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71.
透明颤菌血红蛋白基因表达对金色链霉菌生长代谢的影响   总被引:4,自引:0,他引:4  
利用四环素抗性基因启动子在金色链霉菌中表达透明颤菌血红蛋白基因。在1m3发酵罐中研究了工程菌株的生长代谢特性。在溶解氧充足的条件下,透明颤菌血红蛋白表达,对金色链霉菌生长代谢未产生明显影响,工程菌株与参比菌株的生长代谢特性基本一致,工程菌株和参比菌株金霉素最终浓度分别为22905u/mL、22896u/mL。在低溶解氧条件下,透明颤菌血红蛋白的表达,可促进金色链霉菌菌体生长、菌丝活力保持和金霉素的合成:工程菌菌体浓度比参比菌株高5%~10%,产物合成提高11.4%。  相似文献   
72.
张云路  李雄  田野 《生态学报》2018,38(1):65-72
市域尺度的生态功能分区对于市域生态资源的有效保护和合理利用起着不可替代的指导作用。现阶段较为被动而静态的功能分区研究忽视了市域生态资源在城镇化发展中的剧烈变化。而景观生态学的"源-汇"概念和相关手段,将区域生态功能空间格局与不断变化的生态过程之间建立了联系,在生态功能分区科学理性的研究实践中运用前景广阔。运用景观生态学"源-汇"理论,以内蒙古通辽市为例,通过对于研究区域中"源"景观的划分,设定不同景观要素的阻力值,构建基于"源"动态特征的最小累计阻力模型,计算得出阻力面。并进一步通过寻找阻力面突变点来确定分区阈值,最终确定通辽市域尺度生态功能的5大分区,最后提出有针对性的分区管控措施与指引。研究将市域生态要素在城市化下的动态演变与生态安全格局进行有机关联并制定科学的分区策略,为市域生态空间的优化及管理提供了理论依据。  相似文献   
73.
运动性骨骼肌疲劳亚细胞机制的探讨   总被引:7,自引:0,他引:7  
本实验采用持续性下坡跑运动,观察大鼠骨骼肌运动后不同时相线粒体形态、代谢、机能等指标的变化,结果表明:大鼠运动后即刻线粒体钙含量、细胞膜丙二醛(MDA)值明显增加,ATP含量和细胞膜Na+,K+-ATP酶活性下降;运动后24h线粒体钙含量、MDA值增加最明显,ATP含量仍未恢复,细胞膜Na+,K+-ATP酶活性基本恢复,线粒体体密度、平均体积比运动前明显增加,比表面缩小;运动后48hATP含量完全恢复,线粒体钙含量、MDA值开始恢复。本研究结果提示,急性运动引起的细胞膜脂质过氧化加强、线粒体形态、代谢机能异常抑制线粒体氧化磷酸化过程、减少ATP生成可能是运动性骨骼肌疲劳的亚细胞机制之一。耐力训练可以通过改善线粒体形态、代谢、机能提高机体的运动能力。  相似文献   
74.
用VeroE6细胞从12例水痘及带状疱疹病人水疱液中分离到10株病毒,分离阳性率为83.3%。10株病毒均具有使感染细胞圆缩、融合、脱落等典型的VZV局灶性细胞病变(CPE)特点,CPE随着传代次数增加而加快。用带状疱疹恢复期病人血清作间接免疫荧光染色镜检,可见典型的感染细胞核内荧光块。10株病毒感染细胞制成的抗原片,检测5例带状疱疹病人急性期及恢复期血清,荧光抗体滴度均有4倍以上增高。VZV对Vero细胞敏感;对沙鼠肾,胎兔肾,胎豚鼠肾、肺、脾原代单层细胞不敏感;对乳小白鼠不敏感。毒种在-20℃保存一周内死亡;但在30%脱脂牛奶、20%小牛血清及10%山梨醇Eagle’s液中,液体或真空冷冻干燥-100℃可保存二年以上。  相似文献   
75.
耐温性L-谷氨酸发酵菌种的选育   总被引:1,自引:0,他引:1  
应用基因组改组技术提高,L-谷氨酸生产菌在高温发酵条件下的谷氨酸产量。以天津短杆菌T6—13变异株SW07-1为原始亲株,分别经紫外线(UV)-硫酸二乙酯(DES)和X射线诱变,获得5株耐温性能略有提高的突变菌株。经2轮基因组改组,获得耐高温(能在44℃生长)的L-谷氨酸菌株F2-50。F2—50在38℃下,摇瓶发酵40h,发酵液中L-谷氨酸浓度比原始出发菌株提高了近41%,在41℃高温下,摇瓶发酵40h,L-谷氨酸浓度比原始出发菌株提高了近2倍。  相似文献   
76.
麦套春棉主要害虫和天敌的生态位研究   总被引:5,自引:2,他引:5  
牟吉元  陈天业 《昆虫知识》1997,34(6):325-329
调查了麦套着棉不同时期内,棉株上、中、下部棉蚜AphisgossypiiGover、棉叶螨TetranychustruncatusEhara、棉铃虫Helicoverpaarmigera(Hubner)和其主要天敌的数量。求得各期害虫与害虫、害虫与天敌、天敌与天敌之间的生态位宽度和重叠指数,并分析了它们彼此在空间上的竞争关系。  相似文献   
77.
High mammalian gene expression was obtained for more than twenty different proteins in different cell types by just a few laboratory scale stable gene transfections for each protein. The stable expression vectors were constructed by inserting a naturally-occurring 1.006 kb or a synthetic 0.733 kb DNA fragment (including intron) of extremely GC-rich at the 5′ or/and 3′ flanking regions of these protein genes or their gene promoters. This experiment is the first experimental evidence showing that a non-coding extremely GC-rich DNA fragment is a super “chromatin opening element” and plays an important role in mammalian gene expression. This experiment has further indicated that chromatin-based regulation of mammalian gene expression is at least partially embedded in DNA primary structure, namely DNA GC-content.  相似文献   
78.
The microRNAs (miRNAs) are involved in multiple pathological processes among various types of tumors. However, the functions of miRNAs in benign brain tumors are largely unexplored. In order to explore the pathogenesis of the invasiveness in non-functional pituitary adenoma (NFPA), the miRNAs expression profile was analyzed between invasive and non-invasive non-functional pituitary adenoma by miRNAs microarray. Six most significant differentially expressed miRNAs were identified including four upregulated miRNAs hsa-miR-181b-5p, hsa-miR-181d, hsa-miR-191-3p, and hsa-miR-598 and two downregulated miRNAs hsa-miR-3676-5p and hsa-miR-383. The functions and corresponding signaling pathways of differentially expressed miRNAs were investigated by bioinformatics techniques, including Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis. The result of GO analysis indicates regulation of voltage-gated potassium channel activity, positive regulation of sodium ion transport, positive regulation of GTPase activity, negative regulation of Notch signaling pathway, etc. KEGG pathway reveals a series of biological processes, including prolactin signaling pathway, endocrine and other factor-regulated calcium reabsorption, fatty acid metabolism, neuroactive ligand-receptor interaction, etc. The miRNAs hsa-miR-181a-5p was verified by quantitative real-time PCR, and the expression level was in accordance with the microarray result. Our result can provide the evidence on featured miRNAs which play a prominent role in pituitary adenoma as effective biomarkers and therapeutic targets in the future.  相似文献   
79.
Qiao L  Xu Z  Zhao T  Zhao Z  Shi M  Zhao RC  Ye L  Zhang X 《Cell research》2008,18(4):500-507
Human mesenchymal stem cells (hMSCs) can home to tumor sites and inhibit the growth of tumor cells. Little is known about the underlying molecular mechanisms that link hMSCs to the targeted inhibition of tumor cells. In this study, we investigated the effects of hMSCs on two human hepatoma cell lines (H7402 and HepG2) using an animal transplantation model, a co-culture system and conditioned media from hMSCs. Animal transplantation studies showed that the latent time for tumor formation was prolonged and that the tumor size was smaller when SCID mice were injected with H7402 cells and an equal number of Z3 hMSCs. When co-cultured with Z3 cells, H7402 cell proliferation decreased, apoptosis increased, and the expression of Bcl-2, c-Myc, proliferating cell nuclear antigen (PCNA) and survivin was downregulated. After treatment with conditioned media derived from Z3 hMSC cultures, H4702 cells showed decreased colony-forming ability and decreased proliferation. Immunoblot analysis showed that beta-catenin, Bcl-2, c-Myc, PCNA and survivin expression was downregulated in H7402 and HepG2 cells. Taken together, our findings demonstrate that hMSCs inhibit the malignant phenotypes of the H7402 and HepG2 human liver cancer cell lines, which include proliferation, colony-forming ability and oncogene expression both in vitro and in vivo. Furthermore, our studies provide evidence that the Wnt signaling pathway may have a role in hMSC-mediated targeting and tumor cell inhibition.  相似文献   
80.
Li C  Li Y  Xu J  Lv J  Ma Y  Shao T  Gong B  Tan R  Xiao Y  Li X 《Gene》2011,489(2):119-129
Detection of the synergetic effects between variants, such as single-nucleotide polymorphisms (SNPs), is crucial for understanding the genetic characters of complex diseases. Here, we proposed a two-step approach to detect differentially inherited SNP modules (synergetic SNP units) from a SNP network. First, SNP-SNP interactions are identified based on prior biological knowledge, such as their adjacency on the chromosome or degree of relatedness between the functional relationships of their genes. These interactions form SNP networks. Second, disease-risk SNP modules (or sub-networks) are prioritised by their differentially inherited properties in IBD (Identity by Descent) profiles of affected and unaffected sibpairs. The search process is driven by the disease information and follows the structure of a SNP network. Simulation studies have indicated that this approach achieves high accuracy and a low false-positive rate in the identification of known disease-susceptible SNPs. Applying this method to an alcoholism dataset, we found that flexible patterns of susceptible SNP combinations do play a role in complex diseases, and some known genes were detected through these risk SNP modules. One example is GRM7, a known alcoholism gene successfully detected by a SNP module comprised of two SNPs, but neither of the two SNPs was significantly associated with the disease in single-locus analysis. These identified genes are also enriched in some pathways associated with alcoholism, including the calcium signalling pathway, axon guidance and neuroactive ligand-receptor interaction. The integration of network biology and genetic analysis provides putative functional bridges between genetic variants and candidate genes or pathways, thereby providing new insight into the aetiology of complex diseases.  相似文献   
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