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夏季高温时,养殖水体水华现象频繁发生,给养殖业带来巨大的损失。常见水生植物释放的活性物质在低浓度下可以起到抑藻作用,对藻类调控具有重要意义。本研究采用实验室静态模拟方法,取养殖池塘暴发蓝藻水华的水体,与沉水植物金鱼藻(Ceratophyllum demersum)及篦齿眼子菜(Potamogeton pectinatus)进行共培养,研究这2种沉水植物对养殖水华水体营养水平、藻类生长、藻类结构及浮游藻类生物多样性的影响。结果显示,金鱼藻和篦齿眼子菜可显著降低水华水体氮、磷等营养水平(P<0.05);金鱼藻和篦齿眼子菜可有效抑制水华蓝藻(Cyanobacteria)生长,尤其对颤藻和微囊藻(Microcystis sp.)效果显著(P<0.05),且篦齿眼子菜对水华蓝藻抑制效果更为显著。实验结束时,篦齿眼子菜培养组藻密度下降93.6%,生物量下降98.9%,叶绿素a含量下降60.5%;金鱼藻培养组藻密度下降72.5%,生物量下降86.8%,叶绿素a含量下降54.3%;金鱼藻和篦齿眼子菜的存在可促进养殖水体浮游藻类生物多样性增加,且金鱼藻提高浮游藻类生物多样性效果更显著。金鱼藻培养组浮游藻类生物多样性升高98.4%,篦齿眼子菜培养组浮游藻类生物多样性升高50.3%。本研究结果可为未来生态养殖提供理论依据和参考。  相似文献   
3.
《Journal of plant nutrition》2013,36(10-11):2197-2210
Abstract

The unicellular green alga Dunaliella was previously proposed as a model photosynthetic organism for adaptation to iron deficiency. The purpose of this study was to find out how iron limitation affects the structure and composition of the photosynthetic system of Dunaliella salina. Iron deprivation did not retard proliferation of D. salina cells, but was associated with a decrease in cell volume and chlorophyll content, and with a four‐fold reduction in iron content and a two‐fold increase in Cu content. Electron microscopic analysis revealed shrinkage of the chloroplast and decrease in stacked thylakoid membranes. Measurements of chlorophyll fluorescence induction in the presence of DCMU and of 77 K chlorophyll fluorescence emission spectra indicated gross changes in the photosynthetic efficiency of reaction centers and in the organization of their associated light harvesting antenna. Differential analysis of protein composition led to the identification of a major thylakoid membrane protein (Tidi), that was specifically induced under iron deprivation. Partial sequencing suggests that Tidi is a novel type of a chlorophyll a/b binding protein. These results clearly show that iron limitation is associated with extensive reorganization of the photosynthetic system in Dunaliella.  相似文献   
4.
通过对贵州岩下大鲵自然保护区藻类的生态分布情况进行调查,并且利用植物区系丰富性综合系数法对保护区内藻类植物的丰富性进行了评价。结果表明,绿藻和硅藻为保护区内优势种群,水塘和静水河中物种最丰富,该保护区内藻类的物种组成具有亚热带区系性质的特点,藻类丰富性相对贫乏。  相似文献   
5.
一种简易分离藻类的方法(英文)   总被引:1,自引:0,他引:1  
[目的]改进藻类分离方法。[方法]采自天然淡水水体,水样经孔径大小合适的细胞筛过滤,除去浮游动物、浮游植物,得到天然培养液。该培养液的成分未变,适合藻类生长。用显微镜观察并估计水样中藻类密度(假如其密度过大,则可以用蒸馏水适当稀释),取适量水样接种到天然培养液中,用通气膜将瓶口封好,进行预培养。取微量经预培养的藻液,接种于藻类通用培养液中,进行再培养,直至分离出藻类。[结果]采用此方法从南宁一小型淡水水体中分离出12类藻(均粗分到属),其中蓝藻门5类(色球藻、微囊藻、蓝纤维藻、鱼腥藻、螺旋藻)、硅藻门1类(辐节藻)、绿藻门6类(衣藻、弓形藻、多芒藻、小球藻、纤维藻、栅列藻)。[结论]此法中所用的天然培养液,其营养成分没改变,更有利于藻类的生长。与传统的稀释法相比,采用液体培养液直接培养分离,操作更简便,有利于运动性强藻类的分离。此法的不足之处在于分离结果缺乏直观性。  相似文献   
6.
To compliment the current subirrigation systems used for production of potted plants, a nutrient-flow wick culture (NFW) system was developed and compared with other subirrigation systems, such as an ebb and flow culture (EBB) system and a nutrient-stagnant wick culture (NSW) system in relation to their system characteristics and plant growth. Kalanchoe (Kalanchoe blossfeldiana cv. New Alter) was cultivated in a 6 cm pot for 10 weeks in each subirrigation system. The water-absorption pattern of the medium, water content of the medium, water loss, algal growth, salt-buildup and plant growth under various culture systems were observed. The water contents of medium under the NFW and EBB systems showed fluctuations from 30 to 40% and from 50 to 60% (by volume), respectively, whereas the water content under the NSW system gradually increased to over 40% without fluctuation. Relative to other systems, the water loss in the NFW system was 50–70% due to the reduction in the evaporation from the surfaces of the trough and medium. Algae appeared in the NSW system because the nutrient solution was always stagnant in the trough, while it was not observed under the NFW system. The dissolved oxygen in the nutrient solution was the highest during the irrigation period and the salinity in the medium was the lowest in the NFW system. With regard to system characteristics, the NFW system was simple, water-saving and efficient. In addition, the growth of kalanchoes in the NFW system was similar to those in the NSW and EBB systems at an irrigation frequency of five times a day.  相似文献   
7.
2022年夏季,长江流域遭遇了罕见的“汛期反枯”极端水文事件,在此期间,汉江中下游首次发现了蓝藻水华。本研究选取叶绿素a浓度作为衡量水华的关键指标,基于偏最小二乘回归(Partial least squares regression,PLSR)量化了不同环境因子对2022年夏季汉江中下游(仙桃、宗关断面)水华生消的贡献率。结果表明:(1)仙桃和宗关断面叶绿素a浓度与溶解氧、pH值和水温均呈现出显著的正相关关系。溶解氧、pH值和水温对2022年夏季汉江中下游水华生消的贡献程度最高,三者对仙桃和宗关断面水华生消的贡献率分别为15.18%、13.68%、14.50%和18.06%、15.93%、15.65%。(2)基于偏最小二乘路径模型(Partial Least Squares Path Modeling,PLS-PM),本研究进一步解析了各环境因子对叶绿素a浓度变化的影响路径。结果表明气象因子是2022年夏季汉江中下游蓝藻水华暴发的诱导因子,高温无雨的极端天气导致水温和pH上升,加速了藻类的代谢反应速率。同时,河道流量减小延长了有机物和营养盐的传输和滞留时间,为藻类生长提供了稳定的营养条件。并且水华“萌发”时段可能与汉江中下游“涝旱急转”时段重叠。因此,本文建议下一步研究应结合准确的中长期气象预报信息,在“涝旱急转”时段实时优化汉江中下游水华防控调度的下泄流量与下泄时机,这将有可能大大提高水华防控的效率和效果。  相似文献   
8.
通过壳聚糖-超纯磁铁矿粉磁聚物对低浓度生活污水化学强化一级处理并利用磁场将絮体收集实验得出,引入蓝藻充当媒介,可使絮体大而密实,有助于水体污染物的去除。引入超纯磁铁矿粉,可使形成的絮体带有强磁性,便于借助外磁场快速移出水体,从而为固液分离提供一种新的工艺思路。  相似文献   
9.
Rotifers, Brachionus plicatilis, fed baker's yeast and a lipid emulsion (High DNA Super Selco, INVE Aquaculture NV Systems SA, Belgium), were harvested and fed Isochrysis galbana for 72 h, the nutrient composition was analysed during this period. The enrichment effect on the rotifers following transfer to I. galbana was most pronounced for ascorbic acid and thiamin. I. galbana seemed to contribute very little as a source of the lipid-soluble vitamins. Most of the minerals and trace elements were unaffected by the transfer to I. galbana, but Fe, Mn, As and Cd increased, Cu and Ni decreased whereas the effect on Cr and Mo were uncertain. The fatty acid composition of the rotifers changed towards the composition of I. galbana during the experimental period. Intermediate glycogen levels were measured in the rotifers at all sampling times. With the exception of lysine, serine and proline, all amino acid levels seemed to be unaffected by the transfer to I. galbana. This study showed that transfer of rotifers to microalgae (I. galbana) feeding had a positive effect on nutritional value. Macronutrients were maintained at adequate levels, and algal feeding improved the nutritional quality of rotifers with respect to water-soluble vitamins. Changes in rotifer nutrient composition are discussed in relation to nutritional requirements of fish larvae.  相似文献   
10.
Analysis of nutrient flows in integrated intensive aquaculture systems   总被引:12,自引:0,他引:12  
This paper analyses nutrient conversions, which are taking place in integrated intensive aquaculture systems. In these systems fish is cultured next to other organisms, which are converting otherwise discharged nutrients into valuable products. These conversions are analyzed based on nitrogen and phosphorous balances using a mass balance approach. The analytical concept of this review comprises a hypothetical system design with five modules: (1) the conversion of feed nutrients into fish biomass, the “Fish-Biomass-Converter”; (2) the separation of solid and dissolved fish waste/nutrients; the “Fish-Waste-Processor”; (3) the conversion of dissolved fish waste/nutrients, the “Phototrophic-herbivore-Converter”; (4 and 5) the conversion of solid fish waste, the “Bacterial-Waste-Converter”, or the “Detrivorous-Converter”. In the reviewed examples, fish culture alone retains 20–50% feed nitrogen (N) and 15–65% feed phosphorous (P). The combination of fish culture with phototrophic conversion increases nutrient retention of feed N by 15–50% and feed P by up to 53%. If in addition herbivore consumption is included, nutrient retention decreases by 60–85% feed N and 50–90% feed P. This is according to the general observation of nutrient losses from one trophic level to the next. The conversion of nutrients into bacteria and detrivorous worm biomass contributes only in smaller margins (e.g. 7% feed N and 6% feed P and 0.06% feed N 0.03 × 10−3% feed P, respectively). All integrated modules have their specific limitations, which are related to uptake kinetics, nutrient preference, unwanted conversion processes and abiotic factors.  相似文献   
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