Suganthi Devadason Marine Research Institute, 44 Beach Road, Tuticorin-628 001, Tamil Nadu, India.
Nat Prod Res. 2012;26(10):975-8. doi: 10.1080/14786419.2010.545355. Epub 2011 Aug 23.
The seaweeds Dictyota dichotoma and Chaetomorpha linoides from the southeast coast of India were screened for anti-microfouling activity against biofilm bacteria, anti-macrofouling activity against brown mussels and feeding deterrence activity against the sea angel Monodactylus kottelati. The surface associated epiphytic bacteria were also isolated from seaweeds and screened for activity against biofilm bacteria. The acetone extracts showed a wide spectrum activity against biofilm bacteria and the algal metabolite was surface concentrated and non-polar in nature. The seaweeds also inhibited byssus production and attachment in brown mussels, and deterred feeding in the sea angel. The lower epiphytic bacterial number on the seaweed's surface compared to the surrounding seawater medium indicated selective inhibition or surface mediation. The epiphytic bacteria, which showed activity against biofilm bacteria, might also possibly play a role in seaweed defence strategies. The 50% deterrence of feeding activity at lower concentrations was not proportionate to the 100% inhibition concentration, which could be attributed to the adaptability of the fishes, an indication that the active substances are inhibitory in nature. This was further substantiated with the 100% recovery of mussels in a toxicity assay and the lower EC(50) values than LC(50) values in the mussel bioassay. The study indicates that the metabolites of both seaweeds have ecological significance and could possibly play a multifunctional role.
从印度东南海岸采集的海藻 Dictyota dichotoma 和 Chaetomorpha linoides 被筛选具有抗生物膜细菌的抗微生物活性、抗贻贝的抗大型生物附着活性和阻止海天使 Monodactylus kottelati 摄食的活性。还从海藻中分离了附着在表面的附生细菌,并对其活性进行了筛选。丙酮提取物对生物膜细菌表现出广谱活性,而藻类代谢物具有表面浓缩和非极性的性质。海藻还抑制贻贝产生足丝和附着,阻止海天使摄食。与周围海水介质相比,海藻表面的低附着附生细菌数量表明存在选择性抑制或表面介导作用。对生物膜细菌表现出活性的附生细菌,可能也在海藻防御策略中发挥作用。较低浓度下对摄食活性的 50%抑制作用与 100%抑制浓度不成比例,这可能归因于鱼类的适应性,表明活性物质具有抑制作用。这进一步通过贻贝在毒性测定中的 100%恢复和贻贝生物测定中 EC(50)值低于 LC(50)值得到证实。该研究表明,这两种海藻的代谢物具有生态意义,可能发挥多种功能。