芦苇秆浸出液抑藻的最佳环境条件研究
A RESEARCH ON OPTIMUM CONDITIONS FOR ALGAL INHIBITION BY REED EXTRACT
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摘要: 应用全面正交设计试验方案,研究了三种主要环境因子温度、pH、氮磷比及其互作对芦苇秆浸出液抑制铜绿微囊藻(Microcystis aeruginosa)生长的影响。结果表明:芦苇秆浸出液使藻细胞出现聚集现象,对铜绿微囊藻细胞密度和叶绿素a的含量变化的影响均与这三个环境因子及其互作显著相关,温度是影响抑藻的主效环境因子,其次是pH和氮磷比,温度与pH以及温度与氮磷比之间也存在一定的交互作用,pH与氮磷比之间无显著差异。具体表现为,低温组(10℃)抑藻效果显著,随着温度升高抑藻效果逐渐减弱,pH和氮磷比对抑藻效果的影响都与温度水平密切相关,所有的低温组(10℃)及大部分中温组(18℃)的温度、pH、氮磷比各水平均与高温组(25℃)之间存在显著差异(P0.05)。经过方差综合分析,芦苇秆浸出液抑藻的最佳环境条件为:温度为10℃,pH为9,氮磷比为2,在此条件下连续培养7d后,藻细胞密度下降到原来的40.48%,叶绿素a下降到原来的51.26%,故推测芦苇秆应用于控制水华的发生及水体蓝藻污染的恢复具有良好应用前景。Abstract: Orthogonal experiment design was taken for the research of the interactions among temperature, pH and N/P ratio and their inhibitory effects on Microcystis aeruginosa. The results showed that reed extract led to gathering in algae cells, and its effects on algae cells and the density of Microcystis aeruginosa cells and the variation of amount of chlorophyll a were both relative to the three above-mentioned factors. Temperature was the major factor affecting the inhibitory effect, and then were pH and N/P ratio. There were also interactions between temperature and N/P ratio. But there was no distinct difference between pH and N/P ratio. The specific phenomena were that the low temperature group (10℃) showed the most distinctive inhibitory effect, the inhibitory effect declined with the temperature rose, and the pH and N/P ratio were both closely connected with the temperature in their inhibitory effects. Levels of temperatures of all low temperature groups (10℃) and temperatures, pH and N/P ratio of most medium temperature groups (18℃) were distinctly different from those of the high temperature groups (25℃) (P0.05). According to various analysis the best condition for reed extract's inhibitory effect on M. aeruginosa was at 10℃, pH value equals 9 and N/P ratio equals 2.Seven days after continuous cultivating under such environment, the density of algae cells decreased to 40.48%, and the chlorophyll a content decreased to 51.26%. This result showed that reed stalk lixivium was effective to reduce the chance of algal bloom happening and helpful in recovering from blue-green algae pollution.
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Keywords:
- Temperature /
- pH /
- N/P ratio /
- Microcystis aeruginosa /
- Inhibition /
- Reed extract
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[1] Ball A S,Williams M,Vincent D, et al.Algal growth control by a barley straw extract[J].Bioresource Technology,2001,77(2): 177-181
[2] Ferrier M D,Sr B R B,Terlizzi D E, et al.The effects of barley straw (Hordeum vulga.Bire) on the growth of freshwater algae[J]. Bioresource Technology,2005,96(16): 1788-1795
[3] Zou H,Xiang L,Zhou S J,et al. Research and applications of crop strawin controlling of algal bloom[J].Shanghai Environmental Science,2010,29(3): 122-126[邹华,向丽,周思佳,等.农作物秸秆控制藻华的研究与应用.上海环境科学,2010,29(3): 122-126]
[4] Liu T,Yang W J,Wang R J.Inhibition effects of different straws on Microcystis aeruginosa[J].Chinese Journal of Environmental Engineering,2012,6(4): 1154-1160[刘涛,杨文杰,王茹静.作物秸秆对铜绿微囊藻的抑制作用.环境工程学报,2012,6(4): 1154-1160]
[5] Li F M,Hu H Y,Chong Y X,et al.Effects of Allelochemical isolated fromPhragmites communis on algal membrane permeability[J].Environmental Science,2007,28(11): 245-250[李锋民,胡洪营,种云霄,等.芦苇化感物质对藻类细胞膜选择透性的影响.环境科学,2007,28(11): 245-250]
[6] Li F M,Hu H Y,Chong Y X,et al.Influence of EMA isolated fromPhragmites communis on physiological characters of Microcystis aeruginosa[J]. China Environmental Science,2007,27(3): 377-381[李锋民,胡洪营,种云霄,等.芦苇化感物质EMA对铜绿微囊藻生理特性的影响.中国环境科学,2007,27(3): 377-381]
[7] Men Y J,Hu H Y.Effects of allelochemical EMA from reed on the production and release of cyanotoxins inMicrocystis aeruginosa[J].Environmental Science,2007,28(9): 2057-2062[门玉洁,胡洪营.芦苇化感物质EMA对铜绿微囊藻生长及藻毒素产生和释放的影响.环境科学,2007,28(9): 2057-2062]
[8] Guo H.A research on inhibitory effect of active substances in reed upon poisonous algae[J].Modern Cultural Sciences and Technology,2009,9: 234-235[郭欢.芦苇中活性物质对有毒藻类抑制作用的研究.现代农业科技,2009,9: 234-235]
[9] Li F M,Hu H Y.Isolation and effects on green alga Chlorella pyrenoidosa of algal-inhibiting allelochemicals in the macrophyte,Phragmites communis Tris.[J]. Environmental Science,2004,25(5): 89-92[李锋民,胡洪营.芦苇抑藻化感物质的分离及其抑制蛋白核小球藻效果研究.环境科学,2004,25(5): 89-92]
[10] Zhang X,Hu H Y,Men Y J,et al.Inhibitory effect of extract from barley straw on the growth of Microcystis aeruginosa[J].Acta Scientiae Circumstantiae,2007,27(12): 1984-1987[张薛,胡洪营,门玉洁,等.大麦秆提取液对铜绿微囊藻生长的影响研究.环境科学学报,2007,27(12): 1984-1987]
[11] Wu M,Lin L,Huang Z.Environmental factors affecting freshwater algae growth a case study onMicrocystis aeruginosa[J].Journal of Yangtze River Scientific Research Institute,2012,29(10): 41-47[吴敏,林莉,黄茁.淡水藻类生长的环境影响因子分析-以铜绿微囊藻为例.长江科学院院报,2012,29(10): 41-47]
[12] Han G C,Gu F,Zhang Z,et al.Discussing about chlorophyll a determination method in fresh water[J].Environmental Monitoring in China,2005,21(1): 55-57[韩桂春,谷丰,张忠,等.淡水中叶绿素a测定方法的探讨.中国环境监测,2005,21(1): 55-57]
[13] Huang Z Q,Liao L P,Wang S L.Allelopathy of phenolics from decomposing stump-roots,in replant Chinese for woodland[J].Journal of Chemical Ecology,2000,26(9): 2211-2219
[14] Xiang L.A Research on inhibitory effect of rice Straw upon Microcystis aeruginosaand its mechanism[D].Wuxi: Jiangnan University.2010[向丽.稻麦秸秆对铜绿微囊藻生长的抑制作用及其机理研究.无锡: 江南大学.2010]
[15] Nakai S,Inoue Y,Hosomi M,et al.Growth inhibition of blue-green algea by alleopothic effects of macrophytes[J].Water Science and Technology,1999,39(8): 47-53
[16] Wang L,Wang G X,Tang X Y.Inhibitory Effect ofNymphoides peltatum on Microcysti aeruginosa and Its Mechanism[J]. Journal of Ecology and Rural Environment,2010,26(3): 257-263[汪丽,王国祥,唐晓燕.荇菜(Nymphoides peltatum)对铜绿微囊藻(Microcystis aeruginosa) 生长的抑制效应及其机制.生态与农村环境学报,2010,26(3): 257-263]
[17] Xu Y,Hu Z J,Liu Q G,et al.The influence of temperature and Chlorella vulgaris cultivated under different nitrogen and phosphorus concentrations on the growth and reproduction of Daphnia hyaline[J].Journal of Shanghai Ocean University,2011,20(5): 712-718[徐怡,胡忠军,刘其根,等.温度和不同氮磷浓度培养的小球藻对透明溞生长和繁殖的影响.上海海洋大学学报,2011,20(5):712-718]
[18] Yuan L N,Song W,Xiao L,et al.The overall orthogonal design study of multifactor interaction on the growth ofMicrocystis aeruginosa in the presence of adnascentPseudomonas sp.[J].Journal of Nanjing University (Natural Sciences),2008,44(4): 408-414[袁丽娜,宋炜,肖琳,等.多环境因素全面正交作用对铜绿微囊藻生长的效应研究.南京大学学报(自然科学),2008,44(4): 408-414]
[19] Xue L Z,Chen X C.Interactive effects of temperature and phosphorus on the growth of and Microcystis aeruginosa andChlorella vulgaris[J].Anhui Agricultural Science Bulletin,2011,17(13): 23-41[薛凌展,陈小晨.温度和磷交互作用对铜绿微囊藻和小球藻生长的影响.安徽农学通报,2011,17(13): 23-41]
[20] Wu H Y,Su J,Shi W.Study on growth and toxin production of Microcystis aeruginosa strain under different conditions[J].Journal of Environmental Health,2006,23(4): 304-307[吴和岩,苏瑾,施玮.铜绿微囊藻的生长及产毒条件研究.环境与健康杂志,2006,23(4): 304-307]
[21] Guo S J,Gang N Q,Zheng L L, et al.Effects of environmental factors on the growth and ingestion characteristics of chrysophycean Poterioochromonas sp.[J].Acta Hydrobiologica Sinica,2010,30(1): 1-8[郭胜娟,甘南琴,郑凌凌,等.环境因子对金藻生长和噬藻速率的影响.水生生物学报,2010,30(1): 1-8]
[22] Han Z P,Shao C G,Zhang Y X, et al.The annual variation of blue algae biomass and nitrogen levels and their correlation at different inlet areas of south Taihu Lake[J].Journal of Fisheries of China,2012,36(6): 922-929[韩志萍,邵朝纲,张易祥,等.南太湖入湖口蓝藻生物量与氮营养因子的年变化特征以及相关性研究.水产学报,2012,36(6): 922-929]
[23] Yu D H.Control of Nitrogen Pollution of Chinese Lakes and Existing Problems[C].China's Lake Eutrophication and the Prevention and Control of International Academic Seminar on Experts.Beijing: SEPA.2000,207-214[余德辉.中国湖泊富营养化防治状况及存在的问题.中国湖泊富营养化及其防治国际学术研讨会专家论文集.北京: 国家环境保护总局.2000,207-214]
[24] Hou Y P.A research on the impact of nutrition,illumination and temperature on the growth,over-winter and recovery ofMicrocystis aeruginosa[D].Nanchang: Nanchang University.2008[侯延鹏.营养元素及光照、温度对铜绿微囊藻生长、越冬及复苏的影响研究.南昌: 南昌大学.2008]
[25] Liu Y S,Han M,Liang Z B,et al.Influence of light intensity,temperature and nutrients on the growth of Microcystis in water of Dianchi Lake[J].Research of Environmental Sciences,1995,8(6): 7-11[刘玉生,韩梅,梁占彬,等.光照、温度和营养盐对滇池微囊藻生长的影响.环境科学研究,1995,8(6):7-11]
[26] Pick F R.Species-specific phytoplankton responses to nutrient enrichment in limnetic enclosures[J].Archivfuer Hydrobiologie,1998,32: 177-187
[27] Zou D,Xiao L,Yang L Y, et al.Effects of N/P ratio onPhosphorus metabolism ofMicrocystis aeruginosa andadhesive pseudomonassp[J].Environmental Chemistry,2005,24(6): 647-650[邹迪,肖琳,杨柳燕,等.不同氮磷比对铜绿微囊藻及附生假单胞菌磷代谢的影响.环境化学,2005,24(6): 647-650]
[28] Cui L T,Li Z W.Effects of cornponent of the nutrient salts nitrogen and phosphorus on growth ofMicrocyst is aeruginosa[J].Hebei Fisheries,2006,149(5): 12-14,53[崔力拓,李志伟.氮、磷营养盐组成对铜绿微囊藻生长的影响.河北渔业,2006,149(5): 12-14,53]
[29] Ye L T,Qian J Z,Zuo S P,et al.Inductive effects of nitrogen and phosphorus on allelopathic resistance ofMicrocystis aeruginosa[J].Journal of Northest A F University,2011,39(6): 122-134[叶良涛,钱家忠,左胜鹏,等.氮磷对铜绿微囊藻化感抗性的诱导效应.西北农林科技大学学报,2011,39(6): 122-134]
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