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作为一种测量近期壁扩展性的 Instron 技术。

The Instron technique as a measure of immediate-past wall extensibility.

机构信息

Department of Botany, University of Washington, 98195, Seattle, WA, USA.

出版信息

Planta. 1984 May;160(6):514-20. doi: 10.1007/BF00411139.

Abstract

The relationship between the plastic-extensibility values (PEx) obtained in the Instron technique and the growth parameter, wall extensibility (Φ) has been evaluated for Avena sativa L. coleoptile cell walls. The possibility that PEx is proportional to the growth rate rather than to Φ has been eliminated by showing that turgor-driven changes in the growth rate do not cause comparable changes in PEx. For Avena coleoptiles, PEx appears to be a measure of the average Φ over the previous 60-90 min rather than a measure of the instantaneous Φ of the growth equation. This is indicated by the fact that while PEx and the growth rate start to change simultaneously after addition of indole-3-acetic acid or KCN, the growth rate reaches a new, constant value 60-90 min before a new plateau value of PEx is obtained. Similar results are obrained with soybean (Glycine max L.) hypocotyl walls, indicating that the relationship between PEx and the parameter Φ is a general one, although the period over which Φ is averaged differs from tissue to tissue. In addition, it is shown that PEx can be measured more than once on the same section; a new potential for plastic extension is regenerated whenever the force vectors are changed even slightly. It is concluded that PEx is a measure of those domains in the wall where a wall-loosening event has occurred which has not been eliminated by further wall synthesis or other biochemical events.

摘要

已评估了用 In stron 技术获得的塑料延展性值(PEx)与生长参数壁延展性(Φ)之间的关系,用于研究燕麦鞘细胞的细胞壁。通过表明膨压驱动的生长速率变化不会导致 PEx 发生可比变化,排除了 PEx 与生长速率成正比而不是与 Φ 成正比的可能性。对于燕麦胚芽鞘,PEx 似乎是前 60-90 分钟内平均 Φ 的量度,而不是生长方程瞬时 Φ 的量度。这一事实表明,尽管在添加吲哚-3-乙酸或 KCN 后,PEx 和生长速率同时开始变化,但在获得新的 PEx 平台值之前,生长速率要 60-90 分钟才能达到新的恒定值。用大豆(Glycine max L.)下胚轴细胞壁获得了类似的结果,表明 PEx 与参数 Φ 之间的关系是普遍的,尽管平均 Φ 的时间段因组织而异。此外,还表明可以在同一部分多次测量 PEx;只要力矢量稍有变化,就会在新的壁疏松事件发生的部位重新产生新的可塑延伸潜力,而该事件尚未通过进一步的壁合成或其他生化事件消除。

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