Gantar Miroslav, Berry John P, Thomas Serge, Wang Minglei, Perez Roberto, Rein Kathleen S
Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.
FEMS Microbiol Ecol. 2008 Apr;64(1):55-64. doi: 10.1111/j.1574-6941.2008.00439.x. Epub 2008 Feb 7.
We evaluated allelopathic interactions between strains of Cyanobacteria and green algae isolated from south and central Florida. Allelopathy, including inhibition or stimulation of growth, was assessed by cocultivation of each of the isolated strains, as well as by evaluation of extracts prepared from the isolates. All of the strains of Cyanobacteria, and four of the six isolates of green algae, showed some allelopathic activity (i.e. inhibition or stimulation of the growth of other strains). Of these, the most pronounced activity was observed for the cyanobacterial isolate Fischerella sp. strain 52-1. In the cocultivation experiments this cyanobacterium inhibited the growth of all tested green algae and Cyanobacteria. The crude lipophilic extracts from Fischerella sp. strain 52-1 isolated from both the biomass and the culture liquid inhibited photosynthesis of the green alga Chlamydomonas sp. in a concentration- and time-dependent manner and caused extensive loss of ultrastructural cell organization. Preliminary chemical characterization of compounds extracted from Fischerella sp. strain 52-1 indicated the presence of indole alkaloids, and further characterization has confirmed that these compounds belong to the hapalindoles previously isolated from other species of Fischerella and related genera. Further chemical characterization of these compounds, and further investigation of their apparent role in allelopathy is ongoing.
我们评估了从佛罗里达州南部和中部分离出的蓝藻菌株与绿藻菌株之间的化感相互作用。通过将每种分离菌株共同培养,以及对从这些分离物中制备的提取物进行评估,来测定化感作用,包括对生长的抑制或刺激。所有蓝藻菌株以及六个绿藻分离物中的四个都表现出了一定的化感活性(即对其他菌株生长的抑制或刺激)。其中,蓝藻分离物费氏藻属菌株52-1表现出最显著的活性。在共同培养实验中,这种蓝藻抑制了所有测试的绿藻和蓝藻的生长。从费氏藻属菌株52-1的生物量和培养液中分离出的粗亲脂性提取物,以浓度和时间依赖性方式抑制了绿藻莱茵衣藻的光合作用,并导致细胞超微结构组织大量丧失。对从费氏藻属菌株52-1中提取的化合物进行的初步化学表征表明存在吲哚生物碱,进一步的表征证实这些化合物属于先前从费氏藻属其他物种及相关属中分离出的哈帕林多类生物碱。对这些化合物的进一步化学表征以及对它们在化感作用中明显作用的进一步研究正在进行中。