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洋葱根中钙的移动、重力响应以及根冠细胞和根冠组织的结构

Calcium movement, graviresponsiveness and the structure of columella cells and columella tissues in roots of Allium cepa L.

作者信息

Moore R

机构信息

Department of Biology, Baylor University, Waco, Texas 76798, USA.

出版信息

Ann Bot. 1985;56:173-87. doi: 10.1093/oxfordjournals.aob.a087001.

Abstract

Roots of Allium cepa L. cv. Yellow are differentially responsive to gravity. Long (e.g. 40 mm) roots are strongly graviresponsive, while short (c.g. 4 mm) roots are minimally responsive to gravity. Although columella cells of graviresponsive roots are larger than those of nongraviresponsive roots, they partition their volumes to cellular organelles similarly. The movement of amyloplasts and nuclei in columella cells of horizontally-oriented roots correlates positively with the onset of gravicurvature. Furthermore, there is no significant difference in the rates of organellar redistribution when graviresponsive and nongraviresponsive roots are oriented horizontally. The more pronounced graviresponsiveness of longer roots correlates positively with (1) their caps being 9-6 times more voluminous, (2) their columella tissues being 42 times more voluminous, (3) their caps having 15 times more columella cells, and (4) their columella tissues having relative volumes 4.4 times larger than those of shorter, nongraviresponsive roots. Graviresponsive roots that are oriented horizontally are characterized by a strongly polar movement of 45Ca2+ across the root tip from the upper to the lower side, while similarly oriented nongraviresponsive roots exhibit only a minimal polar transport of 45Ca2+. These results indicate that the differential graviresponsiveness of roots of A. cepa is probably not due to either (1) ultrastructural differences in their columella cells, (2) differences in the rates of organellar redistribution when roots are oriented horizontally. Rather, these results indicate the graviresponsiveness may require an extensive columella tissue, which, in turn, may be necessary for polar movement of 45Ca2+ across the root tip.

摘要

洋葱(Allium cepa L. cv. Yellow)的根对重力的反应存在差异。长根(如40毫米)对重力反应强烈,而短根(如4毫米)对重力的反应则很微弱。虽然对重力有反应的根的根冠细胞比无重力反应的根的根冠细胞大,但它们在细胞器体积分配上类似。水平放置的根的根冠细胞中淀粉体和细胞核的移动与重力弯曲的开始呈正相关。此外,有重力反应的根和无重力反应的根水平放置时,细胞器重新分布的速率没有显著差异。较长根更明显的重力反应与以下因素呈正相关:(1)它们的根冠体积大9至6倍;(2)它们的根冠组织体积大42倍;(3)它们的根冠中的根冠细胞多15倍;(4)它们的根冠组织的相对体积比短的、无重力反应的根大4.4倍。水平放置的有重力反应的根的特征是45Ca2+从根尖的上侧向根尖的下侧发生强烈的极性移动,而同样水平放置的无重力反应的根只表现出极少量的45Ca2+极性运输。这些结果表明,洋葱根的重力反应差异可能不是由于(1)它们根冠细胞的超微结构差异,(2)根水平放置时细胞器重新分布速率的差异。相反,这些结果表明重力反应可能需要广泛的根冠组织,而这反过来可能是45Ca2+在根尖进行极性移动所必需的。

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