Limnological Institute Siberian Branch of the Russian Academy of Sciences, 3, Ulan-Bator Str., Irkutsk, 664033, Russia.
Limnological Institute Siberian Branch of the Russian Academy of Sciences, 3, Ulan-Bator Str., Irkutsk, 664033, Russia.
Plant Physiol Biochem. 2018 Apr;125:205-211. doi: 10.1016/j.plaphy.2018.02.014. Epub 2018 Feb 17.
Siliceous frustules of diatom algae contain unique long-chain polyamines, including those having more than six nitrogen atoms. These polyamines participate in the formation of the siliceous frustules of the diatoms but their precise physiological role is not clear. The main hypotheses include formation of a polyamine and polyphosphate supramolecular matrix. We have synthesized novel fluorescent dyes from a synthetic oligomeric mixture of polyamines and the fluorophore 7-nitro-2,1,3-benzoxadiazole. The long polyamine chain ensures the high affinity of these dyes to silica, which allows their application in the staining of siliceous materials, such as valves of diatom algae and fossilized samples from sediments. The fluorescently stained diatom valves were found to be promising liquid flow tracers in hydrodynamic tests. Furthermore, complexation of the polyamine component of the dyes with carbonic polymeric acids results in changes to the visible spectrum of the fluorophore, which allows study of the stability of the complex vs the length of the polyamine chain. Using poly (vinyl phosphonic acid) as a model for phosphate functionality in silaffins (a potential matrix in the formation of biogenic silica) little complexation with the polyamine fluorophores was observed, bringing into question the role of a polyamine - polymeric phosphate matrix in biosilicification.
硅藻类硅藻的硅质外壳包含独特的长链多胺,包括具有超过六个氮原子的多胺。这些多胺参与硅藻硅质外壳的形成,但它们的确切生理作用尚不清楚。主要假说包括多胺和多磷酸盐超分子基质的形成。我们从多胺的合成寡聚混合物和荧光团 7-硝基-2,1,3-苯并恶二唑合成了新型荧光染料。长多胺链确保了这些染料对硅的高亲和力,这使得它们能够应用于硅质材料的染色,如硅藻的壳和沉积物中的化石样本。荧光染色的硅藻壳被发现是水动力测试中很有前途的液体流动示踪剂。此外,染料中多胺成分与碳酸聚合酸的络合导致荧光团可见光谱的变化,这允许研究复合物相对于多胺链长度的稳定性。使用聚(膦酸乙烯)作为硅烷(生物硅形成的潜在基质)中磷酸盐官能度的模型,观察到与多胺荧光团的络合很少,这使得多胺-多磷酸盐基质在生物硅化中的作用受到质疑。