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Congenital heart disease (CHD) is the most common birth defect, affecting approximately 1% of live births. Genetic and environmental factors are leading factors to CHD, but the mechanism of CHD pathogenesis remains unclear. Circular RNAs (circRNAs) are kinds of endogenous non‐coding RNAs (ncRNAs) involved in a variety of physiological and pathological processes, especially in heart diseases. In this study, three significant differently expressed circRNA between maternal embryonic day (E) E13 and E17 was found by microarray assay. Among them, the content of circ‐RCCD increases with the development of heart and was enriched in primary cardiomyocytes of different species, which arouses our attention. Functional experiments revealed that inhibition of circ‐RCCD dramatically suppressed the formation of beating cell clusters, the fluorescence intensity of cardiac differentiation marker MF20, and the expression of the myocardial‐specific markers CTnT, Mef2c, and GATA4. Next, we found that circ‐RCCD was involved in cardiomyocyte differentiation through negative regulation of MyD88 expression. Further experiments proved that circ‐RCCD inhibited MyD88 levels by recruiting YY1 to the promoter of MyD88; circ‐RCCD inhibited nuclear translocation of YY1. These results reported that circ‐RCCD promoted cardiomyocyte differentiation by recruiting YY1 to the promoter of MyD88. And, this study provided a potential role and molecular mechanism of circ‐RCCD as a target for the treatment of CHD.  相似文献   
23.
Cellular senescence triggers various types of heterochromatin remodeling that contribute to aging. However, the age-related mechanisms that lead to these epigenetic alterations remain elusive. Here, we asked how two key aging hallmarks, telomere shortening and constitutive heterochromatin loss, are mechanistically connected during senescence. We show that, at the onset of senescence, pericentromeric heterochromatin is specifically dismantled consisting of chromatin decondensation, accumulation of DNA breakages, illegitimate recombination and loss of DNA. This process is caused by telomere shortening or genotoxic stress by a sequence of events starting from TP53-dependent downregulation of the telomere protective protein TRF2. The resulting loss of TRF2 at pericentromeres triggers DNA breaks activating ATM, which in turn leads to heterochromatin decondensation by releasing KAP1 and Lamin B1, recombination and satellite DNA excision found in the cytosol associated with cGAS. This TP53–TRF2 axis activates the interferon response and the formation of chromosome rearrangements when the cells escape the senescent growth arrest. Overall, these results reveal the role of TP53 as pericentromeric disassembler and define the basic principles of how a TP53-dependent senescence inducer hierarchically leads to selective pericentromeric dismantling through the downregulation of TRF2.  相似文献   
24.
发酵液内氨甲酰妥布拉霉素的定量测定   总被引:2,自引:2,他引:0  
报道了应用一种以测量图象面积为指标的Zy-300A多功能抑菌圈测量仪,能够精确、稳定、快速地测定发酵液经薄层层析生物显迹后单组分氨甲酰妥布拉霉素的抑菌斑面积,然后从绘制的标准曲线中直接读取氨甲酸妥布拉霉素在发酵液中的含量,从而排除了其他组分对测定的干扰。试验证明,用Zy-300A多功能抑菌圈测量仪测定抗生素薄层层析生物显迹的抑菌斑,具有线性宽、精密度高、重复性强、操作简单方便等优点.本方法的建立为抗生素的纯品检定和多组分抗生素发酵、分离和纯化提供了准确的定量数据.  相似文献   
25.
大兴安岭地区粘细菌资源的多样性及其生物活性   总被引:1,自引:0,他引:1  
【背景】粘细菌是一类具有社会性行为的高等原核生物,其代谢产物具有丰富、多样、新颖的生物活性,是筛选天然药物的良好资源,具有很大的研究开发应用价值。【目的】分析大兴安岭地区粘细菌资源的多样性;分离纯化可培养的粘细菌,分析其抗菌活性并从中筛选对马铃薯晚疫病菌具有拮抗作用的菌株。【方法】通过变性梯度凝胶电泳(DGGE)技术对从大兴安岭地区采集的15个土样中粘细菌资源的多样性进行分析,利用兔粪诱导、大肠杆菌划线诱导和滤纸诱导3种方法从土样中分离可培养的粘细菌,结合形态观察、生理生化特征和16S rRNA基因序列分析确定这些菌株的分类地位,通过平板对峙法对其进行抗菌活性分析。【结果】DGGE的分析结果显示,15个土样中共鉴定到13个属的粘细菌,基本覆盖了大部分已知的粘细菌种属以及部分未分类的粘细菌,表现出了丰富的多样性。共分离得到88株菌,从中得到22株纯菌,经鉴定属于2个属(粘球菌属与珊瑚球菌属)8个种(黄色粘球菌、橙色粘球菌、变绿粘球菌、珊瑚粘球菌、具枝粘球菌、大孢珊瑚球菌、弱小珊瑚球菌和珊瑚状珊瑚球菌)。抗菌结果显示:22株纯菌均表现出可以对一种甚至多种指示菌产生抗性,其中19株抑制大肠杆菌的生长,14株抑制马铃薯晚疫病菌的生长,8株抑制金黄色葡萄球菌的生长,13株抑制酿酒酵母菌的生长,7株抑制枯草芽孢杆菌的生长。【结论】内蒙古大兴安岭地区蕴藏着丰富的粘细菌资源,粘球菌属及珊瑚球菌属可能为该地区粘细菌菌群中的优势菌。分离纯化出的粘细菌菌株均表现出抑制一种甚至多种指示菌生长的活性,其中64%的纯菌对马铃薯晚疫病菌产生抗性,具有进一步研究的潜在价值。  相似文献   
26.
Mud volcanoes (MVs) emit globally significant quantities of methane into the atmosphere, however, methane cycling in such environments is not yet fully understood, as the roles of microbes and their associated biogeochemical processes have been largely overlooked. Here, we used data from high‐throughput sequencing of microbial 16S rRNA gene amplicons from six MVs in the Junggar Basin in northwest China to quantify patterns of diversity and characterize the community structure of archaea and bacteria. We found anaerobic methanotrophs and diverse sulfate‐ and iron‐reducing microbes in all of the samples, and the diversity of both archaeal and bacterial communities was strongly linked to the concentrations of sulfate, iron and nitrate, which could act as electron acceptors in anaerobic oxidation of methane (AOM). The impacts of sulfate/iron/nitrate on AOM in the MVs were verified by microcosm experiments. Further, two representative MVs were selected to explore the microbial interactions based on phylogenetic molecular ecological networks. The sites showed distinct network structures, key species and microbial interactions, with more complex and numerous linkages between methane‐cycling microbes and their partners being observed in the iron/sulfate‐rich MV. These findings suggest that electron acceptors are important factors driving the structure of microbial communities in these methane‐rich environments.  相似文献   
27.
薏苡胚发育及贮藏营养物质积累的研究   总被引:4,自引:0,他引:4  
薏苡(Coix lacrym a-jobi)胚发育分下列各期:棒形胚前的原胚期、棒形胚期、胚芽鞘期、1叶期、2 叶期、3叶期、4 叶期、5 叶期及6叶期成熟胚。3 叶期胚具1 条不定根(种子根),4 叶期具2 条,5 叶期及成熟胚期具3 条。不定根与胚根排成1 纵行。营养物质最先在盾片细胞中积累。开花后9 天的1 叶期胚,在盾片、胚芽鞘及胚轴细胞中积累了淀粉,以后遍及成熟胚的各部分。淀粉粒含量与器官发生及生长顺序成正相关,但发育后期,盾片细胞内的淀粉粒含量下降。开花后10 天,盾片细胞中形成含晶体的蛋白质体,晶体含蛋白质及植酸钙镁。以后,这种蛋白质体增多、增大。同时,又形成不含晶体的蛋白质体。一定时期,含晶体的蛋白质体消失,不含晶体的蛋白质体增多,直到胚成熟。开花后13 天,胚芽鞘上部细胞形成蛋白质体。以后遍及成熟胚的各部分,器官发生越早,所含蛋白质体越多、越大。开花后10 天,盾片细胞中产生了脂体,成熟胚的盾片细胞,含有大量的脂体。还观察了胚发育各期与颖果及盾片长度的对应关系  相似文献   
28.
The objectives of this research were to determine the variation of chemical composition across botanical fractions of cornstover, and to probe the potential of Fourier transform near-infrared (FT-NIR) techniques in qualitatively classifying separated cornstover fractions and in quantitatively analyzing chemical compositions of cornstover by developing calibration models to predict chemical compositions of cornstover based on FT-NIR spectra. Large variations of cornstover chemical composition for wide calibration ranges, which is required by a reliable calibration model, were achieved by manually separating the cornstover samples into six botanical fractions, and their chemical compositions were determined by conventional wet chemical analyses, which proved that chemical composition varies significantly among different botanical fractions of cornstover. Different botanic fractions, having total saccharide content in descending order, are husk, sheath, pith, rind, leaf, and node. Based on FT-NIR spectra acquired on the biomass, classification by Soft Independent Modeling of Class Analogy (SIMCA) was employed to conduct qualitative classification of cornstover fractions, and partial least square (PLS) regression was used for quantitative chemical composition analysis. SIMCA was successfully demonstrated in classifying botanical fractions of cornstover. The developed PLS model yielded root mean square error of prediction (RMSEP %w/w) of 0.92, 1.03, 0.17, 0.27, 0.21, 1.12, and 0.57 for glucan, xylan, galactan, arabinan, mannan, lignin, and ash, respectively. The results showed the potential of FT-NIR techniques in combination with multivariate analysis to be utilized by biomass feedstock suppliers, bioethanol manufacturers, and bio-power producers in order to better manage bioenergy feedstocks and enhance bioconversion.  相似文献   
29.
Cai L  Ye Z  Zhou BY  Mali P  Zhou C  Cheng L 《Cell research》2007,17(1):62-72
We previously showed that Wnt3a could stimulate human embryonic stem (hES) cell proliferation and affect cell fate determination. In the absence of feeder cell--derived factors, hES cells cultured under a feeder-free condition survived and proliferated poorly. Adding recombinant Wnt3a in the absence of feeder cell derived-factors stimulated hES cell proliferation but also differentiation. In the present study, we further extended our analysis to other Wnt ligands such as Wntl and Wnt5a. While Wntl displayed a similar effect on hES cells as Wnt3a, Wnt5a had little effect in this system. Wnt3a and Wntl enhanced proliferation of undifferentiated hES cells when feeder-derived self-renewal factors and bFGF are also present. To explore the possibility to promote the proliferation of undifferentiated hES cells by activating the Wnt signaling, we overexpressed Wnt3a or Wntl gene in immortalized human adult fibroblast (HAFi) cells that are superior in supporting long-term growth of undifferentiated hES cells than primary mouse embryonic fibroblasts. HAFi cells with or without a Wnt tmnsgene can be propagated indefinitely. Over-expression of the Wnt3a gene significantly enhanced the ability of HAFi feeder cells to support the undifferentiated growth of 3 different hES cell lines we tested. Co-expression of three commonly-used drug selection genes in Wnt3a-overpressing HAFi cells further enabled us to select rare hES clones after stable transfection or transduction. These immortalized engineered feeder cells (W3R) that co-express growth-promoting genes such as Wnt3a and three drug selection genes should empower us to efficiently make genetic modified hES cell lines for basic and translational research.  相似文献   
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