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101.
风机是火电厂的重要辅机,风机工作点偏离最佳经济工况、运行中出现动叶卡瑟、喘振是风机最常见故障,如果处理不当可能导致火电厂事故停炉。通过对沙角C电厂660MW机组轴流式一次风机在运行时出现动叶卡涩、过力矩、液压油温高等一系列问题的分析,采取相应的措施进行处理,从根本上解决了一次风机的故障,对同类型一次风机的故障处理具有参考作用。 相似文献
102.
美国城市公共安全应急体系建设方法研究 总被引:2,自引:0,他引:2
全面紧急事态管理是美国公共安全管理中最基本的原则,包括全危险方法、综合紧急事态管理系统、紧急事态管理的生命周期、对各级政府及组织紧急救援资源的统一调配.美国国土安全部确定了了解、防止、保护、应对、恢复、服务和组织品质七大安全战略目标.美国联邦紧急事务管理局除制订全国防灾计划外,还制订可持续减灾计划和应急反应计划.社区应急反应小组是美国重要的市民组织队伍. 相似文献
103.
Nan-Sun Kim Jihyeon Yu Sangsu Bae Hyang Suk Kim Soyoung Park Kijong Lee Soo In Lee Jin A. Kim 《International journal of molecular sciences》2022,23(13)
The CRISPR/Cas9 site-directed gene-editing system offers great advantages for identifying gene function and crop improvement. The circadian clock measures and conveys day length information to control rhythmic hypocotyl growth in photoperiodic conditions, to achieve optimal fitness, but operates through largely unknown mechanisms. Here, we generated core circadian clock evening components, Brassica rapa PSEUDO-RESPONSE REGULATOR (BrPRR) 1a, 1b, and 1ab (both 1a and 1b double knockout) mutants, using CRISPR/Cas9 genome editing in Chinese cabbage, where 9–16 genetic edited lines of each mutant were obtained. The targeted deep sequencing showed that each mutant had 2–4 different mutation types at the target sites in the BrPRR1a and BrPRR1b genes. To identify the functions of BrPRR1a and 1b genes, hypocotyl length, and mRNA and protein levels of core circadian clock morning components, BrCCA1 (CIRCADIAN CLOCK-ASSOCIATED 1) and BrLHY (LATE ELONGATED HYPOCOTYL) a and b were examined under light/dark cycles and continuous light conditions. The BrPRR1a and 1ab double mutants showed longer hypocotyls, lower core circadian clock morning component mRNA and protein levels, and a shorter circadian rhythm than wildtype (WT). On the other hand, the BrPRR1b mutant was not significantly different from WT. These results suggested that two paralogous genes may not be associated with the same regulatory function in Chinese cabbage. Taken together, our results demonstrated that CRISPR/Cas9 is an efficient tool for achieving targeted genome modifications and elucidating the biological functions of circadian clock genes in B. rapa, for both breeding and improvement. 相似文献
104.
Haneul Lee Su Jin Kang Jimin Lee Kyong Hwa Park Won Jong Rhee 《International journal of molecular sciences》2022,23(13)
Prostate cancer (PCa) is the most commonly diagnosed malignancy among men in developed countries. The five-year survival rate for men diagnosed with early-stage PCa is approximately 100%, while it is less than 30% for castration-resistant PCa (CRPC). Currently, the detection of prostate-specific antigens as biomarkers for the prognosis of CRPC is criticized because of its low accuracy, high invasiveness, and high false-positive rate. Therefore, it is important to identify new biomarkers for prediction of CRPC progression. Extracellular vesicles (EVs) derived from tumors have been highlighted as potential markers for cancer diagnosis and prognosis. Specifically, urinary EVs directly reflect changes in the pathophysiological conditions of the urogenital system because it is exposed to prostatic secretions. Thus, detecting biomarkers in urinary EVs provides a promising approach for performing an accurate and non-invasive liquid biopsy for CPRC. In this study, we effectively isolated urinary EVs with low protein impurities using size-exclusion chromatography combined with ultrafiltration. After EV isolation and characterization, we evaluated the miRNAs in urinary EVs from healthy donors and patients with CRPC. The results indicated that miRNAs (miR-21-5p, miR-574-3p, and miR-6880-5p) could be used as potential biomarkers for the prognosis of CRPC. This analysis of urinary EVs contributes to the fast and convenient prognosis of diseases, including CRPC, in the clinical setting. 相似文献
105.
Ji Hyun Lee Ji Woong Kim Ha Rim Yang Seong-Won Song Song-Jae Lee Yeongha Jeon Anna Ju Narim Lee Min-Gu Kim Minjoo Kim Kyusang Hwang Jin Hwan Yoon Hyunbo Shim Sukmook Lee 《International journal of molecular sciences》2022,23(13)
Small-cell lung cancer (SCLC) is the most aggressive form of lung cancer and the leading cause of global cancer-related mortality. Despite the earlier identification of membrane-proximal cleavage of cell adhesion molecule 1 (CADM1) in cancers, the role of the membrane-bound fragment of CAMD1 (MF-CADM1) is yet to be clearly identified. In this study, we first isolated MF-CADM1-specific fully human single-chain variable fragments (scFvs) from the human synthetic scFv antibody library using the phage display technology. Following the selected scFv conversion to human immunoglobulin G1 (IgG1) scFv-Fc antibodies (K103.1–4), multiple characterization studies, including antibody cross-species reactivity, purity, production yield, and binding affinity, were verified. Finally, via intensive in vitro efficacy and toxicity evaluation studies, we identified K103.3 as a lead antibody that potently promotes the death of human SCLC cell lines, including NCI-H69, NCI-H146, and NCI-H187, by activated Jurkat T cells without severe endothelial toxicity. Taken together, these findings suggest that antibody-based targeting of MF-CADM1 may be an effective strategy to potentiate T cell-mediated SCLC death, and MF-CADM1 may be a novel potential therapeutic target in SCLC for antibody therapy. 相似文献
106.
计划经济向市场经济的转型是过去十年间最主要的经济事件。在这次巨变中,中国选择了一条与中东欧国家和前苏联截然不同的道路,"摸着石头过河"的渐进式改革。不同的改革方式导致了不同的改革结果。中国经历了20年的迅速增长,而俄罗斯和其他独联体国家却经历了将近10年的下降。中国和中东欧国家经济转型的实践对传统经济理论提出了挑战,也把世界各国经济学家的研究焦点从标准的价格与货币理论转向合同及其社会制度环境。 相似文献
107.
Plants have various self-defense mechanisms against biotic attacks, involving both physical and chemical barriers. Physical barriers include spines, trichomes, and cuticle layers, whereas chemical barriers include secondary metabolites (SMs) and volatile organic compounds (VOCs). Complex interactions between plants and herbivores occur. Plant responses to insect herbivory begin with the perception of physical stimuli, chemical compounds (orally secreted by insects and herbivore-induced VOCs) during feeding. Plant cell membranes then generate ion fluxes that create differences in plasma membrane potential (Vm), which provokes the initiation of signal transduction, the activation of various hormones (e.g., jasmonic acid, salicylic acid, and ethylene), and the release of VOCs and SMs. This review of recent studies of plant–herbivore–infection interactions focuses on early and late plant responses, including physical barriers, signal transduction, SM production as well as epigenetic regulation, and phytohormone responses. 相似文献
108.
Yunhua Yang Adhimoolam Karthikeyan Jinlong Yin Tongtong Jin Rui Ren Fei Fang Han Cai Mengzhuo Liu Dagang Wang Kai Li Haijian Zhi 《International journal of molecular sciences》2022,23(13)
E3-ubiquitin ligases are known to confer abiotic stress responses in plants. In the present study, GmPUB21, a novel U-box E3-ubiquitin ligase-encoding gene, was isolated from soybean and functionally characterized. The expression of GmPUB21, which possesses E3-ubiquitin ligase activity, was found to be significantly up-regulated by drought, salinity, and ABA treatments. The fusion protein GmPUB21-GFP was localized in the cytoplasm, nucleus, and plasma membrane. Transgenic lines of the Nicotiana benthamiana over-expressing GmPUB21 showed more sensitive to osmotic, salinity stress and ABA in seed germination and inhibited mannitol/NaCl-mediated stomatal closure. Moreover, higher reactive oxygen species accumulation was observed in GmPUB21 overexpressing plants after drought and salinity treatment than in wild-type (WT) plants. Contrarily, silencing of GmPUB21 in soybean plants significantly enhanced the tolerance to drought and salinity stresses. Collectively, our results revealed that GmPUB21 negatively regulates the drought and salinity tolerance by increasing the stomatal density and aperture via the ABA signaling pathway. These findings improved our understanding of the role of GmPUB21 under drought and salinity stresses in soybean. 相似文献
109.
Ping Huang Guangwei Chen Weifeng Jin Kunjun Mao Haitong Wan Yu He 《International journal of molecular sciences》2022,23(13)
Differential evolution of apoptosis, programmed necrosis, and autophagy, parthanatos is a form of cell death mediated by poly(ADP-ribose) polymerase 1 (PARP1), which is caused by DNA damage. PARP1 hyper-activation stimulates apoptosis-inducing factor (AIF) nucleus translocation, and accelerates nicotinamide adenine dinucleotide (NAD+) and adenosine triphosphate (ATP) depletion, leading to DNA fragmentation. The mechanisms of parthanatos mainly include DNA damage, PARP1 hyper-activation, PAR accumulation, NAD+ and ATP depletion, and AIF nucleus translocation. Now, it is reported that parthanatos widely exists in different diseases (tumors, retinal diseases, neurological diseases, diabetes, renal diseases, cardiovascular diseases, ischemia-reperfusion injury...). Excessive or defective parthanatos contributes to pathological cell damage; therefore, parthanatos is critical in the therapy and prevention of many diseases. In this work, the hallmarks and molecular mechanisms of parthanatos and its related disorders are summarized. The questions raised by the recent findings are also presented. Further understanding of parthanatos will provide a new treatment option for associated conditions. 相似文献
110.
一种通用的继电保护数据库模型 总被引:2,自引:0,他引:2
首先分析了公共信息模型在描述保护信息方面的不足,然后以仿真培训系统为实际应用背景,提出了一种通用的继电保护数据库模型,它能够从保护装置的内部结构和外部特征2个方面完整地表达实际的保护装置。该数据库模型允许用户在保护装置级进行保护配置,支持用户通过自定义新型号的保护装置扩展装置模型,支持装置模型升级后保护配置的自动更新,从而大大提高了保护数据库的维护效率。使用该数据库模型实现的各种仿真培训系统现场运行良好、运行维护方便,证明了该模型的有效性。 相似文献