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111.
Growth anomaly (GA) is a commonly observed coral disease that impairs biological functions of the affected tissue. GA is prevalent at Wai ‘ōpae tide pools, southeast Hawai ‘i Island. Here two distinct forms of this disease, Type A and Type B, affect the coral, Montipora capitata . While the effects of GA on biology and ecology of the coral host are beginning to be understood, the impact of this disease on the photophysiology of the dinoflagellate symbiont, Symbiodinium spp., has not been investigated. The GA clearly alters coral tissue structure and skeletal morphology and density. These tissue and skeletal changes are likely to modify not only the light micro-environment of the coral tissue, which has a direct impact on the photosynthetic potential of Symbiodinium spp., but also the physiological interactions within the symbiosis. This study utilized Pulse amplitude modulation fluorometry (PAM) to characterize the photophysiology of healthy and GA-affected M . capitata tissue. Overall, endosymbionts within GA-affected tissue exhibit reduced photochemical efficiency. Values of both Fv/Fm and ΔF/ Fm’ were significantly lower (p<0.01) in GA tissue compared to healthy and unaffected tissues. Tracking the photophysiology of symbionts over a diurnal time period enabled a comparison of symbiont responses to photosynthetically available radiation (PAR) among tissue conditions. Symbionts within GA tissue exhibited the lowest values of ΔF/Fm’ as well as the highest pressure over photosystem II (p<0.01). This study provides evidence that the symbionts within GA-affected tissue are photochemically compromised compared to those residing in healthy tissue.  相似文献   
112.
Modern microbial mats are potential analogues of some of Earth''s earliest ecosystems. Excellent examples can be found in Shark Bay, Australia, with mats of various morphologies. To further our understanding of the functional genetic potential of these complex microbial ecosystems, we conducted for the first time shotgun metagenomic analyses. We assembled metagenomic next-generation sequencing data to classify the taxonomic and metabolic potential across diverse morphologies of marine mats in Shark Bay. The microbial community across taxonomic classifications using protein-coding and small subunit rRNA genes directly extracted from the metagenomes suggests that three phyla Proteobacteria, Cyanobacteria and Bacteriodetes dominate all marine mats. However, the microbial community structure between Shark Bay and Highbourne Cay (Bahamas) marine systems appears to be distinct from each other. The metabolic potential (based on SEED subsystem classifications) of the Shark Bay and Highbourne Cay microbial communities were also distinct. Shark Bay metagenomes have a metabolic pathway profile consisting of both heterotrophic and photosynthetic pathways, whereas Highbourne Cay appears to be dominated almost exclusively by photosynthetic pathways. Alternative non-rubisco-based carbon metabolism including reductive TCA cycle and 3-hydroxypropionate/4-hydroxybutyrate pathways is highly represented in Shark Bay metagenomes while not represented in Highbourne Cay microbial mats or any other mat forming ecosystems investigated to date. Potentially novel aspects of nitrogen cycling were also observed, as well as putative heavy metal cycling (arsenic, mercury, copper and cadmium). Finally, archaea are highly represented in Shark Bay and may have critical roles in overall ecosystem function in these modern microbial mats.  相似文献   
113.
EMS对三个玉米自交系的诱变效应分析   总被引:1,自引:0,他引:1  
EMS诱变玉米花粉是玉米化学诱变的主要技术。该研究以生产上3个常用的玉米自交系K305、21-ES、R08为材料,对其花粉用不同浓度的EMS诱变处理,探讨其EMS诱变的最佳浓度范围,明确其诱变效应。结果表明:3个自交系经过不同浓度的EMS诱变后,其结实率随着浓度的增大表现出减小的趋势,从其半致死剂量来看,EMS诱变花粉的适宜浓度范围自交系K305和R08均为0.67~1.0 mL?L-1,21-ES在1.67 mL?L-1附近。 M1代不同性状其变异幅度和变异系数与对照相比主要表现出增大的趋势,其不同性状的生物学效应在材料间表现不一致,表明性状在不同材料间对EMS的敏感性不一样,生育期表现为21-ES>K305>R08;主要株型性状表现为R08>21-ES>K305;主要雄穗性状K305和21-ES比R08敏感;主要果穗性状表现为21-ES>K305>R08。 M2代整体表现为变异谱扩大,其株高、穗位高和叶面积以及主要果穗性状的变异表现复杂,主要雄穗性状中除K305的M2株系雄穗分枝数呈双向变异外,其余M2株系整体偏向于雄穗变短,雄穗分枝数减小。该研究结果为后续研究和应用打下了基础。  相似文献   
114.
目的:探讨经皮穴位电刺激(TEAS)对老年髋关节置换术患者脑氧代谢以及术后认知功能、镇痛效果的影响。方法:选取2016年1月~2018年7月期间我院收治的行髋关节置换术患者91例为研究对象,将研究对象根据随机数字表法分为对照组(n=45)和研究组(n=46),对照组给予常规麻醉处理,研究组在对照组基础上给予TEAS,比较两组脑氧代谢、术后认知功能以及镇痛效果,记录两组术后的不良反应发生情况。结果:在降压开始后20 min(T1)、降压开始后40 min(T2)、停止降压后20 min(T3)时间点时,两组静脉血氧含量(Cjv O2)较降压前即刻(T0)时间点升高,且研究组高于对照组(P0.05),两组脑动-静脉血氧含量差(Da-jvO2)、脑氧摄取率(CERO2)较T0时间点降低,且研究组低于对照组(P0.05)。两组患者术后72h简易智能量表(MMSE)评分均较术前24h降低,但研究组高于对照组(P0.05),研究组术后认知功能障碍(POCD)发生率低于对照组(P0.05)。与术前比较,两组患者术后8h、术后24h、术后48h视觉疼痛模拟量表(VAS)评分均升高(P0.05),但研究组术后8h、术后24h、术后48h等时间点VAS评分均低于对照组(P0.05)。两组患者不良反应总发生率比较无差异(P0.05)。结论:TEAS对老年髋关节置换术后患者的镇痛效果确切,可有效改善脑氧代谢情况,提高术后认知功能,临床应用价值较高。  相似文献   
115.
116.
目的:探讨杨芽黄素对前列腺癌细胞22Rv.1的作用及机制。方法:将0~20μg/ml杨芽黄素作用于22Rv.1细胞和正常前列腺细胞RWPE-1,适时采用MTS法检测细胞的增殖活性,采用流式细胞仪、hoechst染色、LDH释放实验分别检测22Rv.1细胞凋亡、死亡、周期、核型变化和药物的细胞毒作用,利用qPCR和Westernblot分析22Rv.1细胞内基因转录和蛋白表达的改变,并通过抑瘤实验证实该药的抑癌作用。结果:杨芽黄素可显著抑制22Rv.1细胞增殖、诱导其凋亡,促进22Rv.1细胞凋亡相关基因dr4、dr5、trail、p53、caspase-3、caspase-8、caspase-9、bid、bax、foxo3的表达,并抑制抗凋亡基因akt、pi3k和bcl-2的表达。结论:杨芽黄素可通过影响TRAIL和PI3K/AKT信号通路诱导前列腺癌细胞凋亡,具有抗前列腺癌的作用。  相似文献   
117.
不同种植年限猕猴桃园土壤微生物功能多样性研究   总被引:2,自引:0,他引:2  
陕西秦岭北麓是世界上最大的猕猴桃生产基地,长期相对单一的果树种植方式导致不同种植年限果园土壤微生态环境差异。研究猕猴桃园土壤微生物功能多样性随种植年限的变化特征,为果园土壤科学管理提供参考。采集不同种植年限猕猴桃根际土壤,应用平板菌落计数法和Biolog-Eco法研究土壤微生物的数量、种群以及功能多样性,并对土壤微生物功能多样性与土壤养分的相关性进行分析。结果显示,猕猴桃园土壤可培养微生物以细菌为主,其次是放线菌,真菌数量最少。随着种植年限的增加,细菌和放线菌数量显著降低,而真菌数量显著升高。微生物平均颜色变化率(average well-color development,AWCD)、微生物群落Shannon-Wiener指数(H′)、Simpson指数(D)及McIntosh指数(U)均随种植年限的增加而显著降低。主成分分析显示,不同种植年限猕猴桃园土壤微生物碳源利用特征明显不同,0~5 a、5~10 a和10~20 a的猕猴桃园土壤微生物群落分别被划分在载荷图的第一、第四和第三象限。猕猴桃园土壤微生物对糖类、氨基酸类和酯类的利用率相对较高,而对醇类、胺类和酸类的利用率相对较低。对第1主成分贡献大的碳源(|r|≥0.5)有11种,其中糖类占36%,氨基酸类和酯类均占18%。土壤微生物功能多样性与土壤养分相关性分析表明,土壤微生物功能多样性与土壤有机质正相关,与有效磷和速效钾负相关。结果表明,随种植年限的增加,猕猴桃园土壤微生物的数量和结构发生变化,微生物功能多样性降低,对碳源利用能力降低。鉴于土壤微生物功能多样性与土壤养分的相关性,应合理加大有机肥施用量,适量减少有效磷和速效钾的施用量。  相似文献   
118.
119.
Malonyl-CoA is a key intermediate involved in lipid synthesis and lipid oxidation. Here, we report on a novel method for the quantification of malonyl-CoA and seven other short-chain acyl-CoAs in various rat and mouse tissues using ion-pairing reversed-phase HPLC/MS. This method is capable of measuring malonyl-CoA, free coenzyme A (CoASH), acetyl-CoA, beta-hydroxyl-butyryl-CoA (HB-CoA), 3-hydroxy-3-methyl-glutaryl-CoA (HMG-CoA), propionyl-CoA, succinyl-CoA, and isobutyryl-CoA simultaneously with a dynamic linear range over two orders of magnitude in a 7.0 min HPLC gradient run. The lower limit of quantification (LLOQ) was 0.225 pmol for all acyl-CoAs studied, except for HMG-CoA which had a higher LLOQ of 0.90 pmol. The interference of HB-CoA on the quantification of malonyl-CoA in animal tissues was also explored for the first time.  相似文献   
120.
BACKGROUND: Measuring antibody production in response to antigen exposure or vaccination is key to disease prevention and treatment. Our understanding of the mechanisms involved in the antibody response is limited by a lack of sensitive analysis methods. We address this limitation using multiplexed microsphere arrays for the semi -quantitative analysis of antibody production in response to malaria infection. METHODS: We used microspheres as solid supports on which to capture and analyze circulating antibodies. Antigen immobilized on beads captured antigen-specific antibodies for semi- quantitative analysis using fluorescent secondary antibodies. Anti-immunoglobulin antibodies on beads captured specific antibody isotypes for affinity estimation using fluorescent antigen. RESULTS: Antigen-mediated capture of plasma antibodies enables determination of antigen-specific antibody "titer," a semi-quantitative parameter describing a convolution of antibody abundance and avidity, as well as parameters describing numbers of antibodies bound/bead at saturation and the plasma concentration-dependent approach to saturation. Results were identical in single-plex and multiplex assays, and in qualitative agreement with similar parameters derived from ELISA-based assays. Isotype-specific antibody-mediated capture of plasma antibodies allowed the estimation of the affinity of antibody for antigen. CONCLUSION: Analysis of antibody responses using microspheres and flow cytometry offer significant advantages in speed, sample size, and quantification over standard ELISA-based titer methods.  相似文献   
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