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1.
白令海夏季浮游细菌和原生动物生物量及分布特征   总被引:4,自引:0,他引:4  
1999年7月21日至8月1日在我国首次北极科学考察期间,考察了白令海中部的浮游细菌和原生动物,分析了其丰度、分布、生物量及其生态作用,结果显示,浮游细菌表层生物量为1.5~20.2μg/dm3,平均为浮游植物生物量的30%,100m以上水柱柱总生物量(720~3123mg/m2)平均为浮游植物柱总生物量的67%,因而是白令海夏季与浮游植物处同等量级的优势类群;原生动物表层生物量为1.2~27.4μg/dm3,100m以上水柱柱总生物量为189~1698mg/m2,平均为浮游植物柱总生物量的21%,其中粒径小于5,5~20μm和大于20μm的原生动物分别占其柱总生物量的13%,47%和40%;作为主要类群的异养腰鞭毛虫占原生动物柱总生物量的39%.浮游细菌和原生动物生物量的总体分布趋势从西部向东北和东部递减、从表层向深层衰减,20~25m水层温跃层和表层海流的存在对这一分布特性可能有较大的影响.原生动物受潜在的大、中型浮游动物捕食压力的制约,维持了一个相对较低的生物量水平,在一定程度上限制了微食物环(microbial food loop)在该海域夏季生态系统营养中的作用.  相似文献   
2.
1 Introduction Generallyknownasacodominantgeneticmarker ,microsatellitehasbeenwidelyusedinstudiesonpopu lationgenetics,high resolutiongenotyping ,genemap ping ,evolution ,linkageanalysis ,conservationbiology ,behaviouralecology ,relationsbetweenparasite…  相似文献   
3.
巢湖沉积植硅体组合及中全新世以来的环境演变   总被引:1,自引:0,他引:1  
尽管以前对眼虫进行过大量的形态发育研究和基于核糖体RNA基因的系统发育分析,但对于株系之间的关系仍然知之甚少.因其形态特征有限并且易变,很难鉴定眼虫的相似种和同种内不同的株.作者利用微卫星DNA指纹图谱,在七株眼虫中扩增了七个微卫星DNA位点,成功扩增的六个微卫星引物都得到了四到八个条带.从微卫星DNA指纹图谱计算得到的相似性系数范围从0.000到0.957.根据相似性系数得到的树状结构,七株眼虫在距离为0.9346处分为三支:E.mutabilis,E.intermedia和E.gracilis.其中,五株E.gracilis分为两组:来自日本的和美国的.不同地区的株得到不同的基因型,并初步分析了它们之间的关系.研究表明七株眼虫根据微卫星DNA指纹图谱被明显区分开.微卫星DNA指纹图谱具有很高的分辨率,是鉴定和区分原生动物相似种和同种内不同株的一种有用的新方法.  相似文献   
4.
湛江湾浮游动物群落结构特征及其周年变化   总被引:4,自引:0,他引:4  
2010年10月至2011年9月对湛江湾浮游动物进行了周年调查,研究了其群落结构的周年变化及影响因素。结果共检出浮游动物87种和29类浮游幼虫,隶属于16大类群,群落结构主要由桡足类(30种)、浮游幼虫(29类)和原生动物(23种)所组成,分别占总种类数的25.86%、25.00%和19.83%。浮游动物种类数以4月最多,2月和3月最少,4~9月的总种类数均高于其他月份。湛江湾浮游幼虫以底栖动物幼虫为主,在4月种类最多,5月丰度最高,4~7月为湛江湾海洋动物的繁盛时期。浮游动物优势种共有22种(类),其中浮游幼虫9类,原生动物7种,桡足类3种,水母类、毛颚类、被囊类各1种,以12月、4月和5月优势种最多(8种),2月最少(2种),无全年优势种,群落结构明显趋于小型化。各相邻月份的共有种类数在18~33种,物种更替率R的范围为37.25%~73.61%,多样性指数H'、均匀度J及丰富度d的年均值较低,分别为2.64、0.54和3.32。在调查期间,湛江湾浮游动物丰度出现了3个高峰,且分别由不同的浮游动物类群组成,其中12月份的高峰主要由原生动物组成,2月份的高峰主要由桡足类组成,而5月份的高峰则主要由浮游幼虫组成,3大类群共同主导湛江湾浮游动物群落结构;浮游动物生物量仅在2月和9月出现高峰,呈现月份双峰型变化。湛江湾浮游动物的周年变化主要受水温、食物及摄食压力的影响。  相似文献   
5.
1 INTRODUCTION Ammonia and nitrites are common pollutants in waters used for intensive aquiculture, and are harmful to cultured animals and their larvae when present in sufficiently high concentrations (Zhou, 1991). Ammonia in water is usually derived from animal excretion and catabolism of organic materi- als. It occurs in un-ionized and ionized forms. Un-ionized ammonia can pass through cell mem- brane and is harmful to the cells due to its fat-soluble feature (Chen, 2000; Chin, 2001).…  相似文献   
6.
Aquatic macroinvertebrates harbor a broad spectrum of gut endosymbionts, among them trichomycetes species (including fungi and protozoa) are predominantly associated with shredders, collector or scraper hosts, which only rarely may ingest some animal tissues. An exception to this rule may be the protozoan Paramoebidium avitruviense, documented within opportunistic-predator nymphs of the stonefly Siphonoperla torrentium. In the present work, we studied a population of S. torrentium bearing P. avitruviense during 21 months to describe the life cycle and feeding habits of S. torrentium. We tested for associations between host diet, process of infestation and the prevalence of P. avitruviense, and provide information about the temporal dynamics of both the stonefly and the protozoan. Siphonoperla torrentium presented a univoltine life cycle and displayed an omnivorous diet which changed toward an invertebrate-based diet in older nymphs. The endosymbiont P. avitruviense showed fluctuations in relation to the host nymphal size, and prevalence peaks concurred with the highest host growth rate. Binary logistic regressions revealed that the diet influenced the prevalence of the protozoan, at least for some of the gut content fractions. Whereas an increment of the animal fraction decreased the probability of being infested, the consumption of other fractions related to a gatherer–collector activity increased the probabilities of infestation. However, the most decisive factor affecting endosymbiont prevalence was the melanization grade of S. torrentium, whereby the higher the melanization of the nymph (= longer post-ecdysis period), the higher the infestation probability by P. avitruviense.  相似文献   
7.
The tolerance to ammonia and nitrites in freshwater ciliate Paramecium bursaria was measured in a conventional open system. The ciliate was exposed to different concentrations of ammonia and nitrites for 2h and 12h in order to determine the lethal concentrations. Linear regression analysis revealed that the 2h-LC50 value for ammonia was 95.94 mg/L and for nitrite 27.35 mg/L using probit scale method (with 95% confidence intervals). There was a linear correlation between the mortality probit scale and logarithmic concentration of ammonia which fit by a regression equation y=7.32x-9.51 (R^2=0.98; y, mortality probit scale; x, logarithmic concentration of ammonia), by which 2 h-LC50 value for ammonia was found to be 95.50 mg/L. A linear correlation between mortality probit scales and logarithmic concentration of nitrite is also followed the regression equation y=2.86x 0.89 (R^2=0.95; y, mortality probit scale; x, logarithmic concentration of nitrite). The regression analysis of toxicity curves showed that the linear correlation between exposed time of ammonia-N LC50 valueand ammonia-N LC50 value followed the regression equation y=2 862.85e-0.08x (R^2=0.95; y, duration of exposure to LC50 value; x, LC50 value), and that between exposed time of nitrite-N LC50 value and nitrite-N LC50 value followed the regression equation y = 127.15e-0.13x (R^2=0.91; y, exposed time of LC50 value; x, LC50 value). The results demonstrate that the tolerance to ammonia in P. bursaria is considerably higher than that of the larvae or juveniles of some metozoa, e.g. cultured prawns and oysters. In addition, ciliates, as bacterial predators, are likely to play a positive role in maintaining and improving water quality in aquatic environments with high-level ammonium, such as sewage treatment systems.  相似文献   
8.
9.
分子标记在纤毛虫原生动物系统学研究中的应用   总被引:3,自引:0,他引:3  
综述同工酶、RFL P、RAPD、SAP、AFL P及序列测定技术在纤毛虫原生动物系统分类学研究中的应用。相较传统的形态分类学 ,分子标记可以从基因和分子水平上提供可靠而丰富的依据。作者就分子标记在该类动物系统分类学研究中的意义及现状作了回顾 ,并就其应用前景进行了探讨。  相似文献   
10.
Protozoan communities developed in laboratory microecosystems were used to evaluate the toxic effects of lead ion. The lead was added as lead acetate in different concentrations (50 g · l–1, 20 g · l–1, 10 g · l–1 and 1 g · l–1). The protozoans were taxonomically identified and classified into functional groups according to their common nutritional type. The population dynamics of protozoa has been studied. In the control the most frequent groups were bacterivore-detritivores and photosynthetics (more than 75% of abundance). Noticeable lead effects were observed after 24 hours of exposure to metal in all fractions. In general, the lead caused reductions in the number taxa, in total protozoan abundance and in protozoan biomass. The diversity values decreased in more than two nep respect to control in the different fractions. At the end of assay, the protozoan communities structure was simplified in the fractions with lead and some species of little flagellates were dominant. The information provided by this microecosystems of protozoan community was more complex than the one provided by single-species bioassays. Community protozoan bioassays may give more information about the toxic effects to compare with actual ecosystems.  相似文献   
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