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31.
Water samples were collected in order to study the spatial variation of photosynthetic pigments and phytoplankton community composition in the Lembeh Strait(Indonesia) and the Kelantan River Estuary(Malaysia)during July and August 2016, respectively. Phytoplankton photosynthetic pigments were detected using high performance liquid chromatography combining with the CHEMTAX software to confirm the Chl a biomass and community composition. The Chl a concentration was low at surface in the Lembeh Strait, which it was 0.580–0.682 μg/L, with the average(0.620±0.039) μg/L. Nevertheless, the Chl a concentration fluctuated violently at surface in the Kelantan River Estuary, in which the biomass was 0.299–3.988 μg/L, with the average(0.922±0.992) μg/L. The biomass at bottom water was higher than at surface in the Kelantan River Estuary, in which the Chl a concentration was 0.704–2.352 μg/L, with the average(1.493±0.571) μg/L. Chl b, zeaxanthin and fucoxanthin were three most abundant pigments in the Lembeh Strait. As a consequence, phytoplankton community composition was different in the two study areas. In the Lembeh Strait, prasinophytes(26.48%±0.83%) and Synechococcus(25.73%±4.13%) occupied ~50% of the Chl a biomass, followed by diatoms(20.49%±2.34%) and haptophytes T8(15.13%±2.42%). At surface water in the Kelantan River Estuary, diatoms(58.53%±18.44%)dominated more than half of the phytoplankton biomass, followed by Synechococcus(27.27%±14.84%) and prasinophytes(7.00%±4.39%). It showed the similar status at the bottom water in the Kelantan River Estuary,where diatoms, Synechococcus and prasinophytes contributed 64.89%±15.29%, 16.23%±9.98% and 8.91%±2.62%,respectively. The different phytoplankton community composition between the two regions implied that the bottom up control affected the phytoplankton biomass in the Lembeh Strait where the oligotrophic water derived from the West Pacific Ocean. The terrigenous nutrients supplied the diatoms growing, and pico-phytoplankton was grazed through top down control in the Kelantan River Estuary. 相似文献
32.
通过研究大洋锰结核经氨浸工艺提取Co,Ni,Cu等有价金属后的粉末状固体残渣(氨浸渣)对石英-长石-高岭土3组分陶瓷体系烧结行为及制品性能的影响发现:3组分体系中添加不超过10%的氨浸渣,在1140℃烧结90min,烧结体的抗折强度大于65.9MPa,吸水率小于0.128%.达到JC/T665-1997规定的要求。氨浸渣的助熔效果明显,添加5%~10%即可降低3组分陶瓷烧结温度40℃~80℃,添加量过多(超过10%)会增加熔体相含量.易引起坯体过烧,不利于坯体致密化和烧成工艺控制。添加氨浸渣,烧结体呈灰白色一黄褐色,且烧结体颜色随氨浸渣含量增加而变深。研究认为,氨浸渣可以作为石英-长石-高岭土3组分陶瓷的助熔剂和色料。 相似文献
33.
为明确各环境因子对盐生杜氏藻生长的影响是否存在交互作用及其影响的程度,采用3因素2水平正交试验方法,以7天批次培养获得的比生长速率为评价指标,研究了盐度(A)、光照强度(B)、温度(C)及两因素交互作用A×B、A×C、B×C对细胞增殖速率的影响,并测定了各条件下光合放氧速率、呼吸耗氧速率、叶绿素荧光及色素含量等以阐释作用机制。结果表明:温度是影响藻细胞增殖的最显著因素,其次是盐度与光照,交互作用B×C、A×C对绿色盐藻细胞生长有一定作用,但影响程度不如单一因子。确定利于盐藻细胞增殖的最优条件为:温度30℃、盐度110、光照强度120 μmol·m-2·s-1,而利于类胡萝卜素积累的条件则需将盐度提升至160。温度、光照通过影响光合放氧速率,而盐度通过影响呼吸耗氧速率调控藻细胞生长。 相似文献
34.
35.
太湖蓝藻中天然色素的分离提取及测定 总被引:11,自引:2,他引:9
本文对太湖蓝藻中的叶绿素,胡萝卜素,藻蓝素等天然色素进行分离提以,并运用紫外可见分光光度法对色素含量进行测定;最后对色素在食品,化妆品等方面的应用进行了初步探讨。 相似文献
36.
37.
The unicellular cyanobacterium Synechocystis sp. PCC 6803, a model organism known for its unique combination of highly desirable molecular genetic, physiological and morphological characteristics, was employed in the present study. The species was cultured in BG11 liquid medium contained various initial concentrations of Pb2+ and Cd2+ (0, 0.5, 1, 2, 4, 6 and 8 mg/L). The experiment was conducted for six days and the metal induced alterations in the ultrastructure, growth and pigment contents were assessed. Alterations in the ultrastructure of the Synechocystis sp. PCC 6803 ceils became evident with the increased (>4 mg/L Pb2+) metal concentration. The photosynthetic apparatus (thylakoid membranes) were found to be the worst affected. Deteriorated or completely destroyed thylakoid membranes have made large empty spaces in the cell interior. In addition, at the highest concentration (8 mg/L pb2+), the polyphosphate granules became more prominent both in size and number. Despite the initial slight stimulations (0.2, 3.8 and 6.5% respectively at 0.5, 1 and 2 mg/L Pb2+), both metals inhibited the growth in a dose-dependent manner as incubation progressed. Pigment contents (chlorophyll a, βcarotene and phycocyanin) were also decreased with increasing metal concentration. Cells exposed to 6 mg/L Pb2+, resulted in 36.56, 37.39 and 29.34% reductions of chlorophyll a, β carotene and phycocyanin respectively over the control. Corresponding reductions for the same Cd2+concentrations were 57.83, 48.94 and 56.90%. Lethal concentration (96 h LC50) values (3.47 mg/L Cd2+ and 12.11 mg/L Pb2+) indicated that Synechocystis sp. PCC 6803 is more vulnerable to Cd2+ than Pb2+. 相似文献
38.
应用高效液相色谱结合二极管阵列检测器分析技术,研究了西太平洋雅浦Y3海山区域2014年冬季浮游植物的光合色素组成。结果表明:100m以浅,玉米黄素(Zeax)是水柱中浓度最高的光合色素,浓度为22.64—84.31ng/L,叶绿素a(chl a)浓度在水柱中均值为(37±34) ng/L,在贫营养海区的数值范围内,水柱积分高值分布区与海山走向一致,二乙烯基叶绿素a(Dvchl a)和19''-丁酰氧岩藻黄素(19''BF)也是调查海区较高浓度的色素,在水柱中均值分别为(27±22)和(31±30) ng/L。其他色素新黄素(Neox)、叶黄素(Lute)、叶绿素b(chl b)、青绿素(Pras)平均水柱含量极低(<1.00ng/L)。通过CHEMTAX程序因子分析估算了浮游植物群落结构,调查区浮游植物群落以原绿球藻为优势藻,贡献率与环境因子不具有相关性,其次主要为蓝细菌和金藻,蓝细菌贡献率高值区分布在海山东南和东北侧0和30m水层,金藻贡献率高值区分布在75和100m水层,两者贡献率均与环境因子显著相关。 相似文献
39.
在胶州湾沿海采取泥样和水样,从中分离了300余株海洋链霉菌(marine Streptomyces),并对其生理生化性质作了初步研究,建立了胶州湾海洋链霉菌菌种库。在该菌种库中,约有3%的菌株可产生天然蓝色素。其中一株海洋链霉菌(marine Streptomycessp.)M259能够高产天然蓝色素。M259对绿脓杆菌(Pseudomonas areuginosa)、隐球菌(Crytococcal meningitis)有较强的抑菌活性。对其生理生化性质进行了鉴定,结果表明它可以利用可溶性淀粉、甘油、蔗糖、甘露醇、葡萄糖、D-半乳糖、果糖、阿拉伯糖、肌醇、木糖、D-甘露糖、核糖等碳源;能利用大部分氮源,尤其对酵母粉的利用很显著;最适生长pH为7.0~7.4;最适培养温度为28~30℃。结果提示它属于蓝色类群,并与天蓝色链霉菌(Streptomyces cyanogenus)和产蓝链霉菌(Streptomyces ceolicolor)亲缘关系最为密切。此外还优化了M259的发酵培养基和培养条件,使得蓝色素在摇瓶条件下,OD590达到7.74。通过对M259所产蓝色素性质的研究,发现此色素水溶性较强,耐热性较好,在酸性条件下呈红色,在碱性条件下呈蓝色。此外,毒性实验的结果表明所提纯的蓝色素没有毒性,为进一步开发和利用该色素提供了可能。 相似文献
40.
Anne M. Slaughter Stephen M. Bollens Gretchen Rollwagen Bollens 《Deep Sea Research Part II: Topical Studies in Oceanography》2006,53(25-26):3099
Mesozooplankton (>200 μm) grazing impact (% phytoplankton standing crop consumed d−1) was determined by the gut fluorescence method during three springs (2000, 2001 and 2002) and two winters (2002 and 2003) in a coastal upwelling region off northern California. Wind events, in terms of both magnitude and duration, varied inter-annually and seasonally and included both upwelling-favorable and relaxation events. Grazing impact of mesozooplankton also varied inter-annually and seasonally, and was highest during June 2000 (mean=129% of standing crop d−1), a prolonged period of wind “relaxation” and phytoplankton bloom. In contrast, mean grazing impact was lower during periods of stronger, more persistent winds, more active upwelling, greater cross-shelf transport, and lower chlorophyll concentration (25% and 38% in May–June 2001 and 2002, respectively). Wintertime conditions (January 2002 and 2003) were characterized by weakly upwelling or downwelling-favorable winds, low chlorophyll concentration, and lower mean mesozooplankton grazing impact (13% and 12%, respectively). The larger (>500 μm) size class contributed proportionally more to total mesozooplankton (>200 μm) grazing impact than the smaller (200–500 μm) size class during all sampling periods except spring 2002. These results suggest that mesozooplankton grazing impact is higher in spring than in winter, and that during the spring upwelling season, grazing is higher during periods of wind relaxation (weak upwelling) than during periods of stronger upwelling. Further, these results suggest an important role of mesozooplankton grazers on phytoplankton dynamics in the upwelling region off northern California. 相似文献