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排序方式: 共有405条查询结果,搜索用时 406 毫秒
51.
本文报导了金蛇王营养液(GKS)对老龄鼠细胞因子产生的影响。实验表明,细胞因子分泌功能下降的老龄鼠饲喂金蛇王营养液后,IL-2和IFN-r水平明显增加。进而证明金蛇王营养液是一种良好的免疫增强剂,能增强老龄机体抗肿瘤、抗感染等作用  相似文献   
52.
1IntroductionThenitIOgenuptakebymaiZeplantsd~onthegeneticCharaCteristicsofwhettesUnderthecendnenvironmentcondition.AsanimPOratstageofrnabe,seedlingstagehasthehighestrateofnitrogenuptaketothedriedmatt.['J.InOrdertOprovidethetheoriticalbasisforplanningarationalschemeofbreeding,itisne~tostUdythegeneticangelofnit~nuptakebymaizeplantsattheirablingstage.2MaterialandMethodIn1994,11inbredswerechOSenastheParentstoprepucethe~of41geno~whichincludedthe6femaleparents,5maleparentSand3ocrewaccordingt…  相似文献   
53.
The objective of our study was to assess the radioprotective effect of flavonoids extracted from Rosa roxburghii Tratt (FRT) and investigate the role of Bcl-2(Ca2+)/Caspase-3/PARP-1 pathway in radiation-induced apoptosis. Cells and mice were exposed to 60Co γ-rays at a dose of 6 Gy. The radiation treatment induced significant effects on tissue pathological changes, apoptosis, Ca2+, ROS, DNA damage, and expression levels of Bcl-2, Caspase-3 (C-Caspase-3), and PARP-1. The results showed that FRT acted as an antioxidant, reduced DNA damage, corrected the pathological changes of the tissue induced by radiation, promoted the formation of spleen nodules, resisted sperm aberration, and protected the thymus. FRT significantly reduced cell apoptosis compared with the irradiation group. The expression of Ca2+ and C-Caspase-3 was decreased after FRT treatment compared with the radiation-treated group. At the same time, expression of prototype PARP-1 and Bcl-2 increased, leading to a decrease in the percentage of apoptosis cells in FRT treatment groups. We conclude that FRT acts as a radioprotector. Apoptosis signals were activated via the Bcl-2(Ca2+)/Caspase-3/PARP-1 pathway in irradiated cells and FRT inhibited this pathway of apoptosis by down-regulation of C-Caspase-3 and Ca2+ and up-regulation of prototype PARP-1 and Bcl-2.  相似文献   
54.
The high‐altitude environment may drive vertebrate evolution in a certain way, and vertebrates living in different altitude environments might have different energy requirements. We hypothesized that the high‐altitude environment might impose different influences on vertebrate mitochondrial genomes (mtDNA). We used selection pressure analyses and PIC (phylogenetic independent contrasts) analysis to detect the evolutionary rate of vertebrate mtDNA protein‐coding genes (PCGs) from different altitudes. The results showed that the ratio of nonsynonymous/synonymous substitutions (dN/dS) in the mtDNA PCGs was significantly higher in high‐altitude vertebrates than in low‐altitude vertebrates. The seven rapidly evolving genes were shared by the high‐altitude vertebrates, and only one positive selection gene (ND5 gene) was detected in the high‐altitude vertebrates. Our results suggest the mtDNA evolutionary rate in high‐altitude vertebrates was higher than in low‐altitude vertebrates as their evolution requires more energy in a high‐altitude environment. Our study demonstrates the high‐altitude environment (low atmospheric O2 levels) drives vertebrate evolution in mtDNA PCGs.  相似文献   
55.
Uropathogenic Escherichia coli (UPEC) deploy an array of virulence factors to successfully establish urinary tract infections. Hemolysin is a pore-forming toxin, and its expression correlates with the severity of UPEC infection. Two-component signaling systems (TCSs) are a major mechanism by which bacteria sense environmental cues and respond by initiating adaptive responses. Here, we began this study by characterizing a novel TCS (C3564/C3565, herein renamed orhK/orhR for oxidative resistance and hemolysis kinase/regulator) that is encoded on a UPEC pathogenicity island, using bioinformatic and biochemical approaches. A prevalence analysis indicates that orhK/orhR is highly associated with the UPEC pathotype, and it rarely occurs in other E. coli pathotypes tested. We then demonstrated that OrhK/OrhR directly activates the expression of a putative methionine sulfoxide reductase system (C3566/C3567) and hemolysin (HlyA) in response to host-derived hydrogen peroxide (H2O2) exposure. OrhK/OrhR increases UPEC resistance to H2O2 in vitro and survival in macrophages in cell culture via C3566/C3567. Additionally, OrhK/OrhR mediates hemolysin-induced renal epithelial cell and macrophage death via a pyroptosis pathway. Reducing intracellular H2O2 production by a chemical inhibitor impaired OrhK/OrhR-mediated activation of c3566-c3567 and hlyA. We also uncovered that UPEC links the two key virulence traits by cotranscribing the c3566-c3567 and hlyCABD operons. Taken together, our data suggest a paradigm in which a signal transduction system coordinates both bacterial pathogen defensive and offensive traits in the presence of host-derived signals; and this exquisite mechanism likely contributes to hemolysin-induced severe pathological outcomes.  相似文献   
56.
【目的】探索叶际微生物协同植物削减大气氮氧化物的机制,了解叶际可培养好氧反硝化细菌的存在及多样性,获得高效的叶际好氧反硝化细菌资源。【方法】采用富集培养结合格里斯试剂检测、溴百里酚蓝(bromothymol blue, BTB)培养基筛选的方法从景观植物叶际分离筛选好氧反硝化细菌,对好氧反硝化细菌的16S rRNA基因序列进行系统发育分析,并选取其中一株高效好氧反硝化细菌进行脱氮性能研究。【结果】从6种景观植物石楠、女贞、木樨、樟树、卫矛冬青、荷花玉兰的叶际中分离到好氧反硝化细菌13株,经16S rRNA基因序列分析发现,13株细菌分别属于4门7科7属,其中4株为肠杆菌属(Enterobacter),3株为无色杆菌属(Achromobacter),2株为假单胞菌属(Pseudomonas),其余4株分别属于鞘氨醇杆菌属(Sphingobacterium)、不动杆菌属(Acinetobacter)、微杆菌属(Microbacterium)和假节杆菌属(Pseudarthrobacter)。定量分析发现菌株SF的反硝化效果较好。通过单因素试验和响应面设计试验,对菌株SF的脱氮性能进行了一系列研究,探究了碳源、温度、初始pH、碳氮比和转速等因素对菌株SF脱氮效果的影响。结果表明,菌株SF的最佳脱氮条件:碳源为葡萄糖,初始pH值为7.5,碳氮比为9.7,转速180 r/min,温度为33.5 ℃。在此条件下,当初始硝酸盐浓度为361 mg/L时,72 h总氮去除率可达到93.3%。【结论】景观植物叶际中存在较多种类的可培养好氧反硝化细菌,丰富了叶际氮循环相关微生物的类型,为探索叶际微生物协同削减大气氮氧化物的机制奠定了基础。通过高效脱氮菌株的筛选,为进一步应用微生物协同植物削减空气氮氧化物污染提供了候选菌株。  相似文献   
57.
58.
Tissue homeostasis of skin is sustained by epidermal progenitor cells localized within the basal layer of the skin epithelium. Post‐translational modification of the proteome, such as protein phosphorylation, plays a fundamental role in the regulation of stemness and differentiation of somatic stem cells. However, it remains unclear how phosphoproteomic changes occur and contribute to epidermal differentiation. In this study, we survey the epidermal cell differentiation in a systematic manner by combining quantitative phosphoproteomics with mammalian kinome cDNA library screen. This approach identified a key signaling event, phosphorylation of a desmosome component, PKP1 (plakophilin‐1) by RIPK4 (receptor‐interacting serine–threonine kinase 4) during epidermal differentiation. With genome‐editing and mouse genetics approach, we show that loss of function of either Pkp1 or Ripk4 impairs skin differentiation and enhances epidermal carcinogenesis in vivo. Phosphorylation of PKP1's N‐terminal domain by RIPK4 is essential for their role in epidermal differentiation. Taken together, our study presents a global view of phosphoproteomic changes that occur during epidermal differentiation, and identifies RIPK‐PKP1 signaling as novel axis involved in skin stratification and tumorigenesis.  相似文献   
59.
固着或栖息在船舶和人工设施水下部位的海洋污损生物, 会对人们的涉海活动产生不利影响, 其群落的形成和发展过程与温度、盐度、深度、季节、海域、浸海时间、离岸距离和附着基类型等多种因素密切相关。为便于系统分析和综合处理各海区污损生物资料, 理清各要素之间的内在关系, 需要一个能将上述因子与生物群落参数有机地结合起来的数据平台, 将分散、零星的资料予以归纳整合并通过网络共享, 以更好地为生产实践和科学研究服务。本研究采用Internet技术, 应用ASP.NET框架和MySQL数据库, 使用MS Visual Studio 2013设计并开发了服务端部署在Windows 7或Windows Server 2008 R2 (推荐)操作系统上的海洋污损生物数据管理系统, 实现了基于网络的海洋污损生物数据集成、储存与管理, 可完成来源不同、时相变化和海区多样的污损生物数据资料的集成与储存, 能通过单一或多种组合条件进行查询和检索, 并可根据用户的需要导出多种格式的检索结果报表。该系统具备操作简便、方便网络共享、易于升级更新和开拓新功能等特点, 能有效满足科研、生产和管理部门的需要。  相似文献   
60.
Pathological hyperphosphorylation of the microtubule-associated protein tau is characteristic of Alzheimer's disease (AD) and the associated tauopathies. The reciprocal relationship between phosphorylation and O-GlcNAc modification of tau and reductions in O-GlcNAc levels on tau in AD brain offers motivation for the generation of potent and selective inhibitors that can effectively enhance O-GlcNAc in vertebrate brain. We describe the rational design and synthesis of such an inhibitor (thiamet-G, K(i) = 21 nM; 1) of human O-GlcNAcase. Thiamet-G decreased phosphorylation of tau in PC-12 cells at pathologically relevant sites including Thr231 and Ser396. Thiamet-G also efficiently reduced phosphorylation of tau at Thr231, Ser396 and Ser422 in both rat cortex and hippocampus, which reveals the rapid and dynamic relationship between O-GlcNAc and phosphorylation of tau in vivo. We anticipate that thiamet-G will find wide use in probing the functional role of O-GlcNAc in vertebrate brain, and it may also offer a route to blocking pathological hyperphosphorylation of tau in AD.  相似文献   
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