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1.
南海永乐龙洞位于西沙群岛永乐环礁,是迄今为止发现的最深的海洋蓝洞,水文环境及理化因素特殊,90 m以下水体为无氧环境。为研究永乐龙洞浮游植物的群落组成及其昼夜变化,于2017年3月在龙洞、潟湖及外礁坡进行浮游植物样品采集。研究结果表明:龙洞内叶绿素a浓度呈现随深度先增大后减小的趋势,日间浓度最大值层出现在40 m层(0.42μg/L),夜间则出现在20 m层(0.59μg/L)。永乐龙洞微微型浮游植物丰度介于1.1×10^3~5.1×10^4 cells/mL。聚球藻在上层水体占优势(0~20 m),40 m以下水层原绿球藻丰度对微微型浮游植物丰度贡献率最大(90%以上),微微型真核浮游植物丰度在整个水体都较低(除20 m层)。微微型浮游植物昼夜存在明显差异,夜间其丰度最大值层为20 m层,日间则上移至表层。本研究共记录微型和小型浮游植物5门41属55种(含未定种)。其中,硅藻门25属34种、甲藻门12属15种、金藻门1属1种、蓝藻3属、隐藻1属。微型和小型浮游植物丰度介于3.3×10^2~9.8×10^4 cells/L。甲藻丰度对浮游植物总丰度贡献率最大,其次是硅藻,隐藻和蓝藻丰度仅在少数水层占优势。微型和小型浮游植物昼夜变化明显,夜间丰度最大值层为20 m层,日间则出现在40 m层。微微型、微型和小型浮游植物垂直分布与叶绿素a浓度垂直分布一致性高。龙洞浮游植物的种类数和丰度高于潟湖和外礁坡。  相似文献   

2.
对海南省三亚湾及邻近海域的主要生态系统的真光层水域、珊瑚礁、红树林、海藻垫生态系统中的海洋蓝藻的种类、分布和季节变化特点进行调查研究,共采集和分离了11属24种蓝藻。结果表明,三亚湾海域真光层水域主要以来自外海的外源性海洋蓝藻束毛藻为主要优势群落,其次有共生蓝藻胞内植生藻Richelia intracelluu-laris和单细胞蓝藻集胞藻属Synechocystis,其中束毛藻主要在南海季风转换期和西南季风控制期的3—8月为主,而蓝藻胞内植生藻的硅藻根管藻共生体主要出现在8—10月的另一季风转换期。在珊瑚礁生态系统中,蓝藻呈多样性分布,有集胞藻属、鱼腥藻属Anabaena、念珠藻属Nostoc、眉藻属Catothrix、颤藻属Oscillatoria和鞘丝藻属Lyngbya,它们主要在3月下旬至8月生物量较高,束毛藻也是珊瑚礁生态系中蓝藻的重要组成部分。红树林生态系统中蓝藻主要以颤藻为主要优势种,其次是鞘丝藻也占重要的比例,在4—10月底都有较高的生物量,它们主要分布在0—5cm深的表土层,其次在红树的根际、气生根和幼苗的茎叶表面都有分布。海洋近岸微型海藻垫中,有些群落主要以颤藻属和鞘丝藻属为主,有些微藻垫以眉藻属为主要优势属种,蓝藻种群随季节的变化有明显的演替。  相似文献   

3.
于2013年5月到2014年6月,在大亚湾大鹏澳牡蛎区及邻近海域开展了为期14个月的采样调查,利用高效液相色谱(HPLC)法对表层水体中微微型浮游植物(0.7—2.7μm)光合色素进行测定,并应用色素化学分类软件CHEMTAX对自养微微型浮游生物(aototrophicpicoplankton,APP)功能类群进行分析。结果表明,该海域APP中共检出了15种光合色素,其中青绿藻素(Pras)和玉米黄素(Zea)是微微型色素中浓度最高的2种特征色素,均具有明显的季节变化特征:Pras主要出现在低温季节(牡蛎养殖期),而Zea主要出现在高温季节(非牡蛎养殖期)。CHEMTAX分析表明,大鹏澳海域APP最主要的类群是硅藻、蓝藻和青绿藻,而甲藻、隐藻、定鞭金藻、绿藻和金藻生物量较低。温度和营养盐浓度是影响大鹏澳海域APP的时空分布的重要因素,青绿藻主要出现在低温季节(主要在冬季牡蛎养殖期间),且其生物量与溶解无机氮呈显著正相关;而蓝藻则主要出现在高温季节,与温度呈显著正相关。另外,贝类养殖也是能够影响APP空间分布的重要因素,在大鹏澳海域牡蛎养殖期间,青绿藻生物量在养殖区明显高于非养殖海域。  相似文献   

4.
微型异养鞭毛虫(HNF)是海洋微微型浮游生物的重要摄食者,通过摄食作用对后者的种类(或类群)组成、粒径分布、数量结构和营养价值等属性具有重要的影响,而这与HNF的摄食选择性有直接关系。对HNF摄食选择性的研究有助于深入了解HNF在海洋微食物环乃至整个海洋生态系统中的作用。就国际上已开展的HNF摄食选择性相关研究进行了回顾,分析和总结了影响HNF选择性摄食的关键因素,如食物大小、游动性、营养价值及食物细胞表面的生化结构特征等,并重点介绍了HNF摄食选择性形成的主要机制以及HNF的选择性摄食在调节海洋微微型浮游生物群落结构中的作用。  相似文献   

5.
为探究北欧海微微型真核浮游生物多样性和群落结构的分布特征,本研究于2017年6月采集北欧海一个典型断面的表层海水,利用标靶(18SrRNA基因V4区)扩增结合高通量测序技术研究了水体中微微型真核浮游生物的多样性及群落结构,并探讨了群落结构、优势类群与环境因子之间的关系。结果表明:微微型真核浮游生物群落的主导类群为囊泡虫类(54.61%),主要由甲藻纲(18.42%)和海洋囊泡虫新类群I (23.01%)组成;后鞭毛类占21.55%,其中真菌在各站中都有较高的相对丰度,为18.86%;此外,不等鞭毛类中的硅鞭藻和囊泡虫类中的甲藻在温度较低的站位中分布较多,而海洋囊泡虫新类群I则在温度较高的站位中分布较多。典型相关分析结果表明,温度对微微型真核浮游生物的群落结构有重要的影响。北欧海的水文特征复杂,寒暖流在此交汇,造成了微微型真核浮游生物的群落结构有明显的区域差异。  相似文献   

6.
微微型真核生物在海洋中广泛存在,是初级生产力的重要贡献者,也是微食物环的重要组成部分.由于微微型真核生物形体微小且不同种类缺乏明显形态学特点,故而难以利用电镜等传统方法精确研究其系统发生关系和种类组成.运用分子生物学技术直接对微微型真核生物种类组成进行研究已成为微微型真核生物多样性研究的重要方法.本文概述了目前世界范围内的微微型真核生物分子多样性研究进展以及我国在该领域中的研究状况.综述了微微型真核生物分子多样性研究中常用的靶标基因,包括18S rDNA和ITS序列等真核生物保守基因及psbA和rbcL等功能基因;常用的分子生物学方法,如克隆文库构建、DGGE/TGGE、PCR-RFLP/T-RFLP、FISH、宏基因组等;以及目前研究方法中存在的一些问题.  相似文献   

7.
王雨  林茂  林更铭  项鹏 《海洋通报》2011,30(2):221-225
浙闽沿岸流对台湾海峡的水文环境意义重大.依据国家海洋局"908"补充调查专项,通过对覆盖浙闽沿岸流海洋锋面过程的海洋生物调查研究,于2008年4月实施针对浙闽沿岸流消退时期(春季)台湾海峡锋面海域的浮游植物取样分析.结果共记录3门41属86种,其中硅藻35属76种.甲藻5属9种,蓝藻1属1种.种类组成以暖水性种类和广布...  相似文献   

8.
海洋超微型浮游植物多样性研究方法进展   总被引:2,自引:0,他引:2  
海洋超微型浮游植物 (Ultraphytoplankton)是一类粒径微小 (<5~10μm)的光能自养型浮游生物 ,它包括所有的微微型浮游植物 (Picophytoplankton,0.2~2 μm)和部分微型浮游植物 (Nanophytoplankton,2~20μm) ;由原核浮游植物及真核浮游植物组成。微微型原核浮游植物主要是单细胞的蓝细菌 (藻 ) (聚球藻Synechococcus)和原绿球藻Prochlorococcus。海洋超微型光合真核生物主要包括定鞭藻类、金藻类、隐藻类和绿藻类等。现有的研究结果表明…  相似文献   

9.
本文继续报道我国西沙群岛海产色球藻目 Chroococcales 的十种蓝藻,隶于三科六属,有八种是我国海产蓝藻的新记录,它们是:铜锈微囊藻 Microcystis aeruginosa Kuetzing,小形色球藻 Chroococcus minor ( Kuetzing) Naegeli,湖沼色球藻盐泽变种 C. limneticus Lemm.var. subsalsus Lemm,易变色球藻 C.varius A.Braun,膜状色球藻C. membraninus ( Meneghini) Naegeli,圆胞束球藻 Gomphasphaeria aponina Kuetzing,附钙管鞘藻 Hormathonema epilithicum Ercegovic 和透明拟丝藻 Johannesbaptistia pellucida ( Dickie) Taylor at Drouet。其中透明拟丝藻形态特征独特,这对于蓝藻类的研究,特别是研究从色球藻目进化到丝状蓝藻类的系统演化具有重要价值,早已为藻类学家们所重视。该种也是我国海产蓝藻属的新记录。 迄今为止,藻类学家们一致认为色球藻目是蓝藻门 Cyanophyta 中最原始、最低级的类群,其植物体最简单,大都是单细胞或简单的群体,而且都十分微小,常被肥厚的胶质鞘所包埋,这就使该目蓝藻能适应复杂的自然环境。所以,在地质学和古生物学的研究中它已引起许多学者的注意。有关该目海产种类的分类研究,我国仅有少数报道,这方面的工作还有待深入。  相似文献   

10.
2006年10月在长江口及邻近海域采用流式细胞技术测定了微微型浮游生物:聚球藻Synechococcus、微微型光合真核生物(picoeukaryotes)和异养浮游细菌(heterotrophic bacteria)的丰度和碳生物量,研究了其生态分布特点,并分析了其与环境因子之间的关系.结果表明,聚球藻、微微型光合真...  相似文献   

11.
A study on relation between heterotrophic bacteria and shrimp disease¥//INTRODUCTIONHeterotrophicbacteria,whichobtainnutrient...  相似文献   

12.
Research of interaction mechanism between Chlorella vulgaris and two bacterial strains(Z-QD08 and Z-QS01)were conducted under laboratory conditions.Growth rates of bacteria and C.vulgaris were tested under co-culture conditions to evaluate the effects of concentrations of C.vulgaris and bacteria on their interactions.To test whether the availability of inorganic nutrients,vitamins and trace metals affects the interactions between C.vulgaris and bacteria,experiments were performed with or without the culture medium filtrate of C.vulgaris or bacteria.The results showed that the growth of C.vulgaris was promoted at low concentrations of bacteria(5×106cells/ml),and expressed a positive correlation with the bacteria density,whereas opposite trend was observed for treatments with high bacteria density(10×106cells/ml and 20×106cells/ml).The growth rate of bacteria decreased with the increasing concentrations of C.vulgaris.The growth of bacteria Z-QD08 was inhibited by C.vulgaris through interference competition,while the mechanism for interaction between bacteria Z-QS01 and C.vulgaris was resource competition.The influence of cell density on the interaction between microalgae and bacteria was also discussed.These experiments confirm some elements of published theory on interactions between heterotrophic bacteria and microalgae and suggest that heterotrophic bacteria play an important role in the development of blooms in natural waters.  相似文献   

13.
北部湾北部海域水体异养细菌的时空分布特征研究   总被引:2,自引:1,他引:1  
贺成  徐沙  宋书群  李才文 《海洋学报》2019,41(4):94-108
为探讨环境因素对异养细菌丰度的影响,2016年9月至2017年8月通过月度航次调查对北部湾北部海域异养细菌丰度的时空分布特征进行了系统研究。结果表明,调查海区异养细菌丰度介于(2.75~56.86)×105 cell/mL,平均值为(11.01±6.31)×105 cell/mL。各季节细菌丰度从高至低依次为:夏季、春季、冬季、秋季。异养细菌丰度由近岸海域向西南深水区方向逐渐降低,在近岸浅水区垂直分布均匀,在水深大于20 m的海区出现季节性分层现象:表层细菌丰度较高,底层细菌丰度较低。主成分分析显示温度对异养细菌时空分布有重要影响,秋、冬季异养细菌丰度与温度呈显著负相关,在春、夏季呈显著正相关。细菌丰度与盐度呈显著负相关,说明海水盐度变化是细菌时空分布重要影响因素。异养细菌丰度与叶绿素a和溶解氧含量呈显著正相关,表明浮游植物初级生产过程影响了异养细菌的时空分布。在秋、冬和春3季异养细菌丰度与营养盐水平呈显著负相关,二者关系受浮游植物生物量间接影响。异养细菌时空分布差异取决于环境条件的变化,温度、盐度、叶绿素a和溶解氧含量是影响异养细菌丰度分布的主要因素。  相似文献   

14.
陈瑶  张瑶  焦念志 《海洋学报》2021,43(6):98-107
国内外关于好氧不产氧光合异养细菌(AAPB)和上升流之间关系的研究甚少。本文采用“基于蓝细菌校正的时序红外显微技术”研究了台湾海峡南部近岸上升流中心区AAPB对上升流变化的响应。研究结果发现,在上升流涌升的初始阶段,AAPB和总异养细菌丰度较低;随着上升流的发展,两者丰度均增加并在上升流的成熟期达到最高值;而当上升流衰退时,AAPB和总异养细菌丰度开始下降。在上升流发展过程中,AAPB丰度与叶绿素a浓度在一定范围内呈显著正相关,但同时受环境低磷浓度的限制,总异养细菌丰度与氮、磷、硅营养盐均有显著正相关,表明叶绿素a指示的浮游植物所释放的溶解有机碳和环境中的磷限制可能对AAPB起着更为直接和重要的作用,而营养盐则可能在总异养细菌对上升流的响应中起着重要作用。本研究有助于我们理解AAPB在碳及其他生源要素循环中的作用及其调控机制。  相似文献   

15.
从胶州湾海洋异养细菌同小球藻(Chlorella vulgaris)的共存体系中,分离出6株形态特征差异较大的异养细菌,并做变性凝胶梯度电泳(Denature Gel Gradient Electrophoresis,DGGE)分析.其中一株对小球藻的生长有较大的促进作用,而其余菌株则没有明显的效果.6株细菌能在小球藻产生的胞外溶解有机物(Dissolved Organic Mate rials,DOM)溶液中生长良好,共存细菌对提高菌藻体系对无机营养盐的吸收具有较大的贡献.  相似文献   

16.
This study focuses on the effect of oil on periphytic marine microflora on glass surfacesin situ. Two groups of glass slides were used, one with oil and the other without oil. Bacteria, algae and protozoa were counted and periphytic heterotrophic bacteria were isolated. Significant differences in physiological and morphological characteristics of periphytic heterotrophic bacteria on both surfaces of glass slides with and without oil were found. Quantitative differences between the microflora of both groups were also observed. Total number of each group such as bacteria, protozoa and primary producers were significantly affected by the presence of oil.  相似文献   

17.
好氧不产氧光合(AAP)细菌因其具有利用溶解性有机物及光能的能力,在海洋碳循环及能量流动中发挥着重要的作用。该类细菌广泛分布在海洋环境中,其在不同生境中的多样性已被调查。但到目前为止,人们对于高纬度地区好氧不产氧光合细菌的认识还较为缺乏。有鉴于此,本研究基于编码光反应复合物上一个色素结合蛋白亚基的pufM基因,对北极王湾及南极乔治王岛近岸水体中夏季好氧不产氧光合细菌的多样性进行了检测。针对2个王湾站位和2个南极麦克斯维尔湾站位构建了4个pufM基因克隆文库,获得674个阳性克隆子。北极克隆子全部由α-变形细菌组成,而南极克隆子则包括α-变形细菌及β-变形细菌。来源于类似红细菌科的pufM基因在所有样品中皆占据优势。此外,与一株滴状亚硫酸盐杆菌中质粒编码的pufM基因存在亲缘关系的序列,在南、北极样品中均占优势。结果表明海洋环境中的pufM基因存在跨极甚至是环球分布。与此同时,南、北极序列之间的差异,也表明了极地地方种的存在。这些结果显示,作为好氧不产氧光合细菌的红细菌科在两极的近岸水体中具有重要的地位。  相似文献   

18.
Abstract. A new concept (‘enzyme sharing’) concerning the interaction of marine nematodes and microbes in the degradation of sedimentary detritus is presented. Elements of this concept are (1) the notorious tendency of many aquatic nematodes to agglutinate detrital particles by mucus secretions, (2) new observations on the stimulation of microbial growth by nematodes in agar plates, and (3) literature data on limited endogenous proteolytic capacities of aquatic nematodes.
Observations on nematode‐microbe associations in agar plates prompted the conceptual synthesis. In agar medium without the addition of any nutrients a spectacular growth of bacteria was visible on the sinusoidal crawling trails of nematodes only 2 – 3 days after introduction of the worms (species of Adoncholaimus, Anoplostoma and Sabatieria). Juveniles of Anoplostoma that hatched in the agar cultures left their minute trails in the medium and these were rapidly occupied by bacteria. The nematodes repeatedly visited their bacterial trails, which persisted as a peculiar biotic structure for more than one year and survived the nematodes.
In sterile agar preparations containing the fluorogenic methylumbelliferyl‐β‐glucoside in the presence of the nematode Adoncholaimus, an enhanced fluorescence of the medium was visible, indicating β‐glucosidase activity. We therefore assume that oncholaimid nematodes discharge enzymes that alone, or in concert with microbial activities, contribute to the hydrolytic cleavage of refractory polysaccharides containing β‐glucosidic bonds such as agar components and cellulose. The sugars thus produced may then be taken up by the nematodes and concomitantly support the conspicuous growth of microbes. Since we did not observe any feeding of the nematodes on the associated microbes in agar plates, we question the nutritive potential of intact microbial cells for a number of nematodes abounding in detrital habitats, and call attention to the significance of ambient dissolved or adsorbed organic monomeric nutrients.
Consequently, we perceive the puzzling perpetual accretion of detrital organic particles to sediment agglutinations by nematodes as an adaptation for operating an ‘enzymatic reactor’ for the production of dissolved nutrients. We hypothesise a relationship of mutual commensalism of nematodes and heterotrophic microbes in detrital habitats and propose the term ‘enzyme sharing’ for this relationship. Both parties invest in a common enzyme pool that decomposes organic detritus for their nutrition. We present here evidence that nematodes contribute β‐glucosidase, which is involved in the cellulase system. Data from the literature suggest that microbial enzymatic processing of detrital proteins yields amino acids available to nematodes, which apparently have no efficient proteolytic enzyme system in their intestines.  相似文献   

19.
This study used the dilution method to examine growth and grazing rates of heterotrophic bacteria and an autotrophic picoplankton, Synechococcus spp., from 1 to 11 July 2007 in the East China Sea. The main influence of oceanographic conditions in this aquatic system was the introduction of fresh, high-nutrient water from Changjiang River and the extremely nutrient-poor, high-salinity waters of Kuroshio Water. In these experiments, deviation from linearity in the relationship between dilution factor and net growth rate was significant in a large number of cases. Growth rates for heterotrophic bacteria ranged from 0.024 to 0.24, and for Synechococcus spp. from 0.03 to 0.21 h−1. Grazing rates ranged from 0.02 to 0.19 and 0.01 to 0.13 h−1, respectively. The spatial variations of Synechococcus spp. production to the primary production ratio (SP/PP) were low (<5%) in high Chl a environments and increased exponentially in low Chl a environments, indicating that Synechococcus spp. contributes to a large extent to the photosynthetic biomass in the open sea, especially in the more oligotrophic Kuroshio Water. Furthermore, the results of our dilution experiments suggest that nanoflagellates largely depend on heterotrophic bacteria as an important energy source. On average, heterotrophic bacteria contributes to 76 and 59% of carbon consumed by nanoflagellates within the plume (salinity <31) and outside of it (salinity >31).  相似文献   

20.
The dynamics of benthic primary production and community respiration in a shallow oligotrophic, marine lagoon (Fællestrand, Denmark) was followed for 1·5 years. The shape of the annual primary production cycle was explained primarily by seasonal changes in temperature (r2 = 0·67-0·72) and daylength (r2 = 0·63), whereas temperature almost explained all variation in benthic community respiration (r2 = 0·83-0·87). On a daily basis the benthic system was autotrophic during spring and summer supplied by 'new' and 'regenerated' nitrogen and predominantly heterotrophic during fall and winter caused by light and nutrient limitation. The linear depth-relationship between porewater alkalinity and ammonium indicated that the C:N ratio of mineralized organic matter is low in spring and summer (3-6) and high in fall and winter (9-16). This is inversely related to net primary production and thus the input of labile, nitrogen-rich algal cells. Accordingly, mineralization occurred predominantly in the upper 2-5 cm of the sediment. The pool of reactive material (microalgal cells) was estimated to account for 12% of total organic carbon in the upper 3 cm, and had an average turnover time of less than 1 month in summer. Assimilation of organic carbon by benthic animals was equivalent to about 30% of the annual gross primary production. Grazing reduced chlorophyll a concentration in the sediment during summer and spring to values 30-40% lower than in winter, but maintained a 3-4 times higher specific microalgal productivity. The rapid turnover of organic carbon and nitrogen, and important role of benthic microalgae showed that the benthic community in this oligotrophic lagoon is of a very dynamic nature.  相似文献   

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