Tokarz Danielle, Cisek Richard, El-Ansari Omar, Espie George S, Fekl Ulrich, Barzda Virginijus
Department of Chemical and Physical Sciences, University of Toronto Mississauga, Mississauga, Ontario, Canada.
Department of Cell and Systems Biology, University of Toronto, Toronto, Ontario, Canada.
PLoS One. 2014 Sep 12;9(9):e107804. doi: 10.1371/journal.pone.0107804. eCollection 2014.
Nonlinear optical microscopy was used to image the localization of astaxanthin accumulation in the green alga, Haematococcus pluvialis. Polarization-in, polarization-out (PIPO) second harmonic generation (SHG) and third harmonic generation (THG) microscopy was applied to study the crystalline organization of astaxanthin molecules in light-stressed H. pluvialis in vivo. Since astaxanthin readily forms H- and J-aggregates in aqueous solutions, PIPO THG studies of astaxanthin aggregates contained in red aplanospores were compared to PIPO THG of in vitro self-assembled H- and J-aggregates of astaxanthin. The PIPO THG data clearly showed an isotropic organization of astaxanthin in red aplanospores of H. pluvialis. This is in contrast to the highly anisotropic organization of astaxanthin in synthetic H- and J-aggregates, which showed to be uniaxial. Since carotenoids in vitro preferentially form H- and J-aggregates, but in vivo form a randomly organized structure, this implies that astaxanthin undergoes a different way of packing in biological organisms, which is either due to the unique physical environment of the alga or is controlled enzymatically.
非线性光学显微镜被用于对绿藻雨生红球藻中虾青素积累的定位进行成像。采用偏振入射-偏振出射(PIPO)二次谐波产生(SHG)和三次谐波产生(THG)显微镜来研究光胁迫下的活体雨生红球藻中虾青素分子的晶体结构。由于虾青素在水溶液中容易形成H-聚集体和J-聚集体,因此将对红不动孢子中所含虾青素聚集体的PIPO THG研究与虾青素体外自组装H-聚集体和J-聚集体的PIPO THG进行了比较。PIPO THG数据清楚地表明,雨生红球藻红不动孢子中虾青素呈各向同性结构。这与合成H-聚集体和J-聚集体中虾青素的高度各向异性结构形成对比,后者显示为单轴结构。由于类胡萝卜素在体外优先形成H-聚集体和J-聚集体,但在体内形成随机组织的结构,这意味着虾青素在生物体内经历了不同的堆积方式,这要么是由于藻类独特的物理环境,要么是由酶控制的。