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Fluence-Response Curves and Action Spectra for the Very Low Fluence and the Low Fluence Response for the Induction of Kalanchoë Seed Germination

机译:非常低通量和低通量响应的Kalanchoë种子萌发的通量响应曲线和作用谱

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摘要

Germination of Kalanchoë blossfeldiana Poelln. seeds is absolutely light-requiring. Germination of one seed is the result of one out of three reactions, viz. the very low fluence response (VLFR), the low fluence response (LFR) and the high fluence response/high irradiance response. In order to demonstrate the involvement of phytochrome for both photoresponses, i.e. VLFR and LFR, action spectra for induction were determined. Fluence-response data are analyzed by means of probit analysis in order to calculate the seed population parameters, with special attention to μ, or the fluence for half-maximal induction, and B, the slope in the probit diagram. Laser light was used between 620 and 800 nanometers to analyze the VLFR. Phytochrome is responsible for both photoresponses: the VLFR action spectrum demonstrates an exponential decrease in apparent photoconversion cross-section (Pr → Pfr) up to about 800 nanometers. Assuming that Pr:Pfr-X and Pfr:Pfr-X are the effectors for the VLFR and the LFR, respectively, we estimate an average induction threshold of about 0.003% Pr:Pfr for the VLFR and about 1% Pfr:Pfr for the LFR among individuals of the seed population.
机译:Kalanchoëblossfeldiana Poelln的发芽。种子绝对需要光。一粒种子的发芽是三分之一反应的结果,即。低通量响应(VLFR),低通量响应(LFR)和高通量响应/高辐照度响应。为了证明植物色素参与两种光响应,即VLFR和LFR,确定了诱导作用谱。通过概率分析来分析注量响应数据,以便计算种子种群参数,特别注意μ(即半最大感应的注量)和概率图中的斜率B。在620至800纳米之间使用激光分析VLFR。植物色素负责两种光响应:VLFR作用谱显示表观的光转换截面(Pr→Pfr)在约800纳米处呈指数下降。假设Pr:Pfr-X和Pfr:Pfr-X分别是VLFR和LFR的效应子,我们估计VLFR的平均诱导阈值约为0.003%Pr:Pfr,而LFR的平均诱导阈值约为1%。种子种群个体之间的LFR。

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