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111.
牛体外受精早期胚胎与小鼠胎仔成纤维细胞共培养的研究 总被引:1,自引:0,他引:1
探讨了人工合成培养液CR1aa和小鼠胎仔成纤维细胞对牛体外受精早期胚胎体外发育的影响。结果表明,牛体外受精卵在CR1aa液中的卵裂率达76.2%,8细胞胚的比率达44.8%。小鼠胎仔成纤维细胞能够显著促进牛体外受精的早期囊胚以上胚胎的发育。牛体外受精后第5、6天的早期胚胎分别与小鼠胎仔成纤维细胞共培养,在受精后第7天发育至囊胚以上的比率分别达19.8%和24.6%;受精后第8天,孵化的囊胚比例分别达5.2%和7.5%。实验表明,受精后第5、6天的牛体外受精早期胚胎与小鼠胎仔成纤维细胞共培养,可显著提高扩张囊胚和孵化囊胚数量。小鼠成纤维细胞对胚胎发育的支持作用取决于胚胎发育阶段 相似文献
112.
为构建表达牛分枝杆菌(M.bovis)PE_PGRS62蛋白的重组耻垢分枝杆菌,本研究以M.bovis基因组DNA为模板PCR扩增PE_PGRS62基因,获得大小约为1 515 bp的目的片段,并克隆到大肠杆菌-分枝杆菌穿梭表达载体pMV261中,将重组pMV-PE_PGRS62穿梭表达载体电转化到耻垢分枝杆菌内,42℃热诱导重组耻垢分枝杆菌,通过SDS-PAGE和免疫印迹分析表达产物并鉴定其生物学活性。经SDS-PAGE分析,表达的PE_PGRS62蛋白分子量约为60 ku,免疫印迹结果表明,表达的PE_PGRS62蛋白与兔抗M.bovis阳性血清反应形成一条特异性蛋白条带。本实验为进一步研究M.bovis致病机理奠定了基础。 相似文献
113.
为了解我国不同地区棉蚜Aphis gossypii对吡虫啉和氟啶虫胺腈的抗性现状,对代表性棉区棉蚜田间种群进行抗药性监测,同时通过构建具有R81T及V62I单突变和R81T-V62I共同突变的棉蚜烟碱型乙酰胆碱受体(nicotinic acetylcholine receptor,nAChR)蛋白模型,与吡虫啉和氟啶虫胺腈进行分子对接,分析这些突变在吡虫啉和氟啶虫胺腈抗性中的作用,并分析吡虫啉和氟啶虫胺腈之间是否存在交互抗性。结果显示,不同地区棉蚜对吡虫啉产生了高水平抗性,抗性倍数为174.70~56 409.18,对氟啶虫胺腈产生了低至中等水平抗性,抗性倍数为7.35~44.63,说明不同地区的棉蚜对氟啶虫胺腈的敏感度高于吡虫啉,且吡虫啉抗性和氟啶虫胺腈抗性间不存在相关性。R81T、V62I单突变和R81T-V62I共同突变导致吡虫啉与棉蚜nAChR的亲和力降低,对氟啶虫胺腈与棉蚜nAChR的结合无明显影响。R81T及V62I单突变和R81T-V62I共同突变导致棉蚜对吡虫啉产生靶标抗性,但是对氟啶虫胺腈的抗性无明显影响,这些突变不会导致吡虫啉与氟啶虫胺腈产生靶标突变的交互抗性。 相似文献
114.
《国际水土保持研究(英文)》2022,10(3):433-444
Soil aggregate breakdown is the first key factor that causes soil erosion. At present, research on the mechanisms of soil aggregate breakdown during rainfall is common. However, the research to on quantifying the relative contributions of internal and external forces to aggregate breakdown remains limited. This paper was conducted to analyse the relative contribution of internal and external forces to aggregate disintegration and the factors affecting aggregate stability during rainfall. Soil aggregates with a series of textures were selected as test soil samples; deionized water was employed as the soaking solution and rainfall material in static disintegration experiments and rainfall simulation tests. The effect of internal force (soil hydrophilicity) on aggregate disintegration was analysed by the static disintegration method, and the combined effects of internal force (soil hydrophilicity) and external force (raindrop impact) on soil aggregate breakdown were analysed by rainfall simulation experiments. The results indicated that external force caused more severe soil aggregate breakdown than internal force, and the crushed aggregate was mainly distributed in the range of 2–0.25 mm. With increasing rainfall kinetic energy, the degree of aggregate breakdown increased gradually, and the degree of aggregation of the soil particles decreased gradually. Furthermore, soil aggregates with a high clay content (> 30%) were more stable than medium-clay (20–30%) and low-clay (< 20%) soil aggregates, and the correlation coefficient provided a good representation of the relationship between the clay content and soil aggregate stability index (ASI). Therefore, external force contributed more to soil aggregate breakdown than internal force during rainfall, and clay plays an important role in aggregate stability. The results of this study are of great significance for elaborating the mechanism and factors affecting aggregate breakdown. 相似文献