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【背景】从海南热带海区中分离得到一株微藻,其生长速度快、适应力强,经鉴定该微藻为普通小球藻。【目的】提高热带普通小球藻的生长速率。【方法】以"宁波大学3#微藻培养液配方"为基础培养液,分别添加有机碳(C6H12O6和CH3COONa)对热带普通小球藻进行自养、兼养及异养培养,获得促进热带普通小球藻快速生长的培养方式。在"宁波大学3#微藻培养液配方"的基础上对热带普通小球藻的兼养培养基配方进行优化,并用优化兼养培养基与"宁波大学3#微藻培养基"对比培养热带普通小球藻。【结果】添加6 g/L CH3COONa的兼养模式促进热带普通小球藻生长效果最好;优化的兼养培养基配方为:6 g/L CH3COONa,20 mg/L(NH4)2SO4-N,5 mg/L Na H2PO4-P,3 mg/L Fe SO4-Fe,1 mg/L Vitamin B1和0.000 5 mg/L Vitamin B12。对比培养实验结果显示,培养第6天,兼养培养液收获的生物量(细胞密度)达4.20×107 cells/m L,是"宁波大学3#配方微藻培养液"的2.30倍。【结论】兼养培养模式为热带普通小球藻的最佳培养模式,优化的兼养培养基极显著地提高了热带普通小球藻的生物量(P0.01)。  相似文献   
3.
A two-step process to synthesize racemic lorcaserin was developed from 2-(4-chlorophenyl)ethanol via formation of bromide or tosylate derivatives. These derivatives were reacted with allylamine in neat conditions to provide pure N-(4-chlorophenethyl)allylammonium chloride. This compound was cyclized in neat conditions using aluminum or zinc chloride to give racemic lorcaserin. After resolution of enantiomers, the wrong enantiomer was racemized and recycled to give new R-lorcaserin.  相似文献   
4.
Current electromyography (EMG)-driven musculoskeletal models are used to estimate joint moments measured from an individual?s extremities during dynamic movement with varying levels of accuracy. The main benefit is the underlying musculoskeletal dynamics is simulated as a function of realistic, subject-specific, neural-excitation patterns provided by the EMG data. The main disadvantage is surface EMG cannot provide information on deeply located muscles. Furthermore, EMG data may be affected by cross-talk, recording and post-processing artifacts that could adversely influence the EMG?s information content. This limits the EMG-driven model?s ability to calculate the multi-muscle dynamics and the resulting joint moments about multiple degrees of freedom. We present a hybrid neuromusculoskeletal model that combines calibration, subject-specificity, EMG-driven and static optimization methods together. In this, the joint moment tracking errors are minimized by balancing the information content extracted from the experimental EMG data and from that generated by a static optimization method. Using movement data from five healthy male subjects during walking and running we explored the hybrid model?s best configuration to minimally adjust recorded EMGs and predict missing EMGs while attaining the best tracking of joint moments. Minimally adjusted and predicted excitations substantially improved the experimental joint moment tracking accuracy than current EMG-driven models. The ability of the hybrid model to predict missing muscle EMGs was also examined. The proposed hybrid model enables muscle-driven simulations of human movement while enforcing physiological constraints on muscle excitation patterns. This might have important implications for studying pathological movement for which EMG recordings are limited.  相似文献   
5.
A new strategy of multi-objective structural optimization is integrated into Austin-Moore prosthesis in order to improve its performance. The new resulting model is so-called Improved Austin-Moore. The topology optimization is considered as a conceptual design stage to sketch several kinds of hollow stems according to the daily loading cases. The shape optimization presents the detailed design stage considering several objectives. Here, A new multiplicative formulation is proposed as a performance scale in order to define the best compromise between several requirements. Numerical applications on 2D and 3D problems are carried out to show the advantages of the proposed model.  相似文献   
6.
Toll-like receptor 2 (TLR2) is a bridge between innate immunity and adaptive immunity. TLR2 agonists have been exploited as potential vaccine adjuvants and antitumor agents. However, no TLR2 agonists have been approved by FDA up to now. To discover drug-like TLR2 selective agonists, a novel series of Pam3CSK4 derivatives were designed based on the crystal structure of hTLR2-hTLR1-Pam3CSK4 complex, synthesized and evaluated for their immune-stimulatory activities. Among them, 35c was identified as a murine-specific TLR2 agonist, while 35f was a human-specific TLR2 agonist. Besides, 35d (human and murine TLR2 agonist) showed TLR2 agonistic activity comparable to Pam3CSK4, which included: elevated IL-6 expression level (EC50 = 83.08 ± 5.94 nM), up-regulated TNF-α and IL-6 mRNA expression and promoted maturation of DCs through activating the NF-κB signaling pathway. TLRs antibodies test showed that 35a and 35d were TLR2/1 agonists, while 35f was a TLR2/6 agonist.  相似文献   
7.
The biomechanical mechanisms of loss of balance have been studied before for slip condition but have not been investigated for arbitrary perturbation profiles under non-slip conditions in sagittal plane. This study aimed to determine the thresholds of center of mass (COM) velocity and position relative to the base of support (BOS) that predict forward and backward loss of balance during walking with a range of BOS perturbations. Perturbations were modeled as sinusoidal BOS motions in the vertical or anterior-posterior direction or as sagittal rotation. The human body was modeled using a seven-link model. Forward dynamics alongside with dynamic optimization were used to find the thresholds of initial COM velocity for each initial COM position that would predict forward or backward loss of balance. The effects of perturbation frequency and amplitude on these thresholds were modeled based on the simulation data. Experimental data were collected from 15 able-bodied individuals and three individuals with disability during perturbed walking. The simulation results showed similarity with the stability region reported for slip and non-slip conditions. The feasible stability region shrank when the perturbation frequency and amplitude increased, especially for larger initial COM velocities. 89.5% (70.9%) and 82.4% (68.2%) of the measured COM position and velocity combinations during low (high) perturbations were located inside the simulated limits of the stability region, for able-bodied and disabled individuals, respectively. The simulation results demonstrated the effects of different perturbation levels on the stability region. The obtained stability region can be used for developing rehabilitative programs in interactive environments.  相似文献   
8.
根据植物偏爱密码子优化设计、合成纳豆激酶基因sNK,利用重叠延伸PCR法在其中插入番茄果实特异性表达基因E8的第一内含子构成sNKi基因,通过农杆菌渗透法将这两种基因渗入到烟草NC89叶片中并实现瞬时表达。通过RT-qPCR法将两种基因在烟草叶片中转录水平的表达量进行比较,结果表明两种基因在烟草叶片中均表达,且sNKi基因的表达量显著高于sNK基因;通过纤维蛋白平板法在两种基因的瞬时表达样品中均能检测到纤溶酶活性,表明目的基因在烟草叶片中可正常翻译并表现出溶栓活性,且sNKi基因在翻译水平的表达量显著高于sNK基因。表明内含子对人工合成的纳豆激酶基因的瞬时表达具有显著的促进作用。  相似文献   
9.
短小芽胞杆菌Bacillus pumilus HR10是1株优良的菌根辅助细菌(Mycorrhiza Helper Bacteria,MHB),无论单独接种或与外生菌根真菌(Ectomycorrhizal Fungi,EMF)黄色须腹菌(Rhizopogen luteous)互作,都能显著促进马尾松(Pinus massoniana)的生长。应规模应用需要,从10种碳源、8种氮源及8种无机盐中以单因素试验初步筛选出主要组分,在此基础上采用正交试验及响应面分析法优化短小芽胞杆菌HR10增殖扩繁的培养基成分。结果表明,该菌株增殖扩繁培养基最佳组分配比为黄豆粉10.332 g/L,玉米粉7.296 g/L,蛋白胨10.718 g/L,KCl 2.5 g/L,KH2PO42.5 g/L。研究结果为菌根辅助细菌短小芽胞杆菌B.pumilus HR10菌剂开发应用提供了参考依据。  相似文献   
10.
一株桑树内生拮抗菌的分离、鉴定及发酵条件优化   总被引:3,自引:0,他引:3  
方翔  徐伟芳  牛娜  欧婷  王飞  左伟东  谢洁 《微生物学报》2018,58(12):2147-2160
【目的】利用植物内生拮抗菌防治植物病害是一种有效的生物防治手段。本研究从健康桑树中分离筛选桑椹菌核病拮抗性内生细菌,为桑椹菌核病生物防治提供优良菌种。【方法】釆用组织分离培养法及抑菌圈法分离、筛选桑椹菌核病拮抗性内生细菌;根据菌体形态、培养特征、生理生化特性及基于16S rDNA序列的系统发育分析,对抑菌活性显著且稳定的菌株进行菌种鉴定;进而利用菌丝生长速率法检测活性发酵液的抑菌谱与热稳定性,并通过单因素及正交试验优化该菌株产生抑菌活性物质的发酵条件。【结果】从健康桑树中共分离获得55株内生细菌,其中XP-27菌株对核盘菌PZ-2的抑菌活性稳定且拮抗效果明显;XP-27菌株形态、培养特征、生理生化特性与芽孢杆菌属相符,基于16S rDNA序列的系统发育分析结果显示该菌株与多株甲基营养型芽孢杆菌(Bacillus methylotrophicus)的亲缘关系最近,且处于系统发育树的同一分枝,故将XP-27菌株鉴定为甲基营养型芽孢杆菌,命名为B.methylotrophicusXP-27;抑菌谱与热稳定性实验结果表明XP-27菌株对灰霉菌SWU5、腐霉菌SWU3等10种常见植物病原菌具不同程度的抑制作用,且其发酵滤液热稳定性强;发酵条件优化结果表明该菌株最佳培养基配方与培养条件为:牛肉膏1.00%,淀粉1.50%,K_2HPO_4 0.05%,MgSO_4·7H_2O 0.10%,初始pH值为8.0,培养温度为30°C,接种量为7%,发酵时间为120 h。【结论】筛选获得的桑树内生细菌B. methylotrophicus XP-27对桑椹菌核病病原菌核盘菌PZ-2具有显著拮抗作用,可作为开发桑椹菌核病生防制剂的候选菌株。  相似文献   
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