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红光抑制玉米幼苗中胚轴伸长:II. 动力学和光谱研究。

Red Light-inhibited Mesocotyl Elongation in Maize Seedlings: II. Kinetic and Spectral Studies.

作者信息

Vanderhoef L N, Quail P H, Briggs W R

机构信息

Department of Plant Biology, Carnegie Institution of Washington, Stanford, California 94305.

出版信息

Plant Physiol. 1979 Jun;63(6):1062-7. doi: 10.1104/pp.63.6.1062.

Abstract

Red light induces two distinct inhibition responses in mesocotyls of etiolated corn seedlings. A light dose of 10 nanoeinsteins per square centimeter is saturating for the more sensitive response, whereas doses above 1,000 nanoeinsteins per square centimeter are required to exceed the threshold sensitivity of the less sensitive one. The sensitive response can be detected within 20 minutes of the onset of illumination whereas the other response does not become apparent until more than 4 hours after the beginning of irradiation. The reciprocity law is valid for the first response, but probably not for the second. An action spectrum for the first response shows two maxima, one at 640 nanometers and the other between 660 and 670 nanometers, with a pronounced minimum near 650 nanometers. The effects both of 640 and 665 nanometers of light were reversible by far red light, but doses of far red required for full reversibility were almost three orders of magnitude greater than the doses of red required either to saturate the initial inhibition or to reverse the effect of far red light. The results suggest that corn may contain a red-absorbing pigment other than phytochrome which in some way interacts with phytochrome in the inhibition of mesocotyl elongation by red light.

摘要

红光可在黄化玉米幼苗的中胚轴诱导出两种不同的抑制反应。每平方厘米10纳爱因斯坦的光剂量可使更敏感的反应达到饱和,而每平方厘米超过1000纳爱因斯坦的剂量才能超过较不敏感反应的阈值灵敏度。在光照开始后的20分钟内即可检测到敏感反应,而另一种反应直到照射开始4个多小时后才会明显显现。互易定律适用于第一种反应,但可能不适用于第二种反应。第一种反应的作用光谱显示有两个峰值,一个在640纳米处,另一个在660至670纳米之间,在650纳米附近有一个明显的最小值。640纳米和665纳米的光效应均可被远红光逆转,但完全逆转所需的远红光剂量几乎比使初始抑制达到饱和或逆转远红光效应所需的红光剂量大三个数量级。结果表明,玉米可能含有除光敏色素之外的一种吸收红光的色素,该色素在某种程度上与光敏色素相互作用,从而抑制红光对中胚轴伸长的影响。

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