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991.
Vivian Budnik 《Current opinion in neurobiology》1996,6(6):858-867
The Drosophila larval neuromuscular junction has recently emerged as a powerful model system to characterize the cellular and molecular events involved in the formation and flexibility of synapses. The combination of molecular, genetic, electrophysiological and anatomical approaches has revealed, for example, the functional significance of the discs-large gene product (a novel synapse-organizing protein) in the nervous system. This protein is involved in the clustering of at least one ion channel and in the structural modification of glutamatergic synapses during target muscle growth. The manipulation of the genes encoding ion channels, components of second-messenger cascades, and cell adhesion molecules is beginning to tease apart the mechanisms underlying structural synaptic plasticity. 相似文献
992.
R. M. Ranganath 《Plant biology (Stuttgart, Germany)》2003,5(1):42-49
Abstract: Meiotic products in higher plants should undergo a determined number of mitotic cycles before differentiating gametes. This creates a unique meiosis-mitosis interface, traverse of which is an absolute requirement for gametophyte development. In the absence of cytokinesis during megasporogenesis - as seen in the bisporic and tetrasporic types - the haploid nuclei produced by meiosis are driven to undergo mitotic cycles within the same cell. Similarly, the last of the mitotic cycles leads to a unique type of cell wall formation resulting in cellularization of the coenocytic female gametophyte, creating a mitosis-cellularization interface. Cell cycle regulation in terms of the molecules that interface with these two key spatio-temporal developmental settings should be of interest to both cell and developmental biologists. High throughput techniques of functional genomics are required for both interpretation of female gametophyte evolution and success of the biotechnological initiatives of transferring apomixis-related genes to crop plants. 相似文献
993.
Zlenko Valerii A. Kotikov Ilia V. Troshin Leonid P. 《Plant Cell, Tissue and Organ Culture》2002,70(3):295-299
Petioles from in vitro grown plants of interspecific grapevine hybrids cvs `Bianca', `Podarok Magaracha' and `Intervitis Magaracha' were cultured on solid NN medium supplemented with 2,4-D and BA at various concentrations. The callus developed was cultured in liquid NN medium supplemented with 0.5 mg l–1 BA to induce formation of somatic embryos. Somatic embryos of globular and heart-stage developed in suspensions of `Podarok Magaracha' and `Intervitis Magaracha'. In contrast, `Bianca' did not undergo embryogenesis beyond globular stage. This made it necessary to perform subculture of the suspensions to HTE liquid medium supplemented with 0.2 mg l–1 BA for the development of globular embryos into heart stage. Heart-stage embryos developed into torpedo-stage after subculturing suspensions of all three cultivars to liquid HTE medium supplemented with 0.1 mg l–1 IAA and 30 mg l–1 sodium hummate. Torpedo-stage embryo suspensions were subcultured in liquid HTE medium supplemented with 0.5 mg l–1 BA, 0.5 mg l–1 GA3 and 0.5 mg l–1 GA3 + 0.2 mg l–1 BA. After 12 days of incubation, plantlets were cultured on solid M2MS medium: without growth regulators and with 0.5 mg l–1 BA. Plantlets that developed in liquid HTE media with 0.5 mg l–1 GA3 or 0.5 mg l–1 GA3 + 0.2 mg l–1 BA produced 82–90% shoots on solid M2MS medium with 0.5 mg l–1 BA after 50 days of culture. 相似文献
994.
Microbial Methylotrophic Metabolism: Recent Metabolic Modeling Efforts and Their Applications In Industrial Biotechnology 下载免费PDF全文
Developing methylotrophic bacteria into cell factories that meet the chemical demand of the future could be both economical and environmentally friendly. Methane is not only an abundant, low‐cost resource but also a potent greenhouse gas, the capture of which could help to reduce greenhouse gas emissions. Rational strain design workflows rely on the availability of carefully combined knowledge often in the form of genome‐scale metabolic models to construct high‐producer organisms. In this review, the authors present the most recent genome‐scale metabolic models in aerobic methylotrophy and their applications. Further, the authors present models for the study of anaerobic methanotrophy through reverse methanogenesis and suggest organisms that may be of interest for expanding one‐carbon industrial biotechnology. Metabolic models of methylotrophs are scarce, yet they are important first steps toward rational strain‐design in these organisms. 相似文献
995.
化学催熟剂对油菜角果叶绿素含量及抗氧化酶系统的影响 总被引:2,自引:0,他引:2
采用大田试验研究了两种化学催熟剂(敌草快和农达)对生长后期油菜角果的叶绿素含量、抗氧化酶系统(CAT、SOD、POD活性)、细胞膜透性及MDA含量的影响.结果表明:采用敌草快催熟,油菜角果皮叶绿素含量下降,SOD、POD、CAT活性及细胞膜透性和MDA含量显著提高,导致角果膜脂过氧化,且作用强度随处理浓度的增加而增加;采用农达催熟,油菜角果皮叶绿素含量所受影响较小,SOD、POD和CAT活性上升缓慢,细胞膜透性和MDA含量增加不明显.随着催熟时间的推移,油菜角果保护酶活性受到不同程度的抑制,这可能与催熟剂干扰酶系统分子结构有关. 相似文献
996.
Shinozawa T Mizutani E Tomioka I Kawahara M Sasada H Matsumoto H Sato E 《Molecular reproduction and development》2004,68(3):313-318
In the present study, we examined the developmental ability of enucleated zygotes, MII oocytes, and parthenogenetically activated oocytes at pronuclear stages (parthenogenetic PNs) as recipient cytoplasm for rat embryonic cell nuclear transfer. Enucleated zygotes as recipient cytoplasm receiving two-cell nuclei allowed development to blastocysts, whereas the development of embryos reconstituted with MII oocytes and parthenogenetic PNs was arrested at the two-cell stage. Previous observations in rat two-cell embryos suggested that the distribution of microtubules is involved in two-cell arrest. Therefore, we also examined the distribution of microtubules using immunofluorescence. At the two-cell stage after nuclear transfer into enucleated zygotes, microtubules were distributed homogeneously in the cytoplasm during interphase, and normal mitotic spindles were observed in cleaving embryos from the two- to four-cell stage. In contrast, embryos reconstituted with MII oocytes and parthenogenetic PNs showed aberrant microtubule organization. In enucleated zygotes, fibrous microtubules were distributed homogeneously in the cytoplasm. In contrast, dense microtubules were localized at the subcortical area in the cytoplasm and strong immunofluorescence intensity was observed at the plasma membrane, while very weak intensity was detected in the central part of enucleated MII oocytes. In enucleated parthenogenetic PNs, high-density and fibrous microtubules were distributed in the subcortical and central areas, respectively. Pre-enucleated parthenogenetic PNs also showed lower intensity of microtubule immunofluorescence in the central cytoplasm than zygotes. In conclusion, the results of the present study showed that zygote cytoplasm is better as recipient than MII oocyte and parthenogenetic PNs for rat two-cell embryonic cell nuclear transfer to develop beyond four-cell stage. Furthermore, microtubule organization is involved in the development of reconstituted embryos to overcome the two-cell arrest. 相似文献
997.
本文以离体培养的Raji细胞为材料,采用ELLMAN方法检测了不同剂量的He-Ne激光对Raji细胞膜表面SH含量的影响。发现0.5J/cm^2He-Ne激光能量可明显增加膜表面SH含量(P〈0.05)。大于或小于此剂量的He-Ne激光对膜表面SH含量的影响均不明显(P〉0.05)。提示0.5J/cm^2的激光能量对膜有刺激作用。 相似文献
998.
999.
本文通过降低培养基中血清含量,向RPMI 1640培养基中补加三碘甲腺原氨酸而获得一种人胸腺网状上皮细胞占优势生长的培养物。在此培养基中细胞经传代培养长达90天,仍维持正常形态特征。胸腺组织在培养14天后,新生细胞的突起形成网状结构,细胞化学检查和电镜观察表明具有丰富的分泌颗粒,囊泡及张力原纤维束和桥粒等上皮细胞特征。收集合并细胞培养液,经部分纯化后检查其生物活性,表现出具有促进玫瑰花结形成和降低胸腺细胞TdT活性的作用,说明培养细胞的分泌产物具有胸腺激素活性。根据形态学,细胞化学和生物活性检测结果,我们倾向于认为该培养物主要为网状上皮细胞。 相似文献
1000.
Jabbarzadeh E Jiang T Deng M Nair LS Khan YM Laurencin CT 《Biotechnology and bioengineering》2007,98(5):1094-1102
Bone tissue engineering offers promising alternatives to repair and restore tissues. Our laboratory has employed poly(lactide-co-glycolide) PLAGA microspheres to develop a three dimensional (3-D) porous bioresorbable scaffold with a biomimetic pore structure. Osseous healing and integration with the surrounding tissue depends in part on new blood vessel formation within the porous structure. Since endothelial cells play a key role in angiogenesis (formation of new blood vessels from pre-existing vasculature), the purpose of this study was to better understand human endothelial cell attachment, viability, growth, and phenotypic expression on sintered PLAGA microsphere scaffold. Scanning electron microscopy (SEM) examination showed cells attaching to the surface of microspheres and bridging the pores between the microspheres. Cell proliferation studies indicated that cell number increased during early stages and reached a plateau between days 10 and 14. Immunofluorescent staining for actin showed that cells were proliferating three dimensionally through the scaffolds while staining for PECAM-1 (platelet endothelial cell adhesion molecule) displayed typical localization at cell-cell contacts. Gene expression analysis showed that endothelial cells grown on PLAGA scaffolds maintained their normal characteristic phenotype. The cell proliferation and phenotypic expression were independent of scaffold pore architecture. These results demonstrate that PLAGA sintered microsphere scaffolds can support the growth and biological functions of human endothelial cells. The insights from this study should aid future studies aimed at enhancing angiogenesis in three dimensional tissue engineered scaffolds. 相似文献