Zhang Bangzhou, Cai Guanjing, Wang Haitao, Li Dong, Yang Xujun, An Xinli, Zheng Xiaowei, Tian Yun, Zheng Wei, Zheng Tianling
State Key Laboratory of Marine Environmental Science and Key Laboratory of the Ministry of Education for Coast and Wetland Ecosystems, School of Life Sciences, Xiamen University, Xiamen, Fujian, China.
PLoS One. 2014 Mar 27;9(3):e92907. doi: 10.1371/journal.pone.0092907. eCollection 2014.
Phaeocystis globosa blooms have frequently occurred along coastal waters and exerted serious impacts on ecological environments by releasing toxic hemolytic substances, forming nuisance foam, and causing oxygen depletion. An actinomycete strain RPS with high algicidal activity against P. globosa was isolated and identified as Streptomyces alboflavus, based on morphology, physiological and biochemical characteristics, and 16S rDNA sequence analysis. RPS lysed 95% of P. globosa within 48 h by releasing an extracellular active substance into the growth medium. The activity of RPS supernatant was sensitive to temperature at and above 50 °C and insensitive to pH from 3 to 11. The molecular weight of the active substance was between 100 Da and 1000 Da, and approximately 90% of it was extracted by ethyl acetate. It was presumed that the active component efficiently inhibited the movement of P. globosa, caused the flagella to fall off the algae, and finally lysed the algal cells. RPS showed a wide target range against harmful algae. S. alboflavus RPS with high algicidal activity and such novel features of temperature and pH sensitivity, low molecular weight, algicidal process, and target range possesses great potential in the biological control of P. globosa blooms.
球形棕囊藻赤潮频繁出现在沿海水域,通过释放有毒溶血物质、形成有害泡沫以及导致氧气消耗,对生态环境造成了严重影响。基于形态学、生理生化特征以及16S rDNA序列分析,分离出了一株对球形棕囊藻具有高杀藻活性的放线菌菌株RPS,并鉴定为白黄链霉菌。RPS通过向生长培养基中释放一种细胞外活性物质,在48小时内裂解了95%的球形棕囊藻。RPS上清液的活性在50°C及以上对温度敏感,在pH值为3至11时不敏感。活性物质的分子量在100 Da至1000 Da之间,约90%可被乙酸乙酯提取。据推测,活性成分有效抑制了球形棕囊藻的运动,导致鞭毛从藻体上脱落,最终裂解藻细胞。RPS对有害藻类显示出广泛的靶向范围。具有高杀藻活性以及温度和pH敏感性、低分子量、杀藻过程和靶向范围等新特性的白黄链霉菌RPS在球形棕囊藻赤潮的生物防治中具有巨大潜力。