Lkhamkhuu Enkhsukh, Zikihara Kazunori, Katsura Hitomi, Tokutomi Satoru, Hosokawa Takafumi, Usami Yoshihisa, Ichihashi Mitsuyoshi, Yamaguchi Junji, Monde Kenji
Graduate School of Life Science, Faculty of Advanced Life Science, Hokkaido University, Sapporo 001-0021, Japan.
Department of Biological Science, Graduate School of Science, Osaka Prefecture University, Sakai, Osaka 599-8531.
Plant Biotechnol (Tokyo). 2020 Mar 25;37(1):57-67. doi: 10.5511/plantbiotechnology.19.1219a.
Circular dichroism (CD), defined as the differential absorption of left- and right-handed circularly polarized light (CPL), is a useful spectroscopic technique for structural studies of biological systems composed of chiral molecules. The present study evaluated the effects of CPL on germination, hypocotyl elongation and biomass production of Arabidopsis and lettuce. Higher germination rates were observed when Arabidopsis and lettuce seedlings were irradiated with red right-handed CPL (R-CPL) than with red left-handed CPL (L-CPL). Hypocotyl elongation was effectively inhibited when Arabidopsis and lettuce seedlings were irradiated with red R-CPL than with red L-CPL. This difference was not observed when a phytochrome B (phyB) deficient mutant of Arabidopsis was irradiated, suggesting that inhibition of elongation by red R-CPL was mediated by phyB. White R-CPL induced greater biomass production by adult Arabidopsis plants, as determined by their fresh shoot weight, than white L-CPL. To determine the molecular basis of these CPL effects, CD spectra and the effect of CPL on the photoreaction of a sensory module of Arabidopsis phyB were measured. The red light-absorbing form of phyB showed a negative CD in the red light-absorbing region, consistent with the results of germination, inhibition of hypocotyl elongation and biomass production. L-CPL and R-CPL, however, did not differ in their ability to induce the interconversion of the red light-absorbing and far-red light-absorbing forms of phyB. These findings suggest that these CPL effects involve phyB, along with other photoreceptors and the photosynthetic process.
圆二色性(CD)定义为左旋和右旋圆偏振光(CPL)的差异吸收,是一种用于研究由手性分子组成的生物系统结构的有用光谱技术。本研究评估了CPL对拟南芥和生菜发芽、下胚轴伸长和生物量生产的影响。观察到用红色右旋CPL(R-CPL)照射拟南芥和生菜幼苗时的发芽率高于用红色左旋CPL(L-CPL)照射时。用红色R-CPL照射拟南芥和生菜幼苗时,下胚轴伸长比用红色L-CPL照射时更有效地受到抑制。当照射拟南芥的phytochrome B(phyB)缺陷突变体时未观察到这种差异,这表明红色R-CPL对伸长的抑制是由phyB介导的。白色R-CPL诱导成年拟南芥植株产生比白色L-CPL更大的生物量,这通过它们的地上部鲜重确定。为了确定这些CPL效应的分子基础,测量了CD光谱以及CPL对拟南芥phyB感觉模块光反应的影响。phyB的红光吸收形式在红光吸收区域显示出负CD,这与发芽、下胚轴伸长抑制和生物量生产的结果一致。然而,L-CPL和R-CPL在诱导phyB的红光吸收形式和远红光吸收形式相互转换的能力上没有差异。这些发现表明,这些CPL效应涉及phyB以及其他光感受器和光合作用过程。