Cleland R E, Cosgrove D, Tepfer M
Department of Botany, University of Washington, Seattle 98195, USA.
Planta. 1987;170:379-85.
When frozen-thawed Avena sativa L. coleoptile and Cucumis sativa L. hypocotyl sections, under tension, are acid-treated, they undergo rapid elongation (acid-extension). The acid-extension response consists of two concurrent phases: a burst of extension which decays exponentially over 1-2 h (ExE), and a constant rate of extension (CE) which can persist for at least 6h. The extension (delta L) is closely represented by the equation: delta L = a-a e(-kt) + C t where a is the total extension of the exponential phase, k is the rate constant for ExE, and c is the rate of linear extension (CE). Low pH and high tension increased a and c, whereas temperature influenced k. The magnitude of the CE (over 50% extension/10 h), the similarity in its time course to auxin-induced growth, and the apparent yield threshold for CE indicate that CE is more likely than ExE to be the type of extension which cell walls undergo during normal auxin-induced growth.
当在张力作用下对冻融后的燕麦胚芽鞘和黄瓜下胚轴切片进行酸处理时,它们会迅速伸长(酸伸长)。酸伸长反应由两个同时发生的阶段组成:一个在1 - 2小时内呈指数衰减的伸长爆发期(ExE),以及一个可以持续至少6小时的恒定伸长速率期(CE)。伸长量(ΔL)由以下方程密切表示:ΔL = a - a e^(-kt) + C t,其中a是指数期的总伸长量,k是ExE的速率常数,c是线性伸长速率(CE)。低pH值和高张力增加了a和c,而温度影响k。CE的幅度(超过50%伸长/10小时)、其时间进程与生长素诱导生长的相似性以及CE的明显屈服阈值表明,与ExE相比,CE更有可能是细胞壁在正常生长素诱导生长过程中经历的伸长类型。