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1
Phototropism in Hypocotyls of Radish: IV. Flank Growth and Lateral Distribution of cis- and trans-Raphanusanins in the First Positive Phototropic Curvature.萝卜下胚轴的向光性:IV. 第一次正向光性弯曲中顺式和反式萝卜素的侧翼生长及侧向分布
Plant Physiol. 1987 Oct;85(2):379-82. doi: 10.1104/pp.85.2.379.
2
Phototropism in Hypocotyls of Radish : II. Role of cis- and trans-Raphanusanins, and Raphanusamide in Phototropism of Radish Hypocotyls.萝卜下胚轴向光性的研究:Ⅱ.顺式和反式萝卜宁以及萝卜酰胺在萝卜下胚轴向光性中的作用。
Plant Physiol. 1986 Aug;81(4):980-3. doi: 10.1104/pp.81.4.980.
3
Phototropism in Hypocotyls of Radish : III. Influence of Unilateral or Bilateral Illumination of Various Light Intensities on Phototropism and Distribution of cis- and trans-Raphanusanins and Raphanusamide.萝卜下胚轴的向光性 III. 不同光照强度单侧或双侧光照对向光性和顺式及反式萝卜硫素和萝卜硫苷分布的影响。
Plant Physiol. 1987 Mar;83(3):672-5. doi: 10.1104/pp.83.3.672.
4
Phototropism in Hypocotyls of Radish : I. Isolation and Identification of Growth Inhibitors, cis- and trans-Raphanusanins and Raphanusamide, Involved in Phototropism of Radish Hypocotyls.萝卜下胚轴向光性研究:I. 参与萝卜下胚轴向光性的生长抑制剂顺式和反式黎芦烷素和萝卜酰胺的分离与鉴定。
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Phototropic stimulation induces the conversion of glucosinolate to phototropism-regulating substances of radish hypocotyls.向光性刺激诱导萝卜下胚轴中的硫代葡萄糖苷转化为向光性调节物质。
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Isolation and identification of a new growth inhibitor, raphanusanin, from radish seedlings and its role in light inhibition of hypocotyl growth.从萝卜幼苗中分离鉴定一种新的生长抑制剂——莱菔硫烷及其在光抑制下胚轴生长中的作用。
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Differential roles of auxin efflux carrier PIN proteins in hypocotyl phototropism of etiolated Arabidopsis seedlings depend on the direction of light stimulus.生长素输出载体PIN蛋白在黄化拟南芥幼苗下胚轴向光性中的不同作用取决于光刺激的方向。
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Induction of myrosinase gene expression and myrosinase activity in radish hypocotyls by phototropic stimulation.向光性刺激诱导萝卜下胚轴中黑芥子酶基因表达和黑芥子酶活性
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Phytochrome-mediated phototropism in de-etiolated seedlings : occurrence and ecological significance.去黄化幼苗中光敏色素介导的向光性:发生及生态意义
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Chemistry and biology of phototropism-regulating substances in higher plants.高等植物中光向性调节物质的化学与生物学
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引用本文的文献

1
Revision of the theory of phototropism in plants: a new interpretation of a classical experiment.修订植物向光性理论:对经典实验的新阐释。
Planta. 1989 Dec;178(4):540-4. doi: 10.1007/BF00963824.

本文引用的文献

1
Phototropism in Hypocotyls of Radish : II. Role of cis- and trans-Raphanusanins, and Raphanusamide in Phototropism of Radish Hypocotyls.萝卜下胚轴向光性的研究:Ⅱ.顺式和反式萝卜宁以及萝卜酰胺在萝卜下胚轴向光性中的作用。
Plant Physiol. 1986 Aug;81(4):980-3. doi: 10.1104/pp.81.4.980.
2
Phototropism in Hypocotyls of Radish : I. Isolation and Identification of Growth Inhibitors, cis- and trans-Raphanusanins and Raphanusamide, Involved in Phototropism of Radish Hypocotyls.萝卜下胚轴向光性研究:I. 参与萝卜下胚轴向光性的生长抑制剂顺式和反式黎芦烷素和萝卜酰胺的分离与鉴定。
Plant Physiol. 1986 Aug;81(4):976-9. doi: 10.1104/pp.81.4.976.

萝卜下胚轴的向光性:IV. 第一次正向光性弯曲中顺式和反式萝卜素的侧翼生长及侧向分布

Phototropism in Hypocotyls of Radish: IV. Flank Growth and Lateral Distribution of cis- and trans-Raphanusanins in the First Positive Phototropic Curvature.

作者信息

Hasegawa K, Noguchi H, Tanoue C, Sando S, Takada M, Sakoda M, Hashimoto T

机构信息

Biological Institute, College of Liberal Arts, Kagoshima University, Korimoto 1-21-30, Kagoshima 890, Japan.

出版信息

Plant Physiol. 1987 Oct;85(2):379-82. doi: 10.1104/pp.85.2.379.

DOI:10.1104/pp.85.2.379
PMID:16665706
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1054264/
Abstract

The first positive phototropic curvature induced by a pulse of unilateral white irradiation (0.1 watt per square meter, 30 seconds) of etiolated and de-etiolated Sakurajima radish (Raphanus sativus var hortensis f. gigantissimus Makino) hypocotyls was analyzed in terms of differential growth and growth inhibitor contents of the hypocotyls. In both etiolated and de-etiolated hypocotyls, the growth rates at the lighted sides were suppressed whereas those at the shaded ones showed no change. De-etiolation treatment induced a larger difference between the growth rates at the lighted and shaded sides of the hypocotyls, resulting in a larger curvature of de-etiolated seedlings than of etiolated ones. The contents of growth inhibitors, cis- and trans-raphanusanins, increased in the lighted but not in the shaded halves of the hypocotyls of etiolated seedlings. In de-etiolated seedlings, the two inhibitors increased due to the de-etiolation treatment. When de-etiolated seedlings were exposed to a pulse of unilateral irradiation the level of the two inhibitors remained high along the lighted side for 1 h following the light pulse, whereas at the shaded side the contents of the inhibitors abruptly decreased upon transfer to the dark, the difference between their amounts in the lighted and shaded sides being larger than in etiolated seedlings. Another growth inhibitor, raphanusamide, did not respond to the phototropic stimulus, although its amounts increased by the de-etiolation treatment. These data suggest that cis- and trans-raphanusanins are involved in the first positive phototropic response of radish hypocotyls, and that de-etiolation magnifies the phototropic response through induction of a larger lateral gradient of the raphanusanins in the hypocotyls by the phototropic stimulus.

摘要

对经单侧白色光照脉冲(0.1瓦每平方米,30秒)处理的黄化和去黄化的樱岛萝卜(Raphanus sativus var hortensis f. gigantissimus Makino)下胚轴所诱导的首次正向光弯曲,从下胚轴的差异生长和生长抑制剂含量方面进行了分析。在黄化和去黄化的下胚轴中,光照侧的生长速率均受到抑制,而遮光侧的生长速率则无变化。去黄化处理导致下胚轴光照侧和遮光侧的生长速率差异更大,使得去黄化幼苗的弯曲度大于黄化幼苗。在黄化幼苗下胚轴的光照侧,生长抑制剂顺式和反式萝卜宁的含量增加,而遮光侧则未增加。在去黄化幼苗中,由于去黄化处理,这两种抑制剂的含量增加。当去黄化幼苗接受单侧光照脉冲时,在光脉冲后的1小时内,这两种抑制剂在光照侧的水平保持较高,而在遮光侧,转移至黑暗后抑制剂含量急剧下降,其在光照侧和遮光侧的含量差异大于黄化幼苗。另一种生长抑制剂萝卜酰胺对光刺激无反应,尽管其含量因去黄化处理而增加。这些数据表明,顺式和反式萝卜宁参与了萝卜下胚轴的首次正向光反应,并且去黄化通过光刺激诱导下胚轴中萝卜宁更大的横向梯度,从而放大了光反应。