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光下生长的芥菜中光敏色素控制节间生长的感受部位:低光质平衡的光敏色素在节间的促进作用,可被叶片感知的蓝光增强。

The loci of perception for phytochrome control of internode growth in light-grown mustard: Promotion by low phytochrome photoequilibria in the internode is enhanced by blue light perceived by the leaves.

机构信息

Department of Botany, University of Leicester, University Road, LE1 7RH, Leicester, UK.

出版信息

Planta. 1988 Nov;176(2):277-82. doi: 10.1007/BF00392456.

Abstract

Under continuous white light (WL), extension growth of the first internode in Sinapis alba L. was promoted by low red (R): far-red (FR) ratios reaching the stem and-or the leaves. Conversely, the growth promotion by end-of-day light treatments was only triggered by FR perceived by the leaves and cotyledons, while FR given to the growning internode alone was tatally ineffective. Continuous WL+FR given to the internode was also in-effective if the rest of the shoot remained in darkness. Both the background stem growth, and the growth promotion caused by either an end-of-day FR pulse or continuous WL+FR given to the internode, increased with increasing fluence rates of WL given to the rest of the shoot. The increase by WL of the growth-stimulatory effect of low phytochrome photoequilibria in the internode appears to be mediated by a specific blue-light-absorbing photoreceptor, as blue-deficient light from sodium-discharge lamps, or from filtered fluorescent tubes, promoted background stem growth similarly to WL but did not amplify the response to the R:FR ratio in the internode. Supplementing the blue-deficient light (94 μmol·m(-2)·s(-1)) with low fluence rates of blue (<9 μmol·m(-2)·s(-1)) restored the promotive effect of low R:FR reaching the internode.

摘要

在持续的白光 (WL) 下,通过低红光 (R):远红光 (FR) 比值到达茎和/或叶片,促进了白芥第一节间的延伸生长。相反,仅通过叶片和子叶感知到的 FR 进行的日终光处理的生长促进作用,而单独给予生长节间的 FR 则完全无效。如果整个枝条仍然处于黑暗中,连续 WL+FR 给予节间也无效。背景茎的生长以及日终 FR 脉冲或连续 WL+FR 给予节间引起的生长促进作用,随着给予整个枝条的 WL 辐照度的增加而增加。WL 对节间低光敏色素光平衡的生长刺激作用的增加似乎是由一个特定的蓝光吸收光受体介导的,因为来自钠放电灯或过滤荧光管的蓝光不足的光与 WL 一样促进背景茎的生长,但不会放大对节间 R:FR 比值的反应。用低辐照度的蓝光(<9 μmol·m(-2)·s(-1))补充蓝光不足的光(94 μmol·m(-2)·s(-1))恢复了到达节间的低 R:FR 的促进作用。

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