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1.
自1997年球形棕囊藻(Phaeocystis globosa)赤潮首次在我国南海海域暴发以来,该赤潮在我国南海和渤海的多个海域频繁暴发,表明球形棕囊藻在我国海域的分布比较广泛。尽管如此,在此之前开展的分类和生态调查研究均未发现我国海域球形棕囊藻的存在。近年来基于分子标记扩增和高通量测序的宏条形码分析检测到了球形棕囊藻,显示出宏条形码分析对球形棕囊藻鉴定的优势。然而,由于包括球形棕囊藻在内的定鞭藻的18S rDNA序列具有较高的G(Guanine,鸟嘌呤)C(Cytosine,胞嘧啶)含量等特点,导致针对球形棕囊藻的宏条形码分析结果在很大程度上依赖分子标记的选择或PCR扩增引物的选择。以青岛栈桥海域样本为研究对象,评估了扩增通用分子标记18S rDNA V4的两套常用PCR引物(即Stoeck引物和Song引物)对球形棕囊藻的宏条形码分析结果的影响,并利用Song引物对青岛近海2021年冬季突发性球形棕囊藻赤潮样本开展了宏条形码分析。分析发现不同引物对定鞭藻门物种的分析结果具有显著影响。利用Stoeck引物的宏条形码分析没有获得任何对应的定鞭藻的ASV(ampliconsequence...  相似文献   

2.
近年来, 棕囊藻已成为我国北部湾海域藻华发生的主要原因种, 严重影响北部湾海洋生态环境、水产增养殖业和防城港核电安全, 急切需要对棕囊藻藻华原因种作进一步分析确认。2017年2月和3月在钦州湾和涠洲岛藻华发生海域分离得到9株棕囊藻, 采用光学显微镜进行形态学初步鉴定, 并通过核糖体小亚基序列(SSU rDNA)进行系统进化分析。研究结果表明, 北部湾9株棕囊藻与球形棕囊藻形态特征基本符合, 系统发育树与不同海域来源的球形棕囊藻聚在同一大分支上, 与其他海域来源的球形棕囊藻遗传距离为0.0000~0.0071, 其中北部湾WZS3-1株与墨西哥湾株CCMP627、苏里南株CCMP628、厄瓜多尔株CCMP1528、南非株P162、中国海株RCC:K1398及汕头株Santou97的球形棕囊藻亲缘关系最近, 遗传距离为0.0000, 而北部湾WZS1、WZS2、WZS4、WZS5株与香港株SKLMP_T005和渤海株BOHAI1亲缘关系最近, 遗传距离为0.0000。球形棕囊藻的种内遗传距离(0.0000~0.0073)明显小于种间遗传距离(0.0084~0.0440), 因此可确定来自北部湾不同海域的9株棕囊藻均为球形棕囊藻。此外, 球形棕囊藻各藻株间的亲缘关系远近与其地理位置分布不能完全对应。本研究结果将为我国棕囊藻藻华藻种库构建、棕囊藻北部湾株生理生态研究和北部湾棕囊藻藻华发生机理研究等提供参考。  相似文献   

3.
棕囊藻赤潮原因种的分子鉴定和起源分析   总被引:8,自引:1,他引:8  
测定了发生于我国东南海域赤潮原因种Phaeocystis sp.及相关种类P.globosa和P.pouchetii 18S rDNA序列,并以Phylip35分析软件构建序列距离矩阵和分子系统发育树图.结果表明,该赤潮原因种与球形棕囊藻P.globosa 18S rDNA序列完全相同,从分子水平鉴定了该原因种为P.globosa.分子系统发育树图表示的P.globosa和P.pouchetii的分化顺序表明,分布于我国东南海域的P.globosa可能是一种本地起源的暖水种.Phaeocystis globosa不同株系的形态差异,可能是适应不同生活环境的结果.根据分子生物学的数据对有害赤潮藻类进行系统发育分析,并设计用于有害赤潮藻快速鉴定的特异性分子探针,对赤潮的监控和防治具有重要意义.  相似文献   

4.
棕囊藻渤海株核糖体18S rDNA和ITS基因结构序列分析   总被引:5,自引:0,他引:5  
对分离自渤海赤潮发生区的1株棕囊藻进行核糖体18S rDNA及ITS序列克隆测定,获得了长度为1 648 bp的18S rDNA序列和长度为890 bp的ITS序列.对获得的基因序列进行同源性分析,结果表明,该棕囊藻的核糖体18S rDNA及ITS序列均与NCBI数据库中登录的球形棕囊藻的相应序列同源性最高;从GenBank中获取不同地理来源的19种棕囊藻的18S rDNA序列及6种棕囊藻的ITS序列,分别以棕囊藻核糖体18S rDNA和ITS为对象构建了棕囊藻属的系统发育树,从分子生物学角度确定了棕囊藻渤海株为球形棕囊藻(Phaeocystis globosa).  相似文献   

5.
北部湾海域球形棕囊藻遗传多样性分析   总被引:6,自引:3,他引:3  
南海北部湾海域近年来连年暴发球形棕囊藻赤潮,严重威胁近海生态安全,亟待探明赤潮成因。球形棕囊藻是一种广泛分布于温带至热带海域的有害藻华微藻,具有明显的种下遗传分化。为了解北部湾海域球形棕囊藻的遗传多样性及其对赤潮藻种来源的指示意义,本研究针对分离于北部湾海域赤潮发生期间的4株棕囊藻,以核糖体28S大亚基rRNA基因(28S rDNA)D1-D2区和转录间隔区(ITS区)为靶区构建克隆文库,通过测序分析了北部湾海域球形棕囊藻的遗传多样性。结果表明,从北部湾分离的4株棕囊藻均为球形棕囊藻,但不同年份分离的球形棕囊藻藻株之间存在明显的遗传差异。部分球形棕囊藻藻株(PG2015和PG2017)的不同克隆间也存在遗传差异,这种遗传差异在由单一藻细胞建立的克隆培养系中仍存在,表明遗传差异是来自细胞内多拷贝的基因序列,可能源自不同地理种群球形棕囊藻之间的基因交流。与ITS区相比,28S rDNA D1-D2区能更好地反映球形棕囊藻遗传多样性状况,具有作为分子标记指示球形棕囊藻地理种群的潜力,但仍需深入研究。研究结果深化了对北部湾球形棕囊藻遗传多样性的认识,有望为进一步解析北部湾海域球形棕囊藻赤潮原因种来源提供判据。  相似文献   

6.
球形棕囊藻(Phaeocystisglobosa)是我国南方沿海近年来主要的赤潮原因种之一,由球形棕囊藻形成的赤潮对海水养殖业发展和海域生态环境构成了严重威胁。棕囊藻通常以囊状群体形式形成赤潮,很难获取其丰度数据,以往研究中多以19′-己酰氧基岩藻黄素(Hex-fuco)或19′-丁酰氧基岩藻黄素(But-fuco)作为其特征色素,利用化学分类软件CHEMTAX计算其生物量。为了解我国近海球形棕囊藻的色素组成特征,本文采用高效液相色谱方法,分析了6株球形棕囊藻的色素组成与含量状况,其中5株分离自我国近海。结果表明, 6株球形棕囊藻均以岩藻黄素和叶绿素a为主要色素,但其特征色素Hex-fuco却存在显著的株系间差异,即便是分离自相同海域的不同球形棕囊藻藻株也存在差别。对比棕囊藻游离细胞和囊状群体的色素组成,可以看出两者在色素组成上基本一致,但囊状群体中捕光色素(Light-harvesting pigment)含量低于游离细胞,而光保护色素(Photoprotective pigment)则高于游离细胞,可能与不同存在形态的棕囊藻对光照的适应特征差异有关。以上研究表明,在以CHEMTAX方法计算球形棕囊藻生物量时,需要充分调查海域棕囊藻的特征色素组成情况,获取其特征色素信息,构建合理色素比例初始矩阵,为球形棕囊藻赤潮监测奠定基础。  相似文献   

7.
球形棕囊藻(Phaeocystis globosa)常在热带至温带近海海域形成有害藻华,该种具有种内遗传多态性,且有囊体大小、特征色素组成等性状分化。在我国南海形成有害藻华的球形棕囊藻可形成“巨型囊体”,以19''-丁酰氧基岩藻黄素(But-fuco)为特征色素,是一种独特的“巨囊”生态型。2021年11月底至12月初,南黄海青岛沿岸暴发大规模球形棕囊藻藻华。藻华发生期间,对青岛沿岸3个站位的水文和化学要素进行了观测,分析了球形棕囊藻囊体的数量、直径和色素组成,并应用一种高分辨率种下分子标记——叶绿体rbcS-rpl27基因间隔区分析了其遗传特征。结果表明,藻华发生期间青岛沿岸表层海水温度较低 (12~14℃),海域营养盐组成具有高溶解有机氮、低溶解无机氮的特征;球形棕囊藻囊体丰度超过20个/L,最大囊体直径为18 mm,以But-fuco为特征色素, rbcS-rpl27序列分析表明其与南海“巨囊”生态型球形棕囊藻具有相同的遗传特征。南黄海首次暴发的球形棕囊藻藻华是由“巨囊”生态型形成,该藻华可能对海洋生态系统、水产养殖业发展和核电设施运行等构成威胁,亟待开展藻华成因与监测预警对策研究。  相似文献   

8.
沈萍萍  齐雨藻  欧林坚 《海洋科学》2018,42(10):146-162
球形棕囊藻(Phaeocystis globosa Scherffel)是全球海洋广泛分布的有害藻华种类。1997年10月,中国东南沿海首次暴发了此种藻类的大规模藻华,其后陆续在福建、广东、广西、海南、河北及天津等省市沿海暴发多起同种藻华。中国近海的球形棕囊藻藻华呈现两大独有的特点,即藻类囊体较大(可达3厘米),以及藻华可毒害养殖业。历经20多年,球形棕囊藻在中国沿海已从一个"藻华新记录种"变成了"藻华常见种"。值得注意的是, 2014年以来,广西北部湾海域棕囊藻藻华肆虐,威胁核电冷源安全,受到了社会高度关注,也对球形棕囊藻藻华的研究提出了新的挑战与要求。针对这一生态灾害的最新发展趋势,本文总结了20年来中国球形棕囊藻及其藻华灾害的发生与发展状况,分别就棕囊藻的分类、生活史特征、营养特性、藻华形成的环境驱动因素、生态毒理等诸多方面开展简要综述,冀望为棕囊藻藻华的研究及防治提供基础资料及思路。  相似文献   

9.
2021年1月下旬深圳大鹏湾沿岸海域发生球形棕囊藻(Phaeocystis globosa)藻华。为了探究球形棕囊藻藻华发生动态特征及其影响因素, 于1月20日至2月1日系统调查分析了藻华发生过程中浮游植物优势种演替、球形棕囊藻囊体数量、营养盐水平以及其他环境因素的变化。结果表明: 1月20日, 中肋骨条藻(Skeletonema costatum)为绝对优势种, 1月21日球形棕囊藻囊体开始出现, 1月25日囊体数量达到最高, 达69colonies·L-1; 1月27日红色赤潮藻(Akashiwo sanguinea)藻华出现, 随后球形棕囊藻藻华逐渐消退。灰关联分析显示, 铵盐和硝酸盐是影响球形棕囊藻囊体丰度的最主要因素。水体扰动和球形棕囊藻在磷限制条件下的竞争优势也可能有利于球形棕囊藻藻华的发生。红色赤潮藻藻华可能是球形棕囊藻藻华消退的主要原因。球形棕囊藻藻华的发生和消亡是各种理化因素和生物因素共同作用的结果。  相似文献   

10.
中国南海是世界上最大的边缘海之一,位于印太交汇区的北端。独特的地理环境和气候条件使其生态环境极其复杂,使得南海海域的赤潮具有特殊性和典型性。近20年来,南海赤潮现象呈攀升态势,对水产养殖业、滨海旅游业、海洋生态系统及人类健康都有着严重的危害。为了系统了解南海海域浮游植物,尤其是赤潮物种的种类组成、相对丰度及年际变化,本文对近30年间(1987—2018)南海海域涉及浮游植物调研的44个航次数据进行了统计和比较分析,共记录到500种浮游植物、65个鉴定到属的未定种和1个未定类的三深碎裂藻。其中,硅藻(289种和37个未定种)和甲藻(186种和21个未定种)占绝大多数,包括赤潮物种149种。其中大部分浮游植物尚未得到系统的分子鉴定。比较发现不同航次报道的物种数目相差较大,种类相似度不高,硅藻和甲藻的相对优势地位无明显演替现象。南海海域最常见的赤潮物种以硅藻为主,包括菱形海线藻、中肋骨条藻、洛氏角毛藻、尖刺拟菱形藻、柔弱拟菱形藻、球形棕囊藻、夜光藻和锥状斯氏藻。本文将为比较研究不同海域赤潮物种的生物多样性,解读宏基因组学及宏条形码分析结果提供参考。  相似文献   

11.
The colony-forming Phaeocystis species are causative agents of dense bloom occurrences in coastal waters worldwide. It is difficult to separate them because of the different morphologies associated with their colonial stages. In this study we applied molecular approaches to analyze the genetic variation of Phaeocystis globosa and Phaeocystis pouchetii from several geographic regions, and to assist in tracing the dispersal of bloom-forming Phaeocystis species in coastal waters of China. The sequences of the internal transcribed spacers (ITS1 and ITS2) of rDNA and the 5.8S ribosomal RNA gene of Phaeocystis strains were determined. Sequence comparison shows that P.globosa was the most divergent to P. pouchetii, exhibiting sequence divergence higher than 0.08. However, lower genetic divergences existed between strains of P.globosa. The sequence comparison of the Phaeocystis rDNA ITS clearly shows that the species isolated from the southeast coast of China is identified as P.globosa rather than P. cf. pouchetii or other species. Furthermore, the significance of rDNA variation in distinct global populations of P.globosa suggested it might have had sufficient time to accumulate detectable mutations at the rDNA locus, supporting the hypothesis of ancient dispersal of P.globosa to many areas, meaning that P.globosa blooms in the coastal waters of China are endemic rather than a newly introduced species or a foreign source. Finally, based on the high divergent region of rDNA ITS, a pair of species-specific primers for P.globosa were designed, they could be useful to detect the presence of this species in mixed plankton assemblages or flagellate stages that are recognized with diffculties by means of conventional microscopy.  相似文献   

12.
Phaeocystis material contains polysaccharides that are built from at least eight different monosaccharides. Differences have been reported between the carbohydrate composition of different Phaeocystis species, and also between samples taken from Phaeocystis globosa blooms in different areas. In order to elucidate factors that could play a role in determining variation in carbohydrate composition and production, a number of Phaeocystis globosa strains were studied under laboratory conditions. Although there was a clear distinction of a northern and a southern cluster in the Phaeocystis globosa strains based on RAPD analysis, the differences in the composition of the mucopolysaccharides were relatively small. The contribution of glucose, however, ranged from 7–85% of total sugars. A strain that was cultured in seawaters of diverse origin produced polysaccharides of a different composition, suggesting the effect of environmental factors. The presence of bacteria affected neither the amount, nor the composition of the carbohydrates that were produced by Phaeocystis globosa. Glucose is part of both the intracellular polysaccharide pool and of the mucopolysaccharides in the colony matrix. Using specific digestion of the intracellular chrysolaminaran by laminarinase, the distribution of polysaccharides over different pools could be assessed. During growth of an axenic, mucus-producing strain, the portion of glucose present as chrysolaminaran appeared to increase. The polyglucose that was not digested by laminarinase remains unidentified. This study shows that environmental factors rather than strain differences determine differences in the sugar composition of Phaeocystis globosa, especially with respect to the glucose content of the material. A difference in the contribution of glucose could be correlated to the portion of cells in the culture that are not in the colonies. Our study emphasises that for studying polysaccharide dynamics in Phaeocystis globosa it is important to be able to discriminate between the different polysaccharide pools. Preliminary results of an enzymatic approach were promising  相似文献   

13.
球形棕囊藻是一种具有复杂异型生活史的有毒有害赤潮生物,近年来在我国近海频繁暴发成灾,形成的巨大囊体为国内外罕见。迄今还未见到有效消除囊体型球形棕囊藻赤潮的方法报道。本文通过海上围隔实验和现场赤潮消除工程跟踪监测,考察了喷洒改性黏土消除囊体型球形棕囊藻赤潮的可行性与效率,并分析了改性黏土法治理赤潮时对水体及沉积环境的可能影响。围隔实验结果表明,喷洒改性黏土可以有效消除水体中过量的微藻细胞,其中以少量多次喷洒方法的效果最好,生物量(chl a)去除率90%。在对2016年2月广西防城港附近海域球形棕囊藻赤潮消除时的跟踪监测结果表明,改性黏土法适用于工程化消除赤潮作业,能够快速消除水体中的大量球形棕囊藻囊体,随改性黏土絮凝体沉入海底的赤潮藻可以快速分解而失去活性。喷洒改性黏土对于赤潮水体的主要理化指标影响不显著,所监测的水体COD、pH和不同形态氮、磷、硅等生源要素浓度都在原有水质水平范围内波动。  相似文献   

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A straightforward ecophysiological characterization of Phaeocystis globosa is hampered by its complex polymorphic life cycle in whic flagellates and colonial cells express different physiological and morphological properties. There is also increasing evidence that, besides the existence of different species, the most widespread species Phaeocystis globosa (Scherffel) has to be subdivided into at least five different ecotypes which again differ in their ecophysiological properties. Most research has been performed on the P. globosa ecotype North European (English Channel/ North Sea isolates). From the available literature it must be concluded that flagellate cells are better competitors for light and phosphate than colonial cells, due to their superior uptake characteristics. To a limited extent this phenomenon is compensated in colonial cells by their ability to continue growth and cell division in the dark at the same rate as in the light, at the expense of extracellular colonial mucus. In contrast with other algal species, colonial cells of P. globosa are better competitors for nitrogen than for phosphorus.Flagellates transform into vegetative cells and form colonies in environments with irradiance levels of about 50 μE·m−2·s−1 or more and an optimum phosphate concentration of 1 μM. A solid substrate and the presence of calcium are prerequisites for colony formation. In environments where phosphorus is limiting no new colonies are formed. There is some evidence that nitrate stimulates colony formation, whereas high ammonium values (above 1 μM) tend to suppress colony formation. Massive blooms of P. globosa colonies can be attributed to a combination of environmental conditions that induce colony formation and smaller grazing losses of colonial cells than of flagellates, rather than to superior ecophysiological characteristics of colonial cells.  相似文献   

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