25 resultados para Prorocentrum donghaiense


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Partial rDNA sequences of Prorocentrum minimum and Takayama pulchella were amplified, cloned and sequenced. and these sequence data were deposited in the GenBank. Eight oligonucleotide probes (DNA probes) were designed based on the sequence analysis. The probes were employed to detect and identify P. minimum and T. pulchella in unialgal and mixed algal samples with a fluorescence in situ hybridization method using flow cytometry. Epifluorescence micrographs showed that these specific probes labeled with fluorescein isothiocyanate entered the algal cells and bound to target sequences, and the fluorescence signal resulting from whole-cell hybridization varied from probe to probe. These DNA probes and the hybridization protocol we developed were specific and effective for P. minimum and T. pulchella, without any specific binding to other algal species. The hybridization efficiency of different probes specific to P. minimum was in the order: PM18S02 > PM28S02 > PM28S01 > PM18S01, and that of the probes specific to T. pulchella was TP18S02 > TP28S01 > TP28S02 > TP18S01. The different hybridization efficiency of the DNA probes could also be shown in the fluorescent signals between the labeled and unlabeled cells demonstrated using flow cytometry. The DNA probes PM18S02, PM28S02; TP18S02 and TP28S01, and the protocol, were also useful for the detection of algae in natural samples.

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本文研究了温度、盐度、PH、营养盐(N、P);维生素(B_(12)、B_1)、微量元素(Fe、Mn)、底泥抽提液和赤潮生物骨条藻与微型原甲藻生长的关系。结果表明,微型原甲藻增殖生长的适温范围为20-30 ℃,28 ℃时有最大生长率;最适盐度为10-35‰,25‰盐度生长率最高;PH 7.18-8.72范围内生长良好,影响不明显。N、P营养盐能促进微型原甲藻增殖生长,N盐以硝态氮效果最好,容易被吸收利用;氨盐为唯一N源时效果较差,浓度超过100uM时则有抑制作用;亚硝酸盐作用不明显。微型原甲藻主要是利用无机磷;有机磷作唯一P源时不能有效地被吸收利用,对微型原甲藻生长不利;维生素B_(12)促进微型原甲藻增殖生长效果明显,B_(12)与B_1综合效果更好;底泥抽提液、微量元素Fe、Mn都能有效地促进微型原甲藻增殖生长;研究证实底泥中腐植酸(HFA)虽有促进生长的作用,但效果尚不及抽提液,推测可能还有其他有效成分。研究发现中肋骨条藻有刺激微型原甲藻生长的作用,但其具体作用成分还有待研究。所得这些结果对进一步研究阐明微型原甲藻赤潮成因和机理有重要科学意义。

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Very little is known about how global anthropogenic changes will affect major harmful algal bloom groups. Shifts in the growth and physiology of HAB species like the raphidophyte Heterosigma akashiwo and the dinoflagellate Prorocentrum minimum due to rising CO2 and temperature could alter their relative abundance and environmental impacts in estuaries where both form blooms, such as the Delaware Inland Bays (DIB). We grew semi-continuous cultures of sympatric DIB isolates of these two species under four conditions: (1) 20 degrees C and 375 ppm CO2 (ambient control), (2)20 degrees C and 750 ppm CO2 (high CO2),(3) 24 degrees C and 375 ppm CO2 (high temperature), and (4) 24 degrees C and 750 ppm CO2 (combined). Elevated CO2 alone or in concert with temperature stimulated Heterosigma growth, but had no significant effect on Prorocentrum growth. P-Bmax (the maximum biomass-normalized light-saturated carbon fixation rate) in Heterosigma was increased only by simultaneous CO2 and temperature increases, whereas P-Bmax in Prorocentrum responded significantly to CO2 enrichment, with or without increased temperature. CO2 and temperature affected photosynthetic parameters alpha, Phi(max), E-k, and Delta F/F'(m) in both species. Increased temperature decreased and increased the Chl a content of Heterosigma and M Prorocentrum, respectively. CO2 availability and temperature had pronounced effects on cellular quotas of C and N in Heterosigma, but not in Prorocentrum. Ratios of C:P and N:P increased with elevated carbon dioxide in Heterosigma but not in Prorocentrum. These changes in cellular nutrient quotas and ratios imply that Heterosigma could be more vulnerable to N limitation but less vulnerable to P-limitation than Prorocentrum under future environmental conditions. In general, Heterosigma growth and physiology showed a much greater positive response to elevated CO2 and temperature compared to Prorocentrum, consistent with what is known about their respective carbon acquisition mechanisms. Hence, rising temperature and CO2 either alone or in combination with other limiting factors could significantly alter the relative dominance of these two co-existing HAB species over the next century. (c) 2007 Elsevier B.V. All rights reserved.

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于2006年5—11月对东海泉州湾赤潮监控区设定4个采样站位,进行赤潮常规监测。结果表明,泉州湾藻类优势种由中肋骨条藻(Skeletonema costatum)、太平洋海链藻(Thalassiosira pacifica)、微小原甲藻(Prorocentrum minimum)、尖刺拟菱形藻(Pseudo-nitzschia pungens)、丹麦细柱藻(Leptocylindrus danicus)及旋链角毛藻(Chaetoceros curvisetus)等赤潮生物组成,虽然中肋骨条藻为最主要的优势

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本工作采用单纯戊二醛、单纯四氧化锇、戊二醛加四氧化锇双固定及Ryter和Kellenberger的细菌类核体“标准固定方法”等四种固定方法,在尖尾藻与典型涡鞭毛虫双甲藻(Prorocentrum micans)、典型原核生物肠道细菌、眼虫(Euglean sp.)、典型真核细胞小鼠胸腺细胞之间比较了电镜下所观察到的染色体和类核体的固定特性。实验结果表明尖尾藻染色体的固定特性异于典型涡鞭毛虫染色体的固定特性。而与眼虫染色体的相同,与典型真核细胞异染色质的相似。这些结果支持关于重新确定尖尾藻分类地位的设想;实验结果还指出尖尾藻染色体和眼虫染色体在碱性蛋白被抽提尽后,它们的固定特性均与细菌类核体的相似,这提示除了染色体碱性蛋白或组蛋白的含量是染色体固定特性的一个决定因素外,染色体碱性蛋白与DNA纤维的结合方式也可能影响染色体的固定特性。

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Phase structures and transformation mechanisms of nonracemic chiral biological and synthetic polymers are fundamentally important topics in understanding their macroscopic responses in different environments. It has been known for many years that helical structures and morphologies can exist in low-ordered chiral liquid crystalline (LC) phases. However, when the chiral liquid crystals form highly ordered smectic liquid crystal phases, the helical morphology is suppressed due to the crystallization process. A double-twisted morphology has been observed in many liquid crystalline biopolymers such as dinoflaggellate chromosomes (in Prorocentrum micans) in an in vivo arrangement. Helical crystals grown from solution have been reported in the case of Bombyx mori silk fibroin crystals having the beta modification. This study describes a synthetic nonracemic chiral main-chain LC polyester that is able to thermotropically form helical single lamellar crystals. Flat single lamellar crystals can also be observed under the same crystallization condition. Moreover, flat and helical lamellae can coexist in one single lamellar crystal, within which one form can smoothly transform to the other. Both of these crystals possess the same structure, although translational symmetry is broken in the helical crystals. The polymer chain folding direction in both flat and helical lamellar crystals is determined to be identical, and it is always along the long axis of the lamellae. This finding provides an opportunity to study the chirality effect on phase structure, morphology, and transformation in condensed states of chiral materials. [S0163-1829(99)01042-5].

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Heterosigma akashiwo (Hada) is a fragile, fish-killing alga. Efforts to understand and prevent blooms due to this harmful species to mitigate the impact on aquaculture require the development of methods for rapid and precise identification and quantification, so that adequate warning of a harmful algal bloom may be given. Here, we report the development and application of rRNA and rDNA-targeted oligonucleotide probes for fluorescence in situ hybridization (FISH) to aid in the detection and enumeration of H. akashiwo. The designed probes were species specific, showing no cross-reactivity with four common HAB causative species: Prorocentrum micans Ehrenberg, P. minimum (Pavillard) Schiller, Alexandrium tarmarense (Lebour) Balech, and Skeletonema costatum (Greville) Cleve, or with four other microalgae, including Gymnodinium sp. Stein, Platy-monas cordiformis (Karter) Korsch, Skeletonema sp.1 Greville and Skeletonema sp.2. The rRNA-targeted probe hybridized to cytoplasmic rRNA, showing strong green fluorescence throughout the whole cell, while cells labeled by rDNA-targeted probe exhibited exclusively fluorescent nucleus. The detection protocols were optimized and could be completed within an hour. For rRNA and rDNA probes, about a corresponding 80% and 70% of targeted cells could be identified and quantified during the whole growth circle, despite the inapparent variability in the average probe reactivity. The established FISH was proved promising for specific, rapid, precise, and quantitative detection of H. akashiwo. (C) 2008 Elsevier B.V. All rights reserved.

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赤潮也称红潮,通常是指由于一些海洋浮游生物在水体中过度繁殖或聚集而使海水变色的现象。赤潮特别是有害赤潮造成了严重的生态环境问题,给水产养殖业和滨海旅游业造成了巨大损失,并可直接危害人类健康。研究赤潮,进而预防和控制赤潮,首先要对引发赤潮的生物种类进行准确鉴定并对自然水域的赤潮生物进行监控,并建立赤潮藻的快速鉴定与检测方法。本文分别对几株赤潮微藻进行了形态和系统进化分析,并探讨了荧光原位杂交在赤潮检测中的应用。 分别对5株分离自中国沿海不同水域的中肋骨条藻[Skeletonema costatum (Greville) Cleve]类似种 (SK-BH、SK-FQ、 SK-HH、SK-DH和SK-XM) 进行光镜和扫描电镜观察,并PCR扩增了转录内间隔区 (含5.8S rDNA)(ITS) 和核糖体大亚基 (D1-D2)区 (LSU),获得的序列与其它已报道的骨条藻的同源序列进行了进化分析,以探讨5株骨条藻与已报道的骨条藻之间的进化关系。5株骨条藻在形态上各不相同,其中,只有1株 (SK-XM)被鉴定为中肋骨条藻,而其余4株皆与已报道的骨条藻的形态学特征不符。ITS树和LSU树具有不同的拓扑结构,并表明5株骨条藻至少分属3个不同的种。遗传距离分析提示了在地理距离上靠近的种,在进化上也可能靠近。此外,还可以观察到这5株藻之间的细微的形态学“进化”关系。所有结果表明了中国沿海骨条藻属种的多样性。 对1株分离自赤潮水域的裸甲藻 (Gymnodinium)类似种进行了形态学分析,并探讨了该藻与裸甲藻、凯伦藻(Karena)、旋沟藻(Gyrodinium)、下沟藻(Karlodinium)和共生甲藻(Symbiodinium)的进化关系。光镜观察表明该藻具有裸甲藻的一些典型的形态学特征,而我们没能获得细胞形态保存完好的电镜样品;进化分析初步鉴定该藻为一种共生甲藻。 获得了赤潮异湾藻[Heterosigma akashiwo (Hada) Hada]的LSU和ITS序列,设计了以胞质rRNA和胞核rDNA为靶序列的特异性探针,建立了赤潮异湾藻的全细胞和细胞核荧光原位杂交技术,对探针的特异性进行了验证,并考察了杂交信号和检测率在整个细胞周期的变化情况。探针能分别使整个细胞和细胞核呈现明亮的绿色荧光。探针是特异性的,不与其它受试藻进行交叉反应。杂交信号在整个细胞周期内变化不明显,且检测率为70%–80%。整个检测过程不到1 h,能实现赤潮异湾藻的快速、准确、特异和半定量检测。 获得了海洋原甲藻(Prorocentrum micans Ehrenberg)的LSU和ITS序列,设计了以胞质rRNA为靶序列的特异性探针,建立了海洋原甲藻的全细胞荧光原位杂交技术,并对探针的特异性进行了验证。探针能使整个细胞呈现强烈的绿色荧光。探针不与其它受试藻种进行交叉反应,表明是特异性的。

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This study was carried out in the Changjiang Estuary from 19 to 26 May 2003. Based on the data collected from 29 stations, including two anchor stations, phytoplankton taxonomic composition, abundance, diurnal variability and spatial distribution were examined. Eighty-seven species, including 54 species of diatoms and 16 red tide causative species, were identified. Average diversity index (H') and evenness (J) values were 1.04 and 0.40, respectively. A bloom in abundance of certain phytoplankton species, especially Prorocentrum dentatum and Skeletoneina costatum, was thought to be the cause of the low diversity index and evenness values. Total phytoplankton abundance averaged 6.75 x 10(5) cells 1(-1), and was much higher than previous investigation carried out in the same month in 1986. Abundance increased seaward showing a distinct spatial difference, and the dominant species varied with salinity. Correlation between phosphorus and abundance further supported the former conclusion that phosphorus is the controlling factor in phytoplankton growth in the Changjiang Estuary where light is not limiting. Based on the relationship between DO, pH and abundance, it is likely that the bloom was caused by rapid in situ growth of phytoplankton with high nutrients and sufficient light. The data also indicated that the duration of the bloom was not long and

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A cruise was undertaken from 3rd to 8th November 2004 in Changjiang (Yangtze) River Estuary and its adjacent waters to investigate the spatial biomass distribution and size composition of phytoplankton. Chlorophyll-a (Chl-a) concentration ranged 0.42-1.17 mu g L-1 and 0.41-10.43 mu g L-1 inside and outside the river mouth, with the mean value 0.73 mu g L-1 and 1.86 mu g L-1, respectively. Compared with the Chl-a concentration in summer of 2004, the mean value was much lower inside, and a little higher outside the river mouth. The maximal Chl-a was 10.43 mu g L-1 at station 18 (122.67 degrees E, 31.25 degrees N), and the region of high Chl-a concentration was observed in the central survey area between 122.5 degrees E and 123.0 degrees E. In the stations located east of 122.5 degrees E, Chl-a concentration was generally high in the upper layers above 5 m due to water stratification. In the survey area, the average Chl-a in sizes of > 20 mu m and < 20 mu m was 0.28 mu g L-1 and 1.40 mu g L-1, respectively. High Chl-a concentration of < 20 mu m size-fraction indicated that the nanophytoplankton and picophytoplankton contributed the most to the biomass of phytoplankton. Skeletonema costatum, Prorocentrum micans and Scrippsiella trochoidea were the dominant species in surface water. The spatial distribution of cell abundance of phytoplankton was patchy and did not agree well with that of Chl-a, as the cell abundance could not distinguish the differences in shape and size of phytoplankton cells. Nitrate and silicate behaved conservatively, but the former could probably be the limitation factor to algal biomass at offshore stations. The distribution of phosphate scattered considerably, and its relation to the phytoplankton biomass was complicated.