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31.
The role of biofilm proteins in modulating cyprid metamorphosis is not well understood. In the present investigation this possibility was explored by disrupting biofilm proteins using commercially available protease. The influence of natural biofilm and artificial biofilms of Aeromonas salmonicida salmonicida and Bacillus brevis and their culture supernatants and exopolysaccharides obtained under different nutritional conditions was evaluated. Natural biofilm facilitated cyprid metamorphosis in Balanus amphitrite, whereas monospecies biofilms did not. The treatment of biofilms with protease resulted in a decline in metamorphosis, except in B. brevis, where although metamorphosis was negated initially, it increased with the protease concentration and observation days. As the response of cyprids to exopolysaccharides produced by Asalmonicida salmonicida was dependent on protein concentration, protease treatment resulted in a decrease in metamorphosis, whereas in case of B. brevis biofilms, protease hydrolysis products could be important in providing settlement cues. Thus, biofilm bacterial components play an important role in the cyprid metamorphosis of Balanus amphitrite.  相似文献   
32.
Chlorophyll a-concentrations, AFWD (ash-free-dry-weight) and photosynthesis rates were estimated for periphyton assemblages in Amazonian black-and white-water habitats over 14 months. Cellulose-acetate strips were incubated in situ and showed few major differences in periphyton quality as compared to natural substrata. The only exceptions were submersed Igapó forest leaves, which exhibited higher proportions of green algae and cyanobacteria though not producing differences in total periphyton biomass. Enclosure experiments showed a considerable nutrient release by inundated non-senescent Igapó forest leaves. Periphyton biomass and productivity were found to be highest in black-and white water mixing zones, where biomass peaked at 41.6 mg Chla/m2 and 19.8 g/m2 AFDW. Production was estimated to be 380 gC/m2·a. Maximum biomass of periphyton in floating meadows was 46 mg Chla/m2 and 10.6 g/m2 AFDW, with an annual production of 170 gC/m2·a. Solimões main channel periphyton values were low: maximum Chla was 7.1 mg/m2, AFDW 0.8 g/m2 and annual production was estimated to be 30 gC/m2. Blackwater periphyton values were lower compared to whitewater and mixed water values but an enlarged trophogenic zone has to be taken into account. Highest Chla content reached 30.9 mg/m2, AFDW 1.43 g/m2. Estimated annual production was 110 gC/m2. Observed mean periphyton productivity of Amazonian blackwater habitats approximately corresponded to mesotrophic attached algae productivity in temperate zones, whereas productivity of whitewater periphyton approached those of temperate eutrophic lakes. The role of periphyton in the Amazon food web is discussed.  相似文献   
33.
用L-高丝氨酸内酯的氢溴酸盐与酰氯在Schotten-Baumann条件下反应,合成了6种N-酰基-L-高丝氨酸内酯类(AHLs)信号分子:N-丁酰基-L-高丝氨酸内酯、N-己酰基-L-高丝氨酸内酯、N-辛酰基-L-高丝氨酸内酯、N-癸酰基-L-高丝氨酸内酯、N-十二酰基-L-高丝氨酸内酯和N-十四酰基-L-高丝氨酸内酯,通过红外、核磁共振仪、气相-质谱联用仪对所有化合物进行了结构表征和纯度分析。同时检测合成的6种化合物对污损硅藻-柱鞘藻(Cylindrothecasp.)生长的影响,结果表明:合成的信号分子除侧链最短的N-丁酰基-L-高丝氨酸内酯外,其它在高浓度下均能抑制柱鞘藻的生长,其中C12-HSL和C14-HSL在较低浓度下对柱鞘藻的生长也具有明显的抑制效应。  相似文献   
34.
Structural and functional parameters of periphytic ciliate communities were studied for monitoring water quality in Korean coastal waters during April 2007. The PFES (polyurethane foam enveloped slide) system, a modified glass slide method, was used to analyze periphytic ciliate colonization in marine ecosystems. A total of 27 ciliate species were identified using living observation and silver impregnation method with this system. Although the ciliate colonizations had similar species composition, they represented considerable differences in both structural and functional parameters between the PFES system and the conventional slide system. The species diversity, evenness and the colonization rate (G) were distinctly higher, but the time for reaching 90% equilibrium species number (T90%) was shorter in the PFES system than those on the naked slides. Results suggest that the PFES system is more effective than the conventional slide method for periphytic ciliate colonization with high species diversity, evenness, and colonization rate in marine ecosystems.  相似文献   
35.
We describe a novel inexpensive method, utilizing particle image velocimetry (PIV) and refractive index‐matching (RIM) for visualizing and quantifying the flow field within bio‐amended porous media. To date, this technique has been limited to idealized particles, whose refractive index does not match that of fresh water and thus requires specialized and often toxic or hazardous fluids. Here, we use irregularly shaped grains made of hydrogel as the solid matrix and water as the fluid. The advantage of using water is that it provides, for the first time, the opportunity to study both hydraulic and biological processes, which typically occur in soils and streambeds. By using RIM coupled with PIV (RIM‐PIV), we measured the interstitial flow field within a cell packed with granular material consisting of hydrogel grains in a size range of 1–8 mm, both in the presence and in the absence of Sinorhizobium meliloti bacteria (strain Rm8530). We also performed experiments with fluorescent tracer (fluorescein) and fluorescent microbes (Shewanella GPF MR‐1) to test the capability of visualizing solute transport and microbial movements. Results showed that the RIM‐PIV can measure the flow field for both biofilm‐free and biofilm‐covered hydrogel grains. The fluorescent tracer injection showed the ability to visualize both physical (concave surfaces and eddies) and biological (biofilms) transient storage zones, whereas the fluorescent microbe treatment showed the ability to track microbial movements within fluids. We conclude that the proposed methodology is a promising tool to visualize and quantify biofilm attachment, growth, and detachment in a system closer to natural conditions than a 2D flow cell experiment.  相似文献   
36.
为明确柴达木盆地西部地区新生界微生物碳酸盐岩微观结构及主要造岩矿物的成因机理,本文利用岩芯观察、薄片分析、扫描电镜及电子探针分析等实验测试方法,对南翼山地区上油砂山组微生物碳酸盐岩微观结构、矿物特征差异性及矿化作用开展研究。分析认为南翼山地区上油砂山组发育厚层泥晶碳酸盐岩,单层厚度3~5 m;局部发育薄层微生物碳酸盐岩,单层厚度以30~50 cm为主,单层最大厚度2 m。微生物碳酸盐岩类型以凝块石为主、局部发育叠层石,二者混合共生,通过扫描电镜在微生物碳酸盐岩中发现了大量钙化的细胞外聚合物(EPS)组构与少量微生物化石,为湖相微生物碳酸盐岩的形成提供了生物学证据。研究结果表明:(1)微生物碳酸盐岩主要矿物类型为方解石,微观组构复杂、类型多样,包括球粒、团粒、菱面体以及片状结构等。球粒粒径分布范围50~80 nm。团粒由若干纳米级球粒聚合黏结形成,粒径为几微米至几十微米。片状方解石往往大小不等、形态各异,粒径通常为1~10μm。(2)发现大量钙化EPS组构及疑似微体化石,包括球状、杆状及丝状体。杆状体微生物化石直径约0.4μm,长0.5~1μm。丝状体微生物化石直径约0.3~0.5μm,...  相似文献   
37.
天然水体中泥沙颗粒表面容易生长生物膜,生物膜的生长会对泥沙颗粒的运动特性产生显著影响。设计了泥沙颗粒表面生长生物膜的实验,以及生长生物膜后泥沙颗粒的起动水槽实验。在水槽观测段分别放置由去离子水浸泡和天然水培养的两种泥沙,对比观察两种泥沙起动过程的区别,分析起动流速的差异和随培养时间的变化规律。结果表明,天然富营养水体中生物膜生长繁茂,对泥沙起动特性有着显著的影响,能够增强泥沙颗粒的抗冲性,并随时间呈现出先逐步增强到一个最优值后有所削弱的钟形曲线的变化趋势,表明在研究天然河流和湖泊尤其是污染严重的水域的泥沙起动时,需要考虑到生物膜的作用。  相似文献   
38.
副溶血弧菌(Vibrio parahaemolyticus)是一种嗜盐性革兰氏阴性菌, 广泛分布于海洋环境中, 能够引起肠胃炎、伤口感染以及败血症, 是人类重要的病原菌之一。宿主体内被认为是一种低铁环境, 能够激发致细菌的毒力。副溶血弧菌能够分泌弧菌素或利用外源铁载体来获取铁。在低铁条件下, 编码双组份调控系统的基因簇VPA0148-VPA0149转录上调, 使含铁肠杆菌素受体PeuA转录出有活性的蛋白。VPA0148编码产物为一个响应调节因子, 具有一个磷酸基团接收结构域和一个DNA结合结构域。本研究发现, VPA0148的缺失增强了菌株的生物膜形成能力和对斑马鱼的致死能力, 同时能够促进菌株在低铁环境中的生长, 并增强菌株的群集运动。研究结果表明含铁肠杆菌素受体调节蛋白VPA0148对副溶血弧菌致病力具有调控作用, 增进了对铁调节副溶血弧菌毒力机制的认识。  相似文献   
39.
天然水体中生物膜对水环境中磷的生物地球化学过程影响   总被引:2,自引:0,他引:2  
介绍了生物膜及其发育形成机理,生源要素磷与底泥、悬浮颗粒、藻类及细菌之间的相互作用,生物膜中微生物对生源要素磷循环的作用及其检测方法。通过对该领域近几年最新研究成果的总结,得出生物膜尤其是细菌对元素磷迁移转化的影响起着重要作用;对今后研究重点作出展望,在考虑生物膜存在的条件下,深入研究沉积物、悬浮颗粒、藻类及细菌与磷循环的相互作用机制,将有助于弄清楚水体富营养化发生的过程及机理。  相似文献   
40.
梅冥相 《古地理学报》2021,23(1):105-124
多样化的产出环境和30×108年的分布历史表明,鲕粒成因一直是一个谜一样的沉积学难题,争论的关键问题是其究竟是有机(微生物)成因还是无机成因。来自于华北地台寒武系苗岭统徐庄组鲕粒滩相灰岩顶部的方解石巨鲕表现出同心状、放射—同心状和泥晶质的沉积组构,在鲕粒核心和鲕粒皮层中保存着精美的葛万菌(Girvanella)化石所主导的光合作用生物膜的钙化作用残余物,这为研究鲕粒形成与光合作用生物膜之间复杂的成因联系提供了一个较为直接的微生物证据,因为葛万菌可相对较为肯定地类比于近代的钙化织线菌(Plectonema)丝状蓝细菌化石。所以说,在伴随着后生动物辐射的寒武纪蓝细菌繁盛的方解石海中,尽管形成放射状鲕粒皮层的放射纤维状方解石的沉淀作用机理还没有得到完全彻底的了解,但是这些巨鲕确实表现出光合作用生物膜诱发、滋养并促进了鲕粒形成的直接证据,进一步支持了“鲕粒沉积可以作为一种不同的微生物岩体系新类型”的重要科学理念。  相似文献   
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