Fujihira K, Kurata T, Watahiki M K, Karahara I, Yamamoto K T
Division of Biological Science, Graduate School of Environmental Earth Science, Hokkaido University, Sapporo, 060-0810 Japan.
Plant Cell Physiol. 2000 Nov;41(11):1193-9. doi: 10.1093/pcp/pcd046.
We have isolated a new recessive mutant of Arabidopsis thaliana for gravitropism, endodermal-amyloplast less 1 (eal1). eal1 shows reduced gravitropism in hypocotyl, and completely lacks gravitropism in inflorescence stems; root gravitropism is not affected. Starch staining with I-KI solution reveals almost no amyloplasts in eal1 hypocotyls when grown on a sucrose-free medium, though the root columella cells contain as many amyloplasts as wild type. On a medium containing 1% sucrose, eal1 hypocotyls contain as many starch granules as those of wild type, suggesting that starch synthesis is not affected in eal1. The endodermal cell layer which is thought to function as statocytes in hypocotyls is present in eal1. These results suggest that differentiation or development of gravity-responsive amyloplasts are affected in eal1 hypocotyls.
我们分离出了拟南芥一种新的隐性重力响应突变体——内皮层淀粉体缺失1(eal1)。eal1下胚轴的向重力性减弱,花序茎完全丧失向重力性;根的向重力性不受影响。用碘-碘化钾溶液进行淀粉染色显示,在无蔗糖培养基上生长时,eal1下胚轴中几乎没有淀粉体,不过根冠细胞中的淀粉体数量与野生型一样多。在含有1%蔗糖的培养基上,eal1下胚轴中的淀粉粒数量与野生型的一样多,这表明eal1中的淀粉合成未受影响。eal1中存在被认为在下胚轴中起平衡细胞作用的内皮层细胞层。这些结果表明,eal1下胚轴中重力响应淀粉体的分化或发育受到了影响。