Hashimoto Takashi
Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0101, Japan.
Philos Trans R Soc Lond B Biol Sci. 2002 Jun 29;357(1422):799-808. doi: 10.1098/rstb.2002.1088.
Handedness in plant growth may be most familiar to us when we think of tendrils or twining plants, which generally form consistent right- or left-handed helices as they climb. The petals of several species are sometimes arranged like fan blades that twist in the same direction. Another less conspicuous example is 'circumnutation', the oscillating growth of axial organs, which alternates between a clockwise and an anti-clockwise direction. To unravel molecular components and cellular determinants of handedness, we screened Arabidopsis thaliana seedlings for helical growth mutants with fixed handedness. Recessive spiral1 and spiral2 mutants show right-handed helical growth in roots, hypocotyls, petioles and petals; semi-dominant lefty1 and lefty2 mutants show opposite left-handed growth in these organs. lefty mutations are epistatic to spiral mutations. Arabidopsis helical growth mutants with fixed handedness may be impaired in certain aspects of cortical microtubule functions, and characterization of the mutated genes should lead us to a better understanding of how microtubules function in left-right handedness in plants.
当我们想到卷须或缠绕植物时,植物生长中的手性可能是我们最为熟悉的,它们在攀爬时通常会形成一致的右手或左手螺旋。几种植物的花瓣有时排列得像朝着同一方向扭曲的风扇叶片。另一个不太明显的例子是“回旋转头运动”,即轴器官的振荡生长,其在顺时针和逆时针方向之间交替。为了揭示手性的分子成分和细胞决定因素,我们筛选了拟南芥幼苗中的具有固定手性的螺旋生长突变体。隐性的spiral1和spiral2突变体在根、下胚轴、叶柄和花瓣中表现出右手螺旋生长;半显性的lefty1和lefty2突变体在这些器官中表现出相反的左手生长。lefty突变对spiral突变具有上位性。具有固定手性的拟南芥螺旋生长突变体可能在皮层微管功能的某些方面存在缺陷,对突变基因的表征应该能使我们更好地理解微管在植物左右手性中的作用方式。