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1.
A hemocyte surface membrane marker (BGH1) has been identified using hemocyte-specific monoclonal antibodies (mABs) generated by somatic cell fusion methods. The BGH1 epitope was expressed on a subpopulation of circulating, glass-adherent blood cells from two strains of the snail, Biomphalaria glabrata. Approximately 40% of the circulating hemocytes from the PR albino (M-line) B. glabrata strain were BGH1?, compared to a prevalence of 10% BGH1+ cells in the 10-R2 snail strain. When hemocytes were firmly attached and spread on a glass surface, BGH1+ cells were morphologically distinguishable from BGH1? cells by their ovoid shape and the presence of short, thin filopodial projections along the ectoplasmic border. In contrast, BGH1? hemocytes were more pleomorphic and possessed long, spike-like filopodia. Moreover, the BGH1 epitope was trypsin-resistant and retained its antigenic reactivity with probe mABs following fixation with paraformaldehyde or paraformaldehyde/MeOH. Fixation with glutaraldehyde, however, significantly reduced mAB binding to the BGH1 surface epitope. There was no apparent age-dependent expression of the BGH1 determinant since circulating hemocyte populations in very young (1–2 mm) to adult (10–12 mm) snails were composed of both BGH1+ and BGH1? subpopulations. Quantitative shifts in the prevalence of epitope-bearing hemocytes between the smallest snail size class (1–2 mm) and the larger snails (3–4 and 10–12 mm) are believed to be due to a differential production and/or release of BGH1? hemocytes within the blood circulation rather than a gradual age-related change in the expression of surface antigens on individual cells. Experiments designed to assess the in vitro phagocytic capability and lysosomal acid phosphatase (APase) activity of mAB-reactive hemocytes revealed that BGH1+ cells, when compared to those lacking the surface marker, were significantly reduced in both their phagocytic and APase-producing activities. Since the PR albino strain of B. glabrata possesses a higher proportion of BGH1? hemocytes and a lower total concentration of circulating cells than do snails of the 10-R2 strain, PR albino snails are thus potentially reduced in their natural capacity to mount cellular reactions against foreign materials.  相似文献   
2.
The distribution and abundance of the lysosomal enzyme markers, acid phosphatase (AP), peroxidase (PO), and nonspecific esterase (NE), within circulating blood cells (hemocytes) were examined in a schistosome-susceptible (PR albino M-line) and a resistant (10-R2) strain of Biomphalaria glabrata during the course of infection with Schistosoma mansoni. The dynamics of serum (cell-free hemolymph) AP activities and total hemocyte numbers in infected snails also were investigated. Hemocyte subpopulations, as determined by these enzyme markers, responded differently to parasite infection between snail strains. Generally, the hemocyte subpopulations within PR albino snails remained largely unchanged, whereas the same subpopulations in 10-R2 snails fluctuated considerably. The distribution of AP in the hemocytes of 10-R2 snails decreased by 1 hr postexposure (PE) to the parasite and remained low through 12 hr before increasing to control values at 24 hr and 2 wk PE. In comparison, PO activity increased by 1 hr PE and peaked at 12 hr before dropping to 0 hr values by 2 wk PE. The NE activity exhibited still another pattern with the percentage of NE-positive cells decreasing from 0 to 12 hr PE followed by a recovery to 0-hr values by 24 hr. The abundance of these hemocyte enzymes followed a similar pattern to that of their distribution, although some differences were observed. Serum AP values varied little in PR albino snails except for a significant increase at 2 wk PE, indicating a possible response to tissue damage resulting from migrating daughter sporocysts.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   
3.
Peat mosses (Sphagnum) largely govern carbon sequestration in Northern Hemisphere peatlands. We investigated functional traits related to growth and decomposition in Sphagnum species. We tested the importance of environment and phylogeny in driving species traits and investigated trade‐offs among them. We selected 15 globally important Sphagnum species, representing four sections (subgenera) and a range of peatland habitats. We measured rates of photosynthesis and decomposition in standard laboratory conditions as measures of innate growth and decay potential, and related this to realized growth, production, and decomposition in their natural habitats. In general, we found support for a trade‐off between measures of growth and decomposition. However, the relationships are not strong, with r ranging between 0.24 and 0.45 for different measures of growth versus decomposition. Using photosynthetic rate to predict decomposition in standard conditions yielded R2 = 0.20. Habitat and section (phylogeny) affected the traits and the trade‐offs. In a wet year, species from sections Cuspidata and Sphagnum had the highest production, but in a dry year, differences among species, sections, and habitats evened out. Cuspidata species in general produced easily decomposable litter, but their decay in the field was hampered, probably due to near‐surface anoxia in their wet habitats. In a principal components analysis, PCA, photosynthetic capacity, production, and laboratory decomposition acted in the same direction. The species were imperfectly clustered according to vegetation type and phylogeny, so that some species clustered with others in the same section, whereas others clustered more clearly with others from similar vegetation types. Our study includes a wider range of species and habitats than previous trait analyses in Sphagnum and shows that while the previously described growth–decay trade‐off exists, it is far from perfect. We therefore suggest that our species‐specific trait measures offer opportunities for improvements of peatland ecosystem models. Innate qualities measured in laboratory conditions translate differently to field responses. Most dramatically, fast‐growing species could only realize their potential in a wet year. The same species decompose fast in laboratory, but their decomposition was more retarded in the field than that of other species. These relationships are crucial for understanding the long‐term dynamics of peatland communities.  相似文献   
4.
23 kD蛋白是光系统II(PSII)的外周蛋白,具有增加Ca2 和C l-的结合以维持放氧活性的作用。本文借助内源荧光光谱和紫外吸收差谱考察了23 kD蛋白与Hg2 的相互作用。所得结果表明:低浓度的Hg2 离子(<10μM)引起23 kD蛋白的荧光淬灭,淬灭程度与Hg2 离子浓度相关;进一步分析显示,Hg2 离子对23 kD蛋白色氨酸荧光的淬灭属于静态淬灭。紫外吸收差谱可以检测到明显的配体向金属进行电荷转移的谱带(LMCT band)。随着Hg2 浓度的增加,LMCT带的强度逐渐增强。分析显示23 kD蛋白只存在一类Hg2 离子结合位点。  相似文献   
5.
Protective immunity to malaria is acquired after repeated exposure to the polymorphic Plasmodium falciparum parasite. Whether the number of concurrent antigenically diverse clones in asymptomatic infections predicts the risk of subsequent clinical malaria needs further understanding. We assessed the diversity of P. falciparum infections by merozoite surface protein 2 genotyping in a longitudinal population based study in Tanzania. The number of clones was highest in children 6-10 years and in individuals with long time to previous anti-malarial treatment. Individual exposure, analysed by circumsporozoite protein antibody levels, was associated with parasite prevalence but not with the number of clones. The risk of subsequent clinical malaria in children free of acute disease or recent treatment was, compared to one clone, reduced in individuals with multiclonal infections or without detectable parasites, with the lowest hazard ratio 0.28 (95% confidence interval 0.10-0.78 Cox regression) for 2-3 clones. The number of clones was not associated with haemoglobin levels. A reduced risk of malaria in asymptomatic individuals with multiclonal persistent P. falciparum infections suggests that controlled maintenance of diverse infections is important for clinical protection in continuously exposed individuals, and needs to be considered in the design and evaluation of new malaria control strategies.  相似文献   
6.
目的:探讨冠心病合并代谢综合征(metabolic syndrome,MS)患者的冠脉病变特点及冠心病与MS各组分的相关性。方法:选取540例冠心病患者为研究对象,其中合并MS患者164例,非合并MS患者376例,并将所有患者根据MS的组分个数进行分组,比较冠心病合并MS的病变特点、MS组分个数对冠状动脉病变程度的影响及冠状动脉病变程度与代谢综合症各组分的相关性;结果:①冠心病合并MS组BMI、FBG、TG、LDL-C、TC、UA、FIB、高血压分级等指标较非MS组高,差异有统计学意义(P<0.01),HDL-C、LVEF较非MS组低,差异有显著性(P<0.01);②MS组冠脉Gensini积分较高,三支病变、主干病变发生率高,差异有显著性(P<0.01);③随着合并MS组分个数的增加,冠脉Gensini积分也逐渐增加,各组间比较有显著性差异(P<0.01);④冠脉Gensini积分与MS组分BMI、高血压分级、TG、TC、LDL-C、UA等指标存在正相关(P<0.05),与性别、HDL-C存在负相关(p<0.01);调整传统危险因素后,Gensini积分与MS的组分数显著相关(r=0.739、P<0.01)。结论:冠心病患者有较高的MS患病率,冠心病合并MS患者冠脉病变程度更重,且以多支病变、主干病变为主;随着合并MS组分个数的增加,冠脉病变程度也呈加重趋势;MS的各个组分均与冠状动脉病变程度显著相关,可以作为冠心病严重程度的预测指标。  相似文献   
7.
血浆蛋白质组学是研究血浆蛋白质的功能和变化的一门科学。血浆中蕴藏着生命机体的所有信息,因此只有彻底了解血浆中存在哪些蛋白质,才能知道如何利用血浆来预测人体对疾病的易感性并监控疾病的进程,以期达到对疾病进行早诊断早治疗。由于血浆蛋白质组动态范围大,给研究带来了很大的困难。尤其是高丰度蛋白质的存在影响了低丰度蛋白质的检测率。而低丰度蛋白质都是有意义的具有临床诊断价值的蛋白质。因此去除高丰度蛋白质的干扰成了血浆蛋白质组学研究的关键。近年来,血浆蛋白质组学相关研究技术也得到了长足进展,为深入研究血浆蛋白质做出了重要贡献。血浆蛋白质组学作为一种无创性的研究方法,值得我们去探讨。本文就血浆蛋白质组学研究进展情况做一简要综述。  相似文献   
8.
根据2009—2014年在江苏近海北部海域(34.00°—35.13°N,119.40°—121.50°E)的底拖网调查数据,结合综合性指标和多元统计分析等方法研究了该海域的鱼类群落结构随时间的变化.结果表明: 江苏近海海域共有鱼类68种,相对资源量波动较大,站位平均渔获质量的变化范围为0.75~1.62 kg·h-1,站位平均渔获尾数显著下降,变化范围为203~370 ind·h-1. 2009—2014年江苏近海的鱼类群落平均营养级指数在3.58~3.72,2009—2010年相对较低,2011—2014年在3.70以上波动.2009—2014年鱼类群落的平均个体大小在2.93~11.18 g之间波动上升,变化趋势与平均营养级基本一致.聚类分析和非度量多维标度排序分析表明,研究期间大致分为2009—2010和2011—2014年两个年份组.组间分歧种主要有尖海龙、小头栉孔虾虎鱼和玉筋鱼等.对前后两个年份组的分析表明,中上层、浮游生物食性鱼类优势度增加,冷温种和本地种优势度下降.表明江苏近海海域鱼类群落结构发生了较为明显的演替.针对演替规律提出了渔业管理的建议,为渔业资源的合理利用提供理论参考.  相似文献   
9.
Increased N deposition in Europe has affected mire ecosystems. However, knowledge on the physiological responses is poor. We measured photosynthetic responses to increasing N deposition in two peatmoss species (Sphagnum balticum and Sphagnum fuscum) from a 3-year, north–south transplant experiment in northern Europe, covering a latitudinal N deposition gradient ranging from 0.28 g N m−2 year−1 in the north, to 1.49 g N m−2 year−1 in the south. The maximum photosynthetic rate (NPmax) increased southwards, and was mainly explained by tissue N concentration, secondly by allocation of N to the photosynthesis, and to a lesser degree by modified photosystem II activity (variable fluorescence/maximum fluorescence yield). Although climatic factors may have contributed, these results were most likely attributable to an increase in N deposition southwards. For S. fuscum, photosynthetic rate continued to increase up to a deposition level of 1.49 g N m−2 year−1, but for S. balticum it seemed to level out at 1.14 g N m−2 year−1. The results for S. balticum suggested that transplants from different origin (with low or intermediate N deposition) respond differently to high N deposition. This indicates that Sphagnum species may be able to adapt or physiologically adjust to high N deposition. Our results also suggest that S. balticum might be more sensitive to N deposition than S. fuscum. Surprisingly, NPmax was not (S. balticum), or only weakly (S. fuscum) correlated with biomass production, indicating that production is to a great extent is governed by factors other than the photosynthetic capacity.  相似文献   
10.
Growth and decomposition of Sphagnum controls turnover of a large global store of soil organic carbon. We investigated variation in morphological and physiological traits of Sphagnum shoots, and related this variation to canopy variables relevant to peatland carbon cycling. We sampled Sphagnum along a bog plateau‐swamp forest gradient and measured a suite of shoot traits and canopy variables. Major axes of variation were identified using principal component analysis and correlated with canopy variables such as growth, biomass and decomposition. We also examined scaling of shoot traits with one another and with canopy variables. Two distinct tradeoffs in shoot traits emerged. From dry to wet habitats, individual metabolic rates and capitulum size increased while numerical density decreased, leading to faster growth and elongation on an individual basis. From treed to open habitats, photosynthetic efficiency decreased and photosynthetic biomass increased, driving faster growth on an area basis and slower litter mass loss. The tradeoffs identified have important implications for peatlands undergoing climate‐related changes in water and light availability. Sphagnum trait comparisons, combined with scaling analyses, offer a promising approach to understanding and predicting the effects of environmental change on peatland carbon cycling.  相似文献   
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