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AFM imaging of extracellular polymer release by marine diatom Cylindrotheca closterium (Ehrenberg) Reiman & J.C. Lewin (CROSBI ID 166785)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Pletikapić, Galja ; Mišić Radić, Tea ; Hozić Zimmermann, Amela ; Svetličić, Vesna ; Pfannkuchen, Martin ; Marić, Daniela ; Godrijan, Jelena ; Žutić, Vera AFM imaging of extracellular polymer release by marine diatom Cylindrotheca closterium (Ehrenberg) Reiman & J.C. Lewin // Journal of molecular recognition, 24 (2011), 3; 436-445. doi: 10.1002/jmr.1114

Podaci o odgovornosti

Pletikapić, Galja ; Mišić Radić, Tea ; Hozić Zimmermann, Amela ; Svetličić, Vesna ; Pfannkuchen, Martin ; Marić, Daniela ; Godrijan, Jelena ; Žutić, Vera

engleski

AFM imaging of extracellular polymer release by marine diatom Cylindrotheca closterium (Ehrenberg) Reiman & J.C. Lewin

Extracellular polysaccharide production by marine diatoms is a significant route by which photosynthetically produced organic carbon enters the trophic web and may influence the physical environment in the sea. This study highlights the capacity of AFM for investigating diatom extracellular polysaccharides with a subnanometer resolution. Here we address a ubiquitous marine diatom Cylindrotheca closterium, isolated from the Northern Adriatic seawater, and its extracellular polymeric substance (EPS) at a single cell level. We applied a simple procedure for AFM imaging of diatom cells on mica under ambient conditions (in air) to achieve visualization of their EPS with molecular resolution. The EPS represents a web of polysaccharide fibrils with two types of cross-linking: fibrils association forming junction zones, and fibril-globule interconnections with globules connecting two or more fibrils. The fibril heights were 0.4-2.6 nm while globules height was in the range of 3-12 nm. Polymer networks of native gel samples from the Northern Adriatic and the network formed by polysaccharides extracted from the C. closterium culture share the same features regarding the fibril heights, pore openings and the mode of fibril association, proving that the macroscopic gel phase in the Northern Adriatic can be formed directly by the self-assembly of diatom released polysaccharide fibrils.

marine diatom; Cylindrotheca closterium; Ceratoneis closterium; extracellular polymer substance; polysaccharides; atomic force microscopy; Adriatic Sea

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Podaci o izdanju

24 (3)

2011.

436-445

objavljeno

0952-3499

10.1002/jmr.1114

Povezanost rada

Geologija, Kemija, Biologija

Poveznice
Indeksiranost