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1.
The formation of hyphae that grow solely by apical extension is a defining feature of filamentous fungi. Hyphal morphogenesis involves several key steps, including the establishment and maintenance of a stable polarity axis, as well as cell division via the deposition of septa. Several filamentous fungi have been employed in attempts to decipher the mechanisms underlying these steps. Amongst these fungi, Aspergillus nidulans has proven to be a particularly valuable model. The genetic tractability of this fungus coupled with the availability of sophisticated post-genomics resources has enabled the identification and characterization of numerous genes involved in hyphal morphogenesis. Here, we summarize current progress towards understanding the function of these genes and the mechanisms involved in polarized hyphal growth and septation in A. nidulans. We also highlight important areas for future investigation.  相似文献   
2.
Wavefront shaping can compensate the wavefront distortions in deep tissue focusing, leading to an improved penetration depth. However, when using the backscattered signals as the feedback, unexpected compensation bias may be introduced, resulting in focusing position deviations or even no focus in the illumination focal plane. Here we investigated the reliability of wavefront shaping based on coherent optical adaptive technique in deep tissue focusing by measuring the position deviations between the foci in the illumination focal plane and the epi‐detection plane. The experimental results show that when the penetration depth reaches 150 μm in mouse brain tissue (with scattering coefficient ~22.42 mm?1) using a 488 nm laser and an objective lens with 0.75 numerical aperture, the center of the real focus will deviate out of one radius range of the Airy disk while the optimized focus in the epi‐detection plane maintained basically at the center. With the penetration depth increases, the peak to background ratio of the focus in the illumination focal plane decreases faster than that in the epi‐detection plane. The results indicate that when the penetration depth reaches 150 μm, feedback based on backscattered signals will make wavefront shaping lose its reliability, which may provide a guidance for applications of non‐invasive precise optogenetics or deep tissue optical stimulation using wavefront shaping methods. A, Intensity distribution in the epi‐detection plane and the illumination focal plane before and after correction, corresponding to brain sections with 250 and 300 μm thickness, respectively. Scale bar is 2 μm. B, Averaged focusing deviations in the epi‐detection plane (optimized) and the illumination focal plane (monitored) after compensation. The unit of the ordinate is one Airy disk diameter. Black dashed line represents one Airy disk radius. Bars represent the SE of each measurement set.   相似文献   
3.
The purpose of this review is to provide an overview of the effects of adenovirus and influenza virus infections on obesity in various experimental models. We reviewed studies that were conducted within the past 10 years and were related to virus infection and obesity prevalence. Here, we discuss a different causal relationship between adenovirus and influenza infections with obesity. Adenovirus infection can cause obesity, whereas obesity can be a risk factor for increasing influenza virus infection and increases the risk of morbidity and mortality. The prevalence of obesity due to adenovirus infections may be due to an increase in glucose uptake and reduction in lipolysis caused by an increase in corticosterone secretion. Adenovirus infections may lead to increases in appetite by decreasing norepinephrine and leptin levels and also cause immune dysfunction. The relationship between obesity and influenza virus infection could be summarized by the following features: decreases in memory T-cell functionality and interferon (IFN)-α, IFN-β, and IFN-γ mRNA expression, increases in viral titer and infiltration, and impaired dendritic cell function in obese individuals. Moreover, leptin resistance may play an important role in increasing influenza virus infections in obese individuals. In conclusion, prevention of adenovirus infections could be a good approach for reducing obesity prevalence, and prevention of obesity could reduce influenza virus infections from the point of view of viral infections and obesity.  相似文献   
4.
Summary Lactic acid produced by continuous culture of L.casei in an upflow packed bed reactor, was recovered with Amberlite IRA 400 in a fluidized bed column. Bed expansions of 1.25 and 2.25 were applied. Reutilization did not alter the capability of net recovery of 0.048 ± 0.01 g lactic acid/g resin. When 2200 cm/h of ascensional velocity was used, (bed expansion of 2.25), the resin adsorbed 39.3% of the initial lactic acid and 63.5% was eluted. This resin supported the highest exchange capacity of 0.126 g lactic acid/g resin. Applying high flow rates, the process has potential industrial applications due to the short time employed.  相似文献   
5.
猪瘟病毒反义cDNA片段的化学合成及克隆   总被引:1,自引:0,他引:1  
涂长春  江南 《病毒学报》1992,8(4):383-385
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6.
在11种溶原性细菌系统中,以双层琼脂平板-纸片法检测药用植物肿节枫对前噬菌体的诱导作用,表明温和性噬菌体φ52 Ⅰ溶原化的金黄色葡萄球菌2009,对肿节枫的诱导反应最为敏感。其它溶原性菌株,包括曾用以筛选抗肿瘤药物的大肠杆菌K_(12)(λ)-K_(12)S系统都呈阴性反应。化学成分的进一步分析说明,仅肿节枫黄酮糖苷组分Ⅰ具有诱导活性。并与丝裂霉素C作了比较。  相似文献   
7.
Characterization of the human glucagon-receptor-encoding gene (GGR) should provide a greater understanding of blood glucose regulation and may reveal a genetic basis for the pathogenesis of diabetes. A cDNA encoding a complete functional human glucagon receptor (GGR) was isolated from a liver cDNA library by a combination of polymerase chain reaction and colony hybridization. The cDNA encodes a receptor protein with 80% identity to rat GGR that binds [125I] glucagon and transduces a signal leading to increases in the concentration of intracellular cyclic adenosine 3′,5′-monophosphate. Southern blot analysis of human DNA reveals a hybridization pattern consistent with a single GGR locus. In situ hybridization to metaphase chromosome preparations maps the GGR locus to chromosome 17q25. Analysis of the genomic sequence shows that the coding region spans over 5.5 kb and is interrupted by 12 introns.  相似文献   
8.
耐钙心肌细胞的分离和电生理特性观察   总被引:12,自引:1,他引:11  
用快速、恒压的无钙和胶原酶Tyrode液相继灌流豚鼠心脏冠脉系统后,再经无钙液室温浸泡心脏和用改变的K-B液帮助分离细胞的恢复,可获得耐钙的游离心肌细胞。全细胞电流记录:静息电位为-72±9mV(n=12),并显示出快内向电流(INa),可被异搏定阻断的慢钙离子流和时间依赖性外向钾流(Ik);单通道记录分别显示了Na+Ca2+和K+通道的电压依赖性等特征。结果表明了用此法分离的细胞具有耐钙性和正常电生理特性。  相似文献   
9.
Grain size and filling are two key determinants of grain thousand-kernel weight (TKW) and crop yield, therefore they have undergone strong selection since cereal was domesticated. Genetic dissection of the two traits will improve yield potential in crops. A quantitative trait locus significantly associated with wheat grain TKW was detected on chromosome 7AS flanked by a simple sequence repeat marker of Wmc17 in Chinese wheat 262 mini-core collection by genome-wide association study. Combined with the bulked segregant RNA-sequencing (BSR-seq) analysis of an F2 genetic segregation population with extremely different TKW traits, a candidate trehalose-6-phosphate phosphatase gene located at 135.0 Mb (CS V1.0), designated as TaTPP-7A, was identified. This gene was specifically expressed in developing grains and strongly influenced grain filling and size. Overexpression (OE) of TaTPP-7A in wheat enhanced grain TKW and wheat yield greatly. Detailed analysis revealed that OE of TaTPP-7A significantly increased the expression levels of starch synthesis- and senescence-related genes involved in abscisic acid (ABA) and ethylene pathways. Moreover, most of the sucrose metabolism and starch regulation-related genes were potentially regulated by SnRK1. In addition, TaTPP-7A is a crucial domestication- and breeding-targeted gene and it feedback regulates sucrose lysis, flux, and utilization in the grain endosperm mainly through the T6P-SnRK1 pathway and sugar–ABA interaction. Thus, we confirmed the T6P signalling pathway as the central regulatory system for sucrose allocation and source–sink interactions in wheat grains and propose that the trehalose pathway components have great potential to increase yields in cereal crops.  相似文献   
10.
核纤层蛋白B1(nuclear lamina protein B1,LMNB1)高表达于肝癌组织中,通过敲低LMNB1探讨其对肝癌细胞增殖的影响及其机制。利用siRNA在肝癌细胞中敲低LMNB1,Western blotting检测敲低效果,使用端粒重复序列扩增法(telomeric repeat amplification protocol assay,TRAP)检测其端粒酶活性变化。利用实时定量聚合酶链反应(quantitative real-time polymerase chain reaction,qPCR)检测其端粒长度变化。并通过CCK-8、克隆形成、Transwell、划痕实验检测其生长,侵袭和迁移能力变化。利用慢病毒系统构建稳定敲低LMNB1的HepG2细胞,检测其端粒长度及端粒酶活性变化,采用SA-β-gal衰老染色检测细胞衰老情况,通过裸鼠皮下成瘤实验及对肿瘤后续的组化染色,SA-β-gal衰老染色,端粒荧光原位杂交(fluorescence in situ hybridization,FISH)检测其对成瘤性的影响。最后利用生物信息分析的方法寻找LMNB1在临床肝癌组织中的表达情况,及其与临床分期、病人生存期的关系。HepG2和Hep3B中敲低LMNB1后端粒酶活性显著降低,细胞增殖、迁移和侵袭能力显著降低,细胞和裸鼠成瘤实验证明稳定敲低LMNB1后端粒酶活性降低的同时端粒长度缩短,细胞发生衰老,此外细胞成瘤性降低,Ki-67表达降低,生物信息分析结果显示,LMNB1高表达于肝癌组织,且与肿瘤分期和患者生存相关。LMNB1在肝癌细胞中过表达,其有望成为评估肝癌患者临床预后的指标和精准治疗的靶点。  相似文献   
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