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1.
沉水植物化感作用控藻能力评述   总被引:21,自引:0,他引:21  
沉水植物所释放的化学物质对藻类的抑制作用是浅水湖泊维持清水状态的机制之一.本文从具有化感活性的沉水植物在湖泊中出现的频度、盖度、化感物质的种类、抑藻效应等方面对化感控藻进行了评述.已有研究结果表明:穗花狐尾藻、金鱼藻、伊乐藻等是具有很高活性的沉水植物,尤其是在其生物量达到一定程度,且湖泊中的优势藻为较敏感的种类时,沉水植物分泌的化感物质对浮游藻类的抑制作用更强;沉水植物释放的多酚类等化感物质具有控藻能力;化感物质对于不同种类藻的抑制作用具有选择性,蓝藻和硅藻比绿藻更为敏感,附生藻类通常比浮游藻类具有更高的耐受性;环境因素如光照、营养限制、温度等会显著影响沉水植物化感作用效果.沉水植物的化感控藻研究尚处于初始阶段,关于环境因素对化感作用的影响、化感物质的分离鉴定、选择性抑藻机理以及化感物质代谢途径等方面还有待深入、全面的研究.  相似文献   

2.
利用植物化感作用抑制有害藻类生长的方法具有生态安全性好、快速高效等优点, 为有效控制有害藻类的爆发提供了新思路。论文从化感作用的概念、化感抑藻机理、陆生植物对藻类的化感抑制作用、水生植物对藻类的化感抑制作用等方面进行了论述, 并对植物化感作用抑藻技术的研究方向进行了展望, 提出对化感物质在环境中的降解特性、化感物质选择性抑藻机理及具有活性的化感物质的人工合成等方面需要做更深入的研究。  相似文献   

3.
抑制藻类繁殖,控制水华爆发,是对富营养化水体完成生态修复过程中面临的首要挑战,如何高效安全的抑藻是亟待解决的问题.利用植物化感作用控制富营养化水体中有害藻类大量繁殖是有效的手段之一,但是利用陆生植物化感物质进行抑藻的研究较少.本文从草本植物(菊科/罂粟科、百合科、禾本科)、木本植物以及中草药类植物三大类详细介绍了陆生植物对水华爆发中的主要藻类铜绿微囊藻的抑制效应,并且针对化感物质的分离鉴定和物质基础、作用机制等进行阐述,最后对利用陆生植物化感物质开发抑藻剂的研究思路和注意问题提出了建议.  相似文献   

4.
淡水水生植物化感作用研究进展   总被引:30,自引:1,他引:29  
水生植物的化感作用对淡水生态系统中水草的可持续管理和湖泊富营养化的生态控制具有非常重要的意义。本文综述了淡水水生植物化感作用的发展历史和研究现状,讨论了水生植物化感作用研究过程中所涉及的实验方法、生物测试方法、化感物质分离方法以及影响水生植物化感研究的环境因素。抑藻圈试验、藻类生长试验和浮萍生长试验是常用的生物测试方法;采用共生培养或单独培养的方法,从种植水中分离、鉴定化感物质,对证实复杂水环境中水生植物化感作用的存在,研究它们化感物质的释放途径和作用机理都具有十分重要的作用。  相似文献   

5.
植物化感抑藻的作用机理   总被引:5,自引:0,他引:5  
对植物化感物质抑藻机理,即化感物质影响藻细胞的光合作用、破坏细胞膜、改变细胞酶活性、影响细胞超微结构及基因表达等几个方面进行了综合评述。研究表明,化感物质主要通过降低叶绿素a含量,破坏光合系统Ⅱ,使细胞膜结构裂解,酶活性改变,抗氧化系统破坏,细胞膜内超微结构受损,基因表达异常等几个方面来抑制藻细胞的分裂或直接杀死藻细胞,从而减少藻细胞数量,抑制藻类的生长。未来应该从更微观角度,即基因表达、分子和遗传机制等方面对化感抑藻机理进行深入研究,以期为开发安全、高效的抑藻化感物质提供理论基础。  相似文献   

6.
沉水植物中挥发性物质对铜绿微囊藻的化感作用   总被引:12,自引:0,他引:12  
鲜啟鸣  陈海东  邹惠仙  尹大强 《生态学报》2006,26(11):3549-3554
比较了两种淡水沉水植物金鱼藻和苦草中挥发性物质对铜绿微囊藻的化感抑制作用,在100mg/L浓度下,新鲜植物挥发油的抑藻作用非常显著,两种植物抑藻活性相近,但是在干粉材料中金鱼藻挥发油的抑藻活性明显强于苦草,且挥发油浓度与抑藻活性呈正相关。不同植物之间以及新鲜植物和植物干粉之间挥发油的成分和相对含量差别较大,新鲜植物挥发油中含有40%的邻苯二甲酸酯,而在于粉挥发油中70%为脂肪族化合物和萜类物质。在新鲜植物挥发油中约占20%的是不稳定的未知物,其化学结构和生物活性有待进一步研究。  相似文献   

7.
沉水植物是水生态系统的重要组成部分,在维持水生态系统结构和功能方面具有重要作用1,其中的一个重要机制就是通过释放化感物质抑制藻类生长,从而保持水体的清水稳态2。    相似文献   

8.
伊乐藻生物碱的GC-MS分析及其对铜绿微囊藻的化感作用   总被引:6,自引:1,他引:6  
藻类暴发性生长是水体富营养化带来的环境问题之一,利用植物化感作用抑制藻类生长作为一种新型的生物抑藻技术在近年来开始受到研究者的重视,并取得了一定的研究成果。文章采用GC-MS联用技术鉴定出伊乐藻中的9种生物碱成分,还研究了其总生物碱对铜绿微囊藻的化感作用。结果发现添加总生物碱的处理组中铜绿微囊藻生物量均受到了抑制,在总生物碱的浓度为62.0mg/L时,3d后铜绿微囊藻的抑制率为44.0%,表明伊乐藻总生物碱对铜绿微囊藻的生物量增长具有明显的抑制作用。该结论为通过沉水植物恢复富营养化水体提供了重要依据。    相似文献   

9.
环境胁迫下植物的化感作用及其诱导机制   总被引:111,自引:9,他引:111  
孔垂华  徐涛  胡飞  黄寿山 《生态学报》2000,20(5):849-854
植物化感作用是生态学研究中一个十分活跃的领域,对植物为什么和在什么条件下释放化感物质这一重要问题有不同的认识。在对环境胁迫下植物化感作用的变化及环境胁迫因子对化感物质听诱导机制等方面进行了评述后,指出植物化感化质的产生和释放是植物在环境胁迫的选择压力下形成的,植物化感作用是植物在进化过程中产生的一种对环境的适应性机制。  相似文献   

10.
通过测定藻细胞密度,研究了5种红树植物木榄、秋茄、海漆、海芒果、小花老鼠簕水提物对赤潮藻球形棕囊藻和赤潮异弯藻的化感抑制效应,探讨了高温处理对化感抑藻效应的影响.研究结果表明,红树植物干粉水提物和新鲜组织水提物对两种赤潮藻均显示出显著的化感抑制作用.第5 d,红树植物干粉水提物对2种赤潮藻的抑制效果依次为:海漆>秋茄>小花老鼠簕>木榄>海芒果.新鲜组织水提物抑藻效果最强的红树植物是木榄和秋茄.秋茄和海漆水提物中的抑藻化感物质对高温相对不稳定,木榄和小花老鼠簕水提物中的抑藻化感物质对高温相对比较稳定.  相似文献   

11.
Inhibition of phytoplankton by allelochemicals released by submerged macrophytes is supposed to be one of the mechanisms that contribute to the stabilisation of clear-water states in shallow lakes. The relevance of this process at ecosystem level, however, is debated because in situ evidence is difficult to achieve. Our literature review indicates that allelopathically active species such as Myriophyllum, Ceratophyllum, Elodea and Najas or certain charophytes are among the most frequent submerged macrophytes in temperate shallow lakes. The most common experimental approach for allelopathic interference between macrophytes and phytoplankton has been the use of plant extracts or purified plant compounds. Final evidence, however, requires combination with more realistic in situ experiments. Such investigations have successfully been performed with selected species. In situ allelopathic activity is also influenced by the fact that phytoplankton species exhibit differential sensitivity against allelochemicals both between and within major taxonomic groups such as diatoms, cyanobacteria and chlorophytes. In general, epiphytic species apparently are less sensitive towards allelochemicals than phytoplankton despite living closely attached to the plants and being of key importance for macrophyte growth due to their shading. Light and nutrient availability potentially influence the sensitivity of target algae and cyanobacteria. Whether or not additional stressors such as nutrient limitation enhance or dampen allelopathic interactions still has to be clarified. We strongly propose allelopathy as an important mechanism in the interaction between submerged macrophytes and phytoplankton in shallow lakes based on the frequent occurrence of active species and the knowledge of potential target species. The role of allelopathy interfering with epiphyton development is less well understood. Including further levels of complexity, such as nutrient interference, grazing and climate, will extend this ecosystem-based view of in situ allelopathy.  相似文献   

12.
植物化感物质对种子萌发的影响   总被引:44,自引:1,他引:43  
所有的化感物质都对一些植物的种子萌发产生影响.本文介绍了植物化感作用和化感物质的定义,化感物质的释放方式和种类,然后重点综述了化感物质影响种子萌发的作用机理、内外因素和生态学意义.化感物质通过影响细胞膜透性、细胞分裂生长和分化、呼吸作用、蛋白质合成、基因表达、激素合成和平衡,最终影响种子萌发.化感物质对种子萌发的影响与化感物质的种类、浓度、受体植物种类和环境条件等有关.  相似文献   

13.
Allelopathic inhibition of epiphytes by submerged macrophytes   总被引:1,自引:0,他引:1  
The hypothesis that epiphytes are more vulnerable to allelochemicals released by submerged macrophytes than phytoplankton was tested by measuring growth and photosystem (PS) II activity of three common epiphytic algae and cyanobacteria in coexistence with Myriophyllum spicatum using dialysis tubes. Results were compared with earlier experiments on planktonic species. Contrary to the planktonic species, the tested epiphytes, the green algae Stigeoclonium tenue, the diatom Gomphonema parvulum and the cyanobacterium Oscillatoria limosa, were not significantly inhibited by M. spicatum. Growth and PS II activity of O. limosa were even significantly enhanced by M. spicatum, but this effect disappeared under phosphorus-deficiency due to the allelopathically induced inhibition of the alkaline phosphatase activity or phosphorus leakage by the macrophytes. My findings of a lower vulnerability of epiphytes against allelopathic substances of submerged macrophytes are supported by results of a literature survey.  相似文献   

14.
Allelopathy, here defined as biochemical interactions between aquatic primary producers, has always been intriguing as a process explaining the dominance of certain plant or algal species over others. Negative chemical interference has been invoked as one of the steering mechanisms behind mutual dominance of either submerged macrophytes or phytoplankton in shallow eutrophic lakes. Yet, despite much effort, convincing evidence for allelopathic interactions in situ is still missing. Also, laboratory approaches often lack reality. Inspired by a series of talks at the Shallow Lakes 2005 meeting in Dalfsen, the Netherlands, we argue that there is circumstantial but strong evidence that allelopathic interference between submerged macrophytes and phytoplankton may indeed exist in aquatic ecosystems despite the problems associated with research in this field. We first discuss experimental approaches combining laboratory and field studies, based on examples presented at this meeting. We then discuss the impact of nutrient status of both producing and target organism and biotic factors such as herbivory or pathogens that might affect allelopathy. Further topics are the potential seasonality of effects and the species-specificity of certain allelochemicals. We conclude with some thoughts why a final proof for allelopathy in situ might remain difficult or even inaccessible in some cases, and why we nevertheless should not abandon this idea.  相似文献   

15.
世界范围内的蓝藻水华持续威胁着水生生态系统功能和人类健康,化感物质凭借其环境安全和对微藻有特异毒性等特征可以短期抑制蓝藻水华的暴发和生长。文章分别概括了酚类化合物、含氮化合物、脂肪酸/酯类、萜类化合物四类化感物质及其衍生物对蓝藻的杀藻效果、潜在机制及特异作用靶点,并依据高效抑藻化感物质(EC50<10 mg/L)的经济成本进一步预估其实际应用潜能。结果表明,单独胁迫下的各类化感物质具不同抑藻特性:脂肪酸/酯类的性价比最优,能以较少剂量对蓝藻产生极强毒性,对蓝藻多样的作用靶点是其具有极强抑制效果的关键,可在0.015—52.95 mg/L浓度范围内将目标蓝藻抑制50%;酚类化合物总数最多、活性普遍较高,半数效应浓度(EC50)为0.05—162.53 mg/L,可通过抑制光合作用、破坏细胞氧化应激平衡和损害细胞壁/膜结构等多种机制抑制蓝藻生长,但高效杀藻酚类化合物的理论成本差异较大,性价比次于脂肪酸位于第二位;含氮化合物对蓝藻生长存在特异性和均匀高效的杀藻作用, EC50集中于0.3—8.14 mg/L,主要通过破坏...  相似文献   

16.
Local species richness can be affected by both the dispersal process and by environmental conditions (species sorting process). The evaluation of the relative roles of these two processes contributes not only to further understanding of the mechanisms determining species richness but also to biodiversity conservation. We studied the relative importance of hydrological dispersal and water chemistry for species richness of submerged and floating‐leaved macrophytes using 31 sets of interconnected ponds with different numbers of component ponds (defined as connection class). Connection class was slightly more important than, or equally important to, water chemistry in determining species richness of floating‐leaved macrophytes. In contrast, submerged macrophyte richness was much more influenced by water chemistry than by connection class, although increasing connection class had some positive effect. Similarly, the occurrence of a particular species of submerged macrophyte was better explained by pond water chemistry than by the occurrence of the same species in the pond immediately upstream. The reverse was true for floating‐leaved macrophytes; the presence of a given species was better explained by its presence in the pond immediately upstream than by water chemistry. These results indicated that the relative importance of the two processes that shape the species richness of aquatic plants is a consequence of the growth form of the plants. However, both the dispersal process via hydrologic connection and species sorting by water chemistry play some role in determining the species richness of both floating‐leaved and submerged macrophytes.  相似文献   

17.
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