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在切下的金鱼草花穗的向重力性反应中,茎中微管重新定向先于弯曲发生。

Microtubule reorientation in shoots precedes bending during the gravitropic response of cut snapdragon spikes.

作者信息

Zhang Zhaoqi, Friedman Haya, Meir Shimon, Rosenberger Ida, Halevy Abraham H, Philosoph-Hadas Sonia

机构信息

Department of Postharvest Science of Fresh Produce, ARO, The Volcani Center, PO Box 6, Bet-Dagan 50250, Israel.

出版信息

J Plant Physiol. 2008;165(3):289-96. doi: 10.1016/j.jplph.2007.02.006. Epub 2007 Jul 20.

Abstract

The microtubule reorientation during the gravitropic bending of cut snapdragon (Antirrhinum majus L.) spikes was investigated. Using indirect immunofluorescence methods, we examined changes in microtubule orientation in the cortex, endodermis and pith tissues of the shoot bending zone, in response to gravistimulation. Our results show that dense microtubule arrays were visible throughout the cortical, endodermal and pith shoot tissues, and that the transverse orientation of the microtubules (perpendicular to the growth axis) was specifically associated with the shoot growing bending zone. Microtubules showed gravity-induced kinetics of changes in their orientation, which occurred only in the upper stem flank and preceded shoot bending. While this observation, that the gravity-induced microtubule orientation precedes bending, was previously reported only in special above-ground organs such as coleoptiles and hypocotyls, our present study is the first to show that such patterns of change occur in mature flowering shoots. These changes were exhibited first in the upper flank of the cortex and then in the upper flank of the endodermis. No changes in microtubule orientation were observed in the cortex or endodermis tissues of the lower flanks or in the pith, suggesting that these tissues continue to grow during shoot gravistimulation. Our results imply that microtubules may be involved in growth cessation of the upper shoot flank occurring during the gravitropic bending of snapdragon cut spikes.

摘要

研究了切花金鱼草(Antirrhinum majus L.)花穗向重力弯曲过程中的微管重新定向。我们使用间接免疫荧光方法,检测了茎弯曲区皮层、内皮层和髓组织中微管定向的变化,以响应重力刺激。我们的结果表明,在整个皮层、内皮层和髓茎组织中都可见密集的微管阵列,并且微管的横向定向(垂直于生长轴)与茎生长弯曲区特别相关。微管显示出重力诱导的定向变化动力学,这种变化仅发生在上部茎侧面,且先于茎弯曲。虽然这种重力诱导的微管定向先于弯曲的观察结果之前仅在胚芽鞘和下胚轴等特殊地上器官中报道过,但我们目前的研究首次表明这种变化模式发生在成熟的开花茎中。这些变化首先出现在皮层的上部侧面,然后出现在内皮层的上部侧面。在下侧的皮层或内皮层组织以及髓中未观察到微管定向的变化,这表明这些组织在茎重力刺激期间继续生长。我们的结果表明,微管可能参与了金鱼草切花穗向重力弯曲过程中上部茎侧面生长停止的过程。

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