Cvrčková Fatima, Luštinec Jiří, Žárský Viktor
a Faculty of Sciences; Charles University ; Viničná, Prague , Czech Republic.
Plant Signal Behav. 2015;10(9):e1062198. doi: 10.1080/15592324.2015.1062198.
We usually expect the dose-response curves of biological responses to quantifiable stimuli to be simple, either monotonic or exhibiting a single maximum or minimum. Deviations are often viewed as experimental noise. However, detailed measurements in plant primary tissue cultures (stem pith explants of kale and tobacco) exposed to varying doses of sucrose, cytokinins (BA or kinetin) or auxins (IAA or NAA) revealed that growth and several biochemical parameters exhibit multiple reproducible, statistically significant maxima over a wide range of exogenous substance concentrations. This results in complex, non-monotonic dose-response curves, reminiscent of previous reports of analogous observations in both metazoan and plant systems responding to diverse pharmacological treatments. These findings suggest the existence of a hitherto neglected class of biological phenomena resulting in dose-response curves exhibiting periodic patterns of maxima and minima, whose causes remain so far uncharacterized, partly due to insufficient sampling frequency used in many studies.
我们通常认为,生物对可量化刺激的剂量反应曲线是简单的,要么是单调的,要么呈现单一的最大值或最小值。偏差通常被视为实验噪声。然而,对暴露于不同剂量蔗糖、细胞分裂素(苄氨基嘌呤或激动素)或生长素(吲哚乙酸或萘乙酸)的植物原代组织培养物(羽衣甘蓝和烟草的茎髓外植体)进行的详细测量表明,在广泛的外源物质浓度范围内,生长和几个生化参数呈现多个可重复的、具有统计学意义的最大值。这导致了复杂的、非单调的剂量反应曲线,这让人想起之前关于后生动物和植物系统在对各种药理处理作出反应时类似观察结果的报道。这些发现表明存在一类迄今为止被忽视的生物现象,其导致剂量反应曲线呈现最大值和最小值的周期性模式,其原因迄今仍未明确,部分原因是许多研究中使用的采样频率不足。