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91.
2021年底,严重急性呼吸综合征冠状病毒2 Omicron变异株迅速取代Delta突变株在世界范围内广泛流行,其S蛋白具有36个位点突变,导致致病力和传播力发生明显变化,并且具备了免疫逃逸的能力。疫苗接种是目前疫情防控最普适的手段,研究发现,现有疫苗针对Omicron突变株的保护效果明显下降。新的免疫策略或特异性疫苗/多价疫苗针对Omicron有效性的评估均需要动物模型的支撑。在实验室条件下,利用动物模型进行活病毒攻击实验,是在体内验证保护性中和抗体、疫苗有效性的关键技术手段,本文将从动物模型方向综述国内外针对Omicron变异株的疫苗研究进展。  相似文献   
92.
93.
杨征  蔡陈崚  覃瑞 《遗传学报》2000,27(4):338-343
原癌基因ras是动物中抑制细胞凋亡的重要基因之一。以人的ras基因为探针,通过Southern杂交技术,确证玉米和水稻中均含有ras基因的同源序列;同时,运用荧光原位杂交技术,首次对ras基因在玉米中的同源序列进行了定位。结果表明:ras探针在第2号和第7号染色体上均检出了杂交信号,信号检出率分别为10.85%和14.15%,杂交信号与着丝粒的百分距离分别为 54.92± 1.90和 94.62± 2.77。上述研究结果为植物细胞凋亡的进一步研究提供了线索和帮助。  相似文献   
94.
含铬重组液激活部分缺失金属原子簇的钼铁蛋白的研究   总被引:2,自引:0,他引:2  
棕色固氮菌(Azotobacter vinelandii)固氮酶钼铁蛋白经邻菲口罗啉和O2 处理后,变为部分缺失FeMoco 和P-cluster的失活蛋白。与由K2CrO4、高柠檬酸铁、Na2S和二硫苏糖醇组成的重组液保温后,处理蛋白对乙炔和质子还原的活性都得以显著恢复;然而,它的吸收光谱和圆二色谱虽有明显恢复,但仍与还原钼铁蛋白有所不同。这表明,激活蛋白中也许存在功能与钼铁蛋白相似,而结构则有所差异的含铬(CrFe)蛋白  相似文献   
95.
The sericulture industry plays a very important role in our national economy. Silkworm (Bombyx mori) is always regarded as a model animal and biological reactor. There have been detailed studies on the structure, expression and control and molecular evolution of silk genes. However, few, if any, reports are available on the localization of structural genes in silkworm by molecular cytogenetics. The present experiment has tentatively localized theFib-H gene at the distal end of the 25th linkage group, namely at the 25-0.0 position, and verified thatFib-H has only one locus, thus providing a temporary solution to the problem about its localization.  相似文献   
96.
新疆罗布麻生态类型及其纤维品质研究   总被引:7,自引:0,他引:7  
新疆塔里木河及叶尔羌河流域是我国能够提供商品精干罗布麻的主要地区。由于野生罗布麻生长高矮不一,形态各异,与其纤维品质的相关性较大。通过40个株号的罗布麻植株形态和纤维长度等的的测定,分析各类型罗布麻的纤维长度和罗布麻植株各部分纤维长度情况。研究结果表明:罗布红麻高杆类型主茎纤维最长,罗布麻放牧类型纤维最短。罗布麻植株各部分纤维长度是主茎上的大于分枝,主茎中部的最长,基部和梢部最短。为野生罗布麻资源开发利用提科学依据。  相似文献   
97.
Experiments were performed to determine the influence of gibberellic acid (GA3) and benzyladenine (BA) on organogenesis of lsquo;Crimson Giantrsquo; Easter cactus [Hatiora gaertneri (Regel) Barthlott] phylloclades cultured in vitro. The numbers of flower buds and new phylloclades increased linearly as BA concentration increased from 0 to 444.1 micro;M. GA3 increased the number of new phylloclades when present in moderate concentrations (2.9 or 28.9 micro;M), but inhibited flower bud formation when present in concentrations as low as 0.3 micro;M. The inhibitory effect of GA3 on flower bud formation was diminished when the medium was amended with BA at 44.4 or 444.1 micro;M. Explants cultured in media that contained 288.7 micro;M GA3 produced fewer organs (new phylloclades plus flower buds) compared to those cultured in media with 0, 0.3, 2.9, or 28.9 micro;M GA3. BA and GA3 concentrations also affected the percentage of explants with flower buds and the percentage of explants with new phylloclades. This study shows that organogenesis in H. gaertneri can be controlled by varying the concentrations of BA and GA3 in the culture medium.  相似文献   
98.
Glioblastoma is the most common and aggressive brain tumor type, with a mean patient survival of approximately 1 year. Many previous analyses of the glioma kinome have identified key deregulated pathways that converge and activate mammalian target of rapamycin (mTOR). Following the identification and characterization of mTOR-promoting activity in gliomagenesis, data from preclinical studies suggested the targeting of mTOR by rapamycin or its analogs (rapalogs) as a promising therapeutic approach. However, clinical trials with rapalogs have shown very limited efficacy on glioma due to the development of resistance mechanisms. Analysis of rapalog-insensitive glioma cells has revealed increased activity of growth and survival pathways compensating for mTOR inhibition by rapalogs that are suitable for therapeutic intervention. In addition, recently developed mTOR inhibitors show high anti-glioma activity. In this review, we recapitulate the regulation of mTOR signaling and its involvement in gliomagenesis, discuss mechanisms resulting in resistance to rapalogs, and speculate on strategies to overcome resistance. This article is part of a Special Issue entitled: Inhibitors of Protein Kinases (2012).  相似文献   
99.
Crosslinked polystyrene resins containing a low level of either basic or acidic groups were used for supports of alpha-chymotrypsin (CT), which catalyzed the transesterification of N-acetyl-L-phenylalanine ethyl ester (AcPheOEt) with propanol in toluene. With a minimal amount of water, CT was sorbed to the resins, basic or acidic groups of which were partly or fully neutralized by several soluble acids or bases. With an increasing degree of neutralization of basic resins by free acids, the rate of disappearance of AcPheOEt was decreased, whereas the by-product formation of AcPheOH, due to hydrolysis, was considerably suppressed, compared with the ester-exchange product, AcPheOPr. The pK(a) value of the neutralizing acid was also important for both CT activity and reaction selectivity. AcPheOPr was selectively produced at a certain range of pK(a) values. On the other hand, the neutralization of acidic resins with free amines enhanced the CT activity but a strong base promoted the formation of hydrolysis product. (c) 1995 John Wiley & Sons, Inc.  相似文献   
100.
Achieving high-performance in all-small-molecule organic solar cells (ASM-OSCs) significantly relies on precise nanoscale phase separation through domain size manipulation in the active layer. Nonetheless, for ASM-OSC systems, forging a clear connection between the tuning of domain size and the intricacies of phase separation proves to be a formidable challenge. This study investigates the intricate interplay between domain size adjustment and the creation of optimal phase separation morphology, crucial for ASM-OSCs’ performance. It is demonstrated that exceptional phase separation in ASM-OSCs’ active layer is achieved by meticulously controlling the continuity and uniformity of domains via re-packing process. A series of halogen-substituted solvents (Fluorobenzene, Chlorobenzene, Bromobenzene, and Iodobenzene) is adopted to tune the re-packing kinetics, the ASM-OSCs treated with CB exhibited an impressive 16.2% power conversion efficiency (PCE). The PCE enhancement can be attributed to the gradual crystallization process, promoting a smoothly interconnected and uniformly distributed domain size. This, in turn, leads to a favorable phase separation morphology, enhanced charge transfer, extended carrier lifetime, and consequently, reduced recombination of free charges. The findings emphasize the pivotal role of re-packing kinetics in achieving optimal phase separation in ASM-OSCs, offering valuable insights for designing high-performance ASM-OSCs fabrication strategies.  相似文献   
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