Studies on the chemical compositions of extracellular polymeric substances from marine benthic diatoms
CHEN Qi1,2, ZHENG Ji-yong2, YANG Jing-ya1, LIN Cun-guo2, SONG Hong-qing2
1. Food Science and Technology College, Shanghai Ocean University, Shanghai 201306, China;
2. State Key Laboratory for Marine Corrosion and Protection, Luoyang Ship Material Research Institute, Qingdao 266101, China
Abstract:The marine benthic diatoms slide and attach on the surface by extracellular polymeric substance (EPS). To investigate the difference of EPS at different growth cycle and recognize the variety of EPS from different species of diatoms, we measured and quantified the EPS from single cell. The water-soluble and water-insoluble components in EPS from marine benthic diatoms were extracted by hot solvent method. The phenol-sulfuric acid method was employed to measure the content of polysaccharide and the Coomassie Brilliant Blue G-250 method was employed to measure the content of protein in the extractions. The results showed that the contents of polysaccharide and protein in EPS were reduced with the increase of cell density for Navicula pinna at different growth cycle, and the contents of polysaccharide and protein had differences, indicating that the growth cycle of diatom had influenced for secretion action of EPS. The contents of EPS from diatoms (Navicula leavissima, Navicula parva, and Navicula pinna) were different at the exponential stage, but the percentage of polysaccharide and protein in EPS had no differences.
CHEN Qi,ZHENG Ji-yong,YANG Jing-ya et al. Studies on the chemical compositions of extracellular polymeric substances from marine benthic diatoms[J]. Marine Environmental Science, 2016, 35(5): 641-646.
HOAGLAND K D,ROSOWSKI J R,GRETZ M R,et al.Diatom extracellular polymeric substances:function,fine structure,chemistry,and physiology[J].Journal of Phycology,1993,29(5):537-566.
[3]
黄宗国,蔡如星.海洋污损生物及其防除(上册)[M].北京:海洋出版社,1984:1-352.
[4]
ALBERT R S,SNYDER S,ZAHURANEC B J,et al.Biofouling research needs for the United States Navy:program history and goals[J].Biofouling:the Journal of Bioadhesion and Biofilm Research,1992,6(2):91-95.
[5]
CHIOVITTI T M,DUGDALET M,WETHERBEE R.Diatom adhesives:molecular and mechanical properties[M]//SMITH A M,CALLOW J A.Biological Adhesives.Heidelberg:Springer,2006:79-103.
[6]
CHIOVITTI A,HIGGINS M J,HARPER R E,et al.The complex polysaccharides of the raphid diatom Pinnularia viridis (Bacillariophyceae)[J].Journal of Phycology,2003,39(3):543-554.
[7]
ZOU N,SUN D H,GUO X Y.Effects of environmental and nutritional conditions on growth of marine benthic diatoms[J].Journal of Aquaculture,2005,26(5):11-13.
WUSTMAN B A,GRETZ M R,HOAGLAND K D.Extracellular matrix assembly in diatoms (Bacillariophyceae),I.A model of adhesives based on chemical characterization and localization of polysaccharides from the marine diatom Achnanthes longipes and other diatoms[J].Plant Physiology,1997,113(4):l059-1069.
DUBOIS M,GILLES K A,HAMILTON J K,et al.Colorimetric method for determination of sugars and related substances[J].Analytical Chemistry,1956,28(3):350-356.
BRADFORD M M.A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding[J].Analytical Biochemistry,1976,72:248-254.
[14]
王孝平,邢树礼.考马斯亮蓝法测定蛋白含量的研究[J].天津化工,2009,23(3):40-42.
[15]
MOLINOP J,WETHERBEE R.The biology of biofouling diatoms and their role in the development of microbial slimes[J].Biofouling,2008,24(5):365-379.
[16]
荆红梅.海洋微藻胞外产物的实验研究[D].厦门:厦门大学,2001:1-79.
[17]
曹 杉.海洋底栖硅藻附着机理及其防污技术研究[D].北京:清华大学,2014:1-156.
[18]
CAO S,WANG J D,CHEN H S,et al.Progress of marine biofouling and antifouling technologies[J].Chinese Science Bulletin,2011,56(7):598-612.
GOLDSBOROUGH L G,HICKMAN M.A comparison of periphytic algal biomass and community structure on Scirpus validus and on a morphologically similar artificial substratum[J].Journal of Phycology,1991,27(2):196-206.
[21]
HOUPT P M.Observations on the marine tube-dwelling diatom Navicula pseudocomoides in culture[J].Diatom Research,1987,2(1):47-53.