Centre for Marine Bio-Innovation, University of New South Wales, Sydney, NSW, Australia.
FEMS Microbiol Ecol. 2013 May;84(2):411-20. doi: 10.1111/1574-6941.12071. Epub 2013 Feb 5.
The macroalga Fucus vesiculosus carries a specific community of surface bacteria. To identify chemical compounds that possibly mediate abundance and community composition of algae-associated bacteria, we tested the effect of surface-available algal compounds on bacterial settlement and community composition under field conditions. Compounds on algal thalli were separated from the surface by extraction with organic solvents and investigated on growth inhibition and settlement of bacterial isolates. Based on in vitro data, partially purified extract fractions were then exposed to bacterial colonizers in vivo followed by bacterial enumeration and community analysis. The polar fraction of the algal surface extract revealed a significant profouling effect for Vibrionales, whereas the nonpolar fraction - containing the xanthophyll pigment fucoxanthin and other unidentified nonpolar surface compounds - revealed a significant 80% reduction of surface colonizing bacteria. The analysis of bacterial surface communities by 454 pyrosequencing demonstrated that the antifouling activity of nonpolar algal surface compounds was targeting the abundance of natural bacterial colonizers rather than the relative composition of bacterial members within the community. Moreover, the bacterial community composition on F. vesiculosus was markedly different from artificial control substrates and chemically manipulated experimental treatments, suggesting that other, nonextractable surface features and/or physical properties render algal-specific epiphytic bacterial communities.
大型褐藻泡叶藻携带特定的表面细菌群落。为了鉴定可能调节藻类相关细菌丰度和群落组成的化学化合物,我们在野外条件下测试了表面可利用的藻类化合物对细菌定殖和群落组成的影响。用有机溶剂从藻体表面提取化合物,以分离藻体表面的化合物,并研究其对细菌分离物生长抑制和定殖的影响。基于体外数据,然后将部分纯化的提取物暴露于体内细菌定殖者,然后进行细菌计数和群落分析。藻类表面提取物的极性部分对 Vibrionales 表现出显著的污损效应,而非极性部分——含有叶黄素色素岩藻黄素和其他未鉴定的非极性表面化合物——则显著降低了 80%的表面定殖细菌。通过 454 焦磷酸测序对细菌表面群落进行分析表明,非极性藻类表面化合物的抗污损活性针对的是天然细菌定殖者的丰度,而不是群落中细菌成员的相对组成。此外,泡叶藻上的细菌群落组成与人工对照基质和化学处理的实验处理明显不同,这表明其他不可提取的表面特征和/或物理性质形成了藻类特有的附生细菌群落。