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Lectin microarrays have emerged as a novel platform for glycan analysis during recent years. Here, we have combined surface plasmon resonance imaging (SPRi) with the lectin microarray for rapid and label-free profiling of stem cells. In this direction, 40 lectins from seven different glyco-binding motifs and three different cell lines—mouse embryonic stem cells (mESCs), mouse-induced pluripotent stem cells (miPSCs), and mouse embryonic fibroblast stem cells (MEFs)—were used. Pluripotent mouse stem cells were clearly distinguished from non-pluripotent stem cells. Eight lectins—DBA, MAL, PHA_E, PHA_L, EEL, AAL, PNA, and SNA—generated maximal value to define pluripotency of mouse stem cells in our experiments. The discriminant function based on lectin reactivities was highly accurate for the determination of stem cell pluripotency. These results suggested that glycomic analysis of stem cells leads to a novel comprehensive approach for quality control in cell-based therapy and regenerative medicine. 相似文献
63.
Key aspects of seed development in flowering plants are held to be under epigenetic control and to have evolved as a result of conflict between the interests of the male and female gametes (kinship theory). Attempts to identify the genes involved have focused on imprinted sequences, although imprinting is only one mechanism by which male or female parental alleles may be exclusively expressed immediately post-fertilization. We have studied the expression of a subset of endosperm gene classes immediately following interploidy crosses in maize and show that departure from the normal 2 : 1 ratio between female and male genomes exerts a dramatic effect on the timing of expression of some, but not all, genes investigated. Paternal genomic excess prolongs the expression of early genes and delays accumulation of reserves, while maternal genomic excess foreshortens the expression period of early genes and dramatically brings forward endosperm maturation. Our data point to a striking interdependence between the phases of endosperm development, and are consonant with previous work from maize showing progression from cell proliferation to endoreduplication is regulated by the balance between maternal and paternal genomes, and from Arabidopsis suggesting that this ‘phasing’ is regulated by maternally expressed imprinted genes. Our findings are discussed in context of the kinship theory. 相似文献
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圆叶蒙桑的组织培养与快速繁殖 总被引:1,自引:0,他引:1
1植物名称圆叶蒙桑(Morus mongolica var.rotundifolia)。2材料类别茎及茎尖。3培养条件以MS为基本培养基。(1)诱导及增殖培养基:MS+6-BA1mg·L-1(单位下同)+NAA0.1。(2)生根培养基:1/2MS+IBA1。以上培养基中均加入3%的蔗糖和0.8%琼脂,pH5.8。培养温度为(24±2)℃,光照时间12h·d-1,光强40μmol·m-2·s-1左右。4生长与分化情况4.1芽的诱导采集无病虫害、生长健壮的圆叶蒙桑枝条,剪掉叶片后用流水冲洗干净,在超净台上,剪成0.5~1.0cm的茎段和茎尖,放置在75%的酒精中浸泡20s,无菌水冲洗3~4遍,用次氯酸钠灭菌10min,再用无菌水冲洗3~4… 相似文献
66.
猪IGF2基因的遗传多态性及其遗传效应分析 总被引:9,自引:0,他引:9
采用PCR-SSCP方法检测胰岛素样生长因子2 (insulin-like growth factor 2, IGF2)基因外显子7, 8, 9的多态性, 并分析其对初生重、断奶重、6月龄重和6月龄背膘厚的遗传效应。根据猪IGF2基因的DNA序列(AY044828)设计3对引物, 结果在Ex8引物对扩增的片段上发现了多态性, 并对纯合子进行测序, 发现exon8的53位存在C→T转换, 且检测到3种基因型(AA、AB、BB)。统计结果表明, 3种基因型在各品种中的分布不一致, 长白猪与大白猪比较, 莱芜猪与大薄莲猪比较, 沂蒙黑猪和里岔黑猪比较差异不显著(P > 0.05); 其他猪种间基因型分布的差异均显著(P < 0.01)。固定效应模型分析结果表明, 初生重和6月龄背膘厚基因型间差异显著(P < 0.05), 而断奶重和6月龄重基因型间差异不显著(P > 0.05)。最小二乘分析结果表明, BB基因型个体同AA和AB基因型个体比较初生重的差异显著(P < 0.05), 3种基因型在初生重的大小排列顺序为AB > AA > BB; AA基因型个体同AB和BB基因型个体比较6月龄背膘厚的差异显著(P < 0.05), 3种基因型在6月龄背膘厚的大小排列顺序为BB > AB > AA。因此, 推测IGF2基因对个体的初生重和胴体瘦肉率存在一定的影响, 将IGF2基因应用于猪育种过程中的标记辅助选择可以加快猪的育种进程。 相似文献
67.
该文选取浙江省古田山亚热带常绿阔叶林72种木本植物,探究气候因素、系统发育关系和功能性状对亚热带常绿阔叶林叶衰老物候的影响。结果表明,叶变色期在9—12月,落叶期在10—12月。每月落叶物种数与月均温、月均降水量和月均日照时数没有显著相关性,每月叶变色物种数与月均温和月均日照时数呈弱相关;落叶性对叶变色期和落叶期具有显著影响;植物间系统发育关系对叶变色期和落叶期没有显著影响。因此,生物和非生物因子都会影响常绿阔叶树种的叶衰老,这对于提高秋季物候预测模型具有重要价值。 相似文献
68.
环状RNA(circular RNA, circRNA)作为竞争性内源RNA(competitive endogenous RNA, ceRNA)在细胞分化调控中发挥着重要作用。本研究旨在对猪环状RNA IGF1R(circular RNA insulin-like growth factor 1 receptor, circIGF1R)进行鉴定及分析,探明其表达规律,构建猪circIGF1R相关的ceRNA调控网络,并探究其异位表达对小鼠间充质干细胞(C3H10T1/2)成脂分化的调控作用。通过正反向引物PCR、Sanger测序、RNase R酶消化检测和qRT-PCR验证circIGF1R是胰岛素样生长因子1受体(insulin-like growth factor 1 receptor, IGF1R)第二外显子形成的circRNA,它在猪各组织中均有表达,且其表达量在脂肪组织中随日龄增加呈上升趋势;使用miRDB、TargetScan和miRWalk在线软件预测circIGF1R靶基因,运用RNAhybrid软件进行结合位点预测,使用DAVID生物信息功能分析软件对候选靶基因进行GO和KEGG富集分析,运用Cytoscape软件构建ceRNA网络,基于基因表达相关性和预测的靶标关系,绘制了GO和KEGG富集分析及构建了ceRNA网络;双荧光素酶报告基因分析证明circIGF1R及FABP4可与ssc (Sus scrofa chromosome) -miR-133a-5p结合;成功构建circIGF1R过表达载体,在间充质干细胞C3H10T1/2中异位表达,过表达circIGF1R后关键成脂调控因子CEBPα、CEBPβ、FABP4和PPARγ极显著升高(P<0.01),脂滴数量显著增加。本研究结果证明,circIGF1R在猪脂肪组织中存在,并且可能通过ceRNA机制正调控C3H10T1/2细胞成脂分化,为进一步研究circIGF1R调控猪前体肌内脂肪细胞成脂分化奠定理论基础。 相似文献
69.
Haowei Ni Xiaoyan Jing Xian Xiao Na Zhang Xiaoyue Wang Yueyu Sui Bo Sun Yuting Liang 《The ISME journal》2021,15(9):2561
Understanding the effects of changing climate and long-term human activities on soil organic carbon (SOC) and the mediating roles of microorganisms is critical to maintain soil C stability in agricultural ecosystem. Here, we took samples from a long-term soil transplantation experiment, in which large transects of Mollisol soil in a cold temperate region were translocated to warm temperate and mid-subtropical regions to simulate different climate conditions, with a fertilization treatment on top. This study aimed to understand fertilization effect on SOC and the role of soil microorganisms featured after long-term community incubation in warm climates. After 12 years of soil transplantation, fertilization led to less reduction of SOC, in which aromatic C increased and the consumption of O-alkyl C and carbonyl C decreased. Soil live microbes were analyzed using propidium monoazide to remove DNAs from dead cells, and their network modulization explained 60.4% of variations in soil labile C. Single-cell Raman spectroscopy combined with D2O isotope labeling indicated a higher metabolic activity of live microbes to use easily degradable C after soil transplantation. Compared with non-fertilization, there was a significant decrease in soil α- and β-glucosidase and delay on microbial growth with fertilization in warmer climate. Moreover, fertilization significantly increased microbial necromass as indicated by amino sugar content, and its contribution to soil resistant C reached 22.3%. This study evidentially highlights the substantial contribution of soil microbial metabolism and necromass to refractory C of SOC with addition of nutrients in the long-term.Subject terms: Microbial ecology, Biodiversity 相似文献
70.