Horticultural Sciences Department and the Graduate Program in Plant Molecular and Cellular Biology, University of Florida, Gainesville, FL, USA.
Plant Signal Behav. 2010 Oct;5(10):1204-10. doi: 10.4161/psb.5.10.12413. Epub 2010 Oct 1.
Stem growth kinetics were measured in cucumber (Cucumis sativus) and Arabidopsis thaliana using highly-sensitive monitoring with 5-minute resolution, in darkness and in response to a short, single pulse of UV-C illumination. The results show that UV-C, like blue light, induces a rapid decrease in seedling growth rate. The fluence-response kinetics and time course were similar to the phototropin1 mediated response observed following a blue pulse. Arabidopsis seedlings were used to assess the genetic mechanism of this response. The phot1 mutant exhibited defects in stem growth rate inhibition, with sustained growth inhibition completely absent following specific treatments. The cryptochrome and phytochrome mutants exhibited responses comparable to wild type, suggesting that these receptor classes do not contribute to this response. The work demonstrates in two species that UV-C has an effect on a rapid plant photomorphogenic response and that the response is partially mediated by the phot1 photoreceptor.
使用具有 5 分钟分辨率的高灵敏度监测方法,在黑暗中并响应短时间的单次 UV-C 照射,测量了黄瓜(Cucumis sativus)和拟南芥(Arabidopsis thaliana)的茎生长动力学。结果表明,UV-C 像蓝光一样,诱导幼苗生长速度的快速下降。剂量响应动力学和时间过程与蓝光脉冲后观察到的光受体 1 介导的反应相似。拟南芥幼苗用于评估这种反应的遗传机制。光 1 突变体在茎生长率抑制方面表现出缺陷,在特定处理后完全不存在持续的生长抑制。隐花色素和光敏色素突变体表现出与野生型相当的反应,表明这些受体类群不参与这种反应。这项工作在两个物种中证明,UV-C 对植物快速光形态建成反应有影响,并且该反应部分由光受体 1 介导。