Moore R
Department of Biological Sciences, Wright State University, Dayton, Ohio 45435.
Ann Bot. 1989;64:271-7. doi: 10.1093/oxfordjournals.aob.a087841.
Primary roots of a starchless mutant of Arabidopsis thaliana L. are strongly graviresponsive despite lacking amyloplasts in their columella cells. The ultrastructures of calyptrogen and peripheral cells in wild-type as compared to mutant seedlings are not significantly different. The largest difference in cellular differentiation in caps of mutant and wild-type roots is the relative volume of plastids in columella cells. Plastids occupy 12.3% of the volume of columella cells in wild-type seedlings, but only 3.69% of columella cells in mutant seedlings. These results indicate that: (1) amyloplasts and starch are not necessary for root graviresponsiveness; (2) the increase in relative volume of plastids that usually accompanies differentiation of columella cells is not necessary for root graviresponsiveness; and (3) the absence of starch and amyloplasts does not affect the structure of calyptrogen (i.e. meristematic) and secretory (i.e. peripheral) cells in root caps. These results are discussed relative to proposed models for root gravitropism.
拟南芥淀粉缺失突变体的初生根尽管其根冠细胞中缺乏造粉体,但仍具有强烈的向重力性反应。与突变体幼苗相比,野生型幼苗中根冠原和外周细胞的超微结构没有显著差异。突变体和野生型根帽细胞分化的最大差异在于根冠细胞中质体的相对体积。在野生型幼苗中,质体占根冠细胞体积的12.3%,而在突变体幼苗中,质体仅占根冠细胞体积的3.69%。这些结果表明:(1)造粉体和淀粉对于根的向重力性反应不是必需的;(2)通常伴随根冠细胞分化的质体相对体积增加对于根的向重力性反应不是必需的;(3)淀粉和造粉体的缺失并不影响根冠中根冠原(即分生组织)和分泌(即外周)细胞的结构。结合根向重力性的提出模型对这些结果进行了讨论。