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去顶玉米胚芽鞘向光性反应的恢复。

Restoration of phototropic responsiveness in decapitated maize coleoptiles.

作者信息

Kaldenhoff R, Iino M

机构信息

Julius-von-Sachs-Institut fur Biowissenschaften, Universitat Wurzburg, Germany.

出版信息

Plant Physiol. 1997 Aug;114(4):1267-72. doi: 10.1104/pp.114.4.1267.

Abstract

The literature indicates that the tip of maize (Zea mays L.) coleoptiles has the localized functions of producing auxin for growth and perceiving unilateral light stimuli and translocating auxin laterally for phototropism. There is evidence that the auxinproducing function of the tip is restored in decapitated coleoptiles. We examined whether the functions for phototropism are also restored by using blue-light conditions that induced a first pulse-induced positive phototropism (fPIPP) and a time-dependent phototropism (TDP). When the apical 5 mm, in which photosensing predominantly takes place, was removed, no detectable fPIPP occurred even if indole-3-acetic acid (lanolin mixture) was applied to the cut end. However, when the blue-light stimulation was delayed after decapitation, fPIPP became inducible in the coleoptile stumps supplied with indole-3-acetic-acid/lanolin (0.01 mg g-1), indicating that phototropic responsiveness was restored. This restoration progressed 1 to 2 h after decapitation, and the curvature response became comparable to that of intact coleoptiles. The results for TDP were qualitatively similar, but some quantitative differences were observed. It appeared that the overall TDP was based on a major photosensing mechanism specific to the tip and on at least one additional mechanism not specific to the tip, and that the tip-specific TDP was restored in decapitated coleoptiles with kinetics similar to that for fPIPP. It is suggested that the photoreceptor system, which accounts for fPIPP and a substantial part of TDP, is regenerated in decapitated coleoptiles, perhaps together with the mechanism for lateral auxin translocation.

摘要

文献表明,玉米(Zea mays L.)胚芽鞘顶端具有产生生长素促进生长、感知单侧光刺激以及将生长素横向运输以实现向光性的局部功能。有证据表明,去顶胚芽鞘中顶端产生生长素的功能得以恢复。我们利用诱导首次脉冲诱导正向光性(fPIPP)和时间依赖性光性(TDP)的蓝光条件,研究了向光性功能是否也能恢复。当去除主要进行光感测的顶端5毫米时,即使将吲哚 - 3 - 乙酸(羊毛脂混合物)施用于切口端,也未检测到fPIPP。然而,当去顶后延迟蓝光刺激时,在供应吲哚 - 3 - 乙酸/羊毛脂(0.01毫克/克)的胚芽鞘残端中fPIPP变得可诱导,这表明向光性反应性得以恢复。这种恢复在去顶后1至2小时内进展,弯曲反应变得与完整胚芽鞘相当。TDP的结果在定性上相似,但观察到一些定量差异。似乎总体TDP基于顶端特有的主要光感测机制以及至少一种非顶端特有的额外机制,并且顶端特有的TDP在去顶胚芽鞘中得以恢复,其动力学与fPIPP相似。有人提出,负责fPIPP和大部分TDP的光受体系统在去顶胚芽鞘中再生,可能与生长素横向运输机制一起。

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Blue light regulates an auxin-induced K+-channel gene in the maize coleoptile.蓝光调节玉米胚芽鞘中一个生长素诱导的钾离子通道基因。
Proc Natl Acad Sci U S A. 2003 Sep 30;100(20):11795-800. doi: 10.1073/pnas.2032704100. Epub 2003 Sep 19.

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