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The concept of regenerating diseased myocardium by implanting engineered heart tissue (EHT) is intriguing. Yet it was limited by immune rejection and difficulties to be generated at a size with contractile properties. Somatic cell nuclear transfer is proposed as a practical strategy for generating autologous histocompatible stem (nuclear transferred embryonic stem [NT‐ES]) cells to treat diseases. Nevertheless, it is controversial as NT‐ES cells may pose risks in their therapeutic application. EHT from NT‐ES cell‐derived cardiomyocytes was generated through a series of improved techniques in a self‐made mould to keep the EHTs from contraction and provide static stretch simultaneously. After 7 days of static and mechanical stretching, respectively, the EHTs were implanted to the infarcted rat heart. Four weeks after transplantation, the suitability of EHT in heart muscle repair after myocardial infarction was evaluated by histological examination, echocardiography and multielectrode array measurement. The results showed that large (thickness/diameter, 2–4 mm/10 mm) spontaneously contracting EHTs was generated successfully. The EHTs, which were derived from NT‐ES cells, inte grated and electrically coupled to host myocardium and exerted beneficial effects on the left ventricular function of infarcted rat heart. No teratoma formation was observed in the rat heart implanted with EHTs for 4 weeks. NT‐ES cells can be used as a source of seeding cells for cardiac tissue engineering. Large contractile EHT grafts can be constructed in vitro with the ability to survive after implantation and improve myocardial performance of infarcted rat hearts.  相似文献   
134.
多作稻田生态系统对稻纵卷叶螟及其天敌功能团的影响   总被引:1,自引:0,他引:1  
林胜  杨广  尤民生  姚凤銮 《昆虫学报》2010,53(7):754-766
为探明稻田与非稻田生境时空配置对稻纵卷叶螟Cnaphalocrocis medinalis (Guenée)及其天敌功能团产生的生态学效应,分别于2007和2008年的中稻期,在福建省武夷山试验基地,采用室内观察法、田间剥查法和吸虫器法,系统调查了水稻多作系统和水稻单作系统内稻纵卷叶螟种群及其寄生蜂功能团和捕食性节肢动物个体数量的时序动态; 同时通过陷阱诱集法,调查了多作和单作稻田生境边界地表捕食性节肢动物(蜘蛛和昆虫)个体数量的时序动态,以及多作系统中,捕食性节肢动物在稻田和非稻田生境间的迁移动态。 结果表明:与辣椒、生姜、玉米和花生等镶嵌种植的稻田,其稻纵卷叶螟幼虫及其寄生蜂功能团个体数量较单一稻田差异不大,而捕食性节肢动物则明显少于单作稻田,但多作稻田边界较单作稻田边界有更多的捕食性节肢动物个体数量(2007年:多作稻田边界1984~2294个体,单作稻田边界1479个体;2008年:多作稻田边界3 417~4 178个体,单作稻田边界2 423个体)。 究其原因,主要由于多作系统中捕食性节肢动物更偏好从稻田向非稻田生境迁移,其中捕食性昆虫效应更明显。  相似文献   
135.
我国草坪科学的现状与发展   总被引:11,自引:0,他引:11  
温明章  杜生明 《生命科学》1999,11(5):218-220
本文对草坪科学的主要研究方向的进展进行了综述,指出了我国草坪研究的优势、劣势及存在的主要问题,如种质资源丰富但迫切需要保护;育种工作刚刚起步;草坪管理技术落后。还阐述了今后促进草坪科学发展的工作重点。  相似文献   
136.
Enterogenic Escherichia coli (ETEC) F18 strains are the main pathogenic bacteria causing severe diarrhea in humans and domestic animals. However, the information about synonymous codon usage pattern of ETEC F18 genome remains unclear. We conducted a genome-wide analysis of synonymous codon usage patterns in the ETEC F18 strain SRA: SAMN02471895. After filtering of the complete genome sequence, 4327 coding sequences were analyzed using multivariate statistical methods to calculate synonymous codon usage patterns and to evaluate the influence of various factors in shaping the codon usage. The mean GC content was 51.38%, with a slight preference for G/C-ending codons. Twenty-two codons were determined as ‘‘optimal codons”. ENC plots showed some of the genes were on or close to the expected curve, while only points with low-ENC values were below the curve. PR2 analysis showed that GC and AT were not used proportionally, suggesting major roles for mutational pressure and natural selection in shaping usage. Neutrality plots showed a significant correlation between GC12 and GC3, suggesting that mutational pressure is responsible for nucleotide composition in shaping the strength of codon usage. Translational selection was the main factor shaping the codon usage pattern of ETEC F18 genome, while other factors such as protein length, GRAVY and ARO values also influenced codon usage to some extent. We analyzed the codon usage pattern systematically and identified the factors shaping codon usage bias in the ETEC F18 genome. Such information further elucidates the mechanisms of synonymous codon usage bias and provides the basis of molecular genetic engineering and evolutionary studies.  相似文献   
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Role of plant stomata in bacterial invasion   总被引:1,自引:0,他引:1  
Stomata are microscopic pores in the epidermis of the aerial parts of terrestrial plants. These pores are essential for photosynthesis, as they allow CO(2) to diffuse into the plant. The size of the stomatal pore changes in response to environmental conditions, such as light intensity, air humidity and CO(2) concentrations, as part of the plant's adaptation to maximize photosynthetic efficiency and, at the same time, to minimize water loss. Historically, stomata have been considered as passive portal of entry for plant pathogenic bacteria. However, recent studies suggest that stomata can play an active role in restricting bacterial invasion as part of the plant innate immune system. Some plant pathogens have evolved specific virulence factors to overcome stomata-based defence. Interestingly, many bacterial disease outbreaks require high humidity, rain, or frost damage, which could promote stomatal opening and/or bypass stomatal defence by creating wounds as alternative entry sites. Further studies on microbial and environmental regulation of stomata-based defence should fill gaps in our understanding of bacterial pathogenesis, disease epidemiology and phyllosphere microbiology.  相似文献   
139.
EBV is detected in more and more tumors, and is relative to carcinogenesis. We studied the copies of EBV DNA in whole blood of NPC patients and healthy controls by real-time quantitative PCR. In the 73 NPC patients and 83 controls, the positive rate of EBV in blood of NPC is 46.6%, while 13.3% in control. The mean copy number is 3.9 x 10(4) copys/microgram DNA in controls, which is much higher than NPC patients (which is 1.7 x 10(5) copies/microgram DNA). EBV infection is relative with NPC, while the lytic form of EBV maybe more important than its latent form. These results suggest that whole blood EBV DNA may be a valuable tool for molecular diagnosis of NPC.  相似文献   
140.
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