between the endoplasmic reticulum and the Golgi compartments, resulted in an almost complete suppression of epidermal CFR, root skewing, and waving on hard-agar surfaces. Several other root hair defective mutants (rhd2-1, rhd4-1, and rhd6-1) did not exhibit dramatic alterations in these root growth behaviors, suggesting that a generalized defect in root hair formation is not responsible for the surface-dependent phenotypes of rhd3. However, similar alterations in root growth behavior were observed in a variety of mutants characterized by defects in cell expansion (cob-1, cob-2, eto1-1, eto2-1, erh2-1, and erh3-1). The erh2-1 and rhd3-1 mutants differed from other anisotropic cell expansion mutants, though, by an inability to respond to low doses of the microtubule-binding drug propyzamide, which normally causes enhanced left-handed CFR and right skewing. We hypothesize that RHD3 may control epidermal CFR, root skewing, and waving on hard-agar surfaces by regulating the traffic of wall- or plasma membrane-associated determinants of anisotropic cell expansion.
野生型拟南芥(Arabidopsis thaliana L. Heynh.)的根在不可穿透的硬琼脂培养基倾斜表面上生长时会呈现出波浪状模式,并倾向于向重力矢量的右侧倾斜(从平板背面透过培养基观察时)。每个波浪状形成的顺时针和逆时针曲线通常伴随着根尖的可逆旋转。这些旋转表现为沿根的表皮细胞列旋转(CFR)。ROOT HAIR DEFECTIVE3(RHD3)功能缺失等位基因,该基因先前被认为参与内质网与高尔基体间囊泡运输的控制,导致硬琼脂表面上表皮CFR、根倾斜和波浪状几乎完全受到抑制。其他几个根毛缺陷突变体(rhd2 - 1、rhd4 - 1和rhd6 - 1)在这些根生长行为上未表现出显著变化,这表明根毛形成的普遍缺陷并非rhd3表面依赖性表型的原因。然而,在各种以细胞扩张缺陷为特征的突变体(cob - 1、cob - 2、eto1 - 1、eto2 - 1、erh2 - 1和erh3 - 1)中观察到了类似的根生长行为变化。不过,erh2 - 1和rhd3 - 1突变体与其他各向异性细胞扩张突变体不同,它们无法对低剂量的微管结合药物丙炔酰胺作出反应,而该药物通常会导致增强的左旋CFR和右倾斜。我们推测,RHD3可能通过调节与细胞壁或质膜相关的各向异性细胞扩张决定因素的运输,来控制硬琼脂表面上的表皮CFR、根倾斜和波浪状。