Smith L G, Hake S, Sylvester A W
USDA/UC Berkeley Plant Gene Expression Center, Albany, CA 94710, USA.
Development. 1996 Feb;122(2):481-9. doi: 10.1242/dev.122.2.481.
It is often assumed that in plants, where the relative positions of cells are fixed by cell walls, division orientations are critical for the generation of organ shapes. However, an alternative perspective is that the generation of shape may be controlled at a regional level independently from the initial orientations of new cell walls. In support of this latter view, we describe here a recessive mutation of maize, tangled-1 (tan-1), that causes cells to divide in abnormal orientations throughout leaf development without altering overall leaf shape. In normal plants, leaf cells divide either transversely or longitudinally relative to the mother cell axis; transverse division are associated with leaf elongation and longitudinal divisions with leaf widening. In tan-l mutant leaves, cells in all tissue layers at a wide range of developmental stages divide transversely at normal frequencies, but longitudinal divisions are largely substituted by a variety of aberrantly oriented divisions in which the new cell wall is crooked or curved. Mutant leaves grow more slowly than normal, but their overall shapes are normal at all stages of their growth. These observations demonstrate that the generation of maize leaf shape does not depend on the precise spatial control of cell division, and support the general view that mechanisms independent from the control of cell division orientations are involved in the generation of shape during plant development.
人们通常认为,在植物中,由于细胞的相对位置由细胞壁固定,细胞分裂方向对于器官形状的形成至关重要。然而,另一种观点认为,形状的形成可能在区域水平上受到控制,而与新细胞壁的初始方向无关。为支持后一种观点,我们在此描述了玉米的一种隐性突变,即tangled-1(tan-1),该突变导致叶片发育过程中细胞以异常方向分裂,却不改变叶片的整体形状。在正常植物中,叶细胞相对于母细胞轴横向或纵向分裂;横向分裂与叶片伸长相关,纵向分裂与叶片变宽相关。在tan-1突变体叶片中,处于广泛发育阶段的所有组织层中的细胞以正常频率横向分裂,但纵向分裂在很大程度上被各种异常取向的分裂所取代,其中新细胞壁是弯曲的。突变体叶片比正常叶片生长得更慢,但其在生长的各个阶段的整体形状都是正常的。这些观察结果表明,玉米叶片形状的形成并不依赖于细胞分裂的精确空间控制,并支持了这样一种普遍观点,即在植物发育过程中,与细胞分裂方向控制无关的机制参与了形状的形成。