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991.
992.
【背景】黑色素具有抗肿瘤、抗辐射等多种生物活性,在生产和生活中具有巨大的应用潜力,通过真菌生产是获取黑色素的一条重要途径,它与动植物相比具有更短的生产周期和更高的产量,并且易于实现商业应用。【目的】揭示真菌黑色素的生产及应用发展情况和创新趋势,为致力于真菌黑色素产业的科研人员和企业提供参考。【方法】基于Inco Pat科技创新情报平台,通过对全球真菌黑色素相关专利进行检索统计,从专利涉及的菌株、专利技术构成、申请人专利价值等多维度对真菌黑色素相关专利进行深入分析。【结果】真菌黑色素在生产制备领域申请专利数量最多(50.56%),作为化工染料和化妆品原料应用的专利申请数量最少(13.48%),涉及的真菌菌属主要有层孔菌属、短梗霉属、木耳属、纤孔菌属、粒毛盘菌属、灵芝属和曲霉属。目前真菌黑色素专利技术申请的热点领域主要在C12 (微生物发酵、培养基、突变或遗传工程)类和A61 (医学)类,并且在未来一段时间内,C12和A61将继续作为热点技术申请领域。中国申请的真菌黑色素专利数量最多,但拥有的高价值专利比例较低,较国外仍具有一定差距。【结论】我国科研人员需要加强在医药和化工领域核心专利技术的创新应用与海外布局,增强与企业的合作研发和技术转移,以抢占真菌黑色素在这些领域的应用市场,并推动真菌黑色素相关专利向高质量发展。 相似文献
993.
【背景】随着越来越多超级细菌出现和抗生素资源的渐渐枯竭,细菌耐药机制研究愈加重要。【目的】探讨大肠杆菌内源半胱氨酸推动Fenton反应,调控胞内的活性氧水平,从而影响细菌耐药性这一代谢途径。【方法】在贫硫的培养条件下,通过控制外源胱氨酸和抗生素浓度,研究了胱氨酸/半胱氨酸对大肠杆菌耐药性的影响。【结果】较低水平的半胱氨酸使大肠杆菌对抗生素的耐药性增强,RNA-Seq的结果证明了胱氨酸内流对Fur、CysB和SOS的调控作用。LC-MS对外流硫醇的分析显示,细胞会快速将过量内流的半胱氨酸泵出胞外。在抗生素一定浓度范围内,半胱氨酸外排泵AlaE表现出良好的细胞保护作用。【结论】大肠杆菌对不同作用机理抗生素硫酸庆大霉素、氨苄青霉素和诺氟沙星的耐药性均受内源半胱氨酸水平的影响。本文通过研究半胱氨酸调控活性氧代谢对大肠杆菌耐药性的影响,为探讨细菌耐药性机制提供新的理论依据。 相似文献
994.
He Pei Wu Long-Fei Bing Peng-Fei Xia Wei Wang Lan Xie Fang-Fei Lu Xin Lei Shu-Feng Deng Fei-Yan 《Molecular and cellular biochemistry》2019,450(1-2):135-147
Molecular and Cellular Biochemistry - The immune responses, involved in recognition of cancer-specific antigens, are of particular interest as this may provide major leads towards developing new... 相似文献
995.
996.
Qingtian Zhao Martijn Hammers Chen Li Xixia Zeng Chenxi Hao Xin Lu Jan Komdeur 《Journal of avian biology》2019,50(6)
Life‐history theory predicts a trade‐off between current and future reproduction to maximize lifetime fitness. In cooperatively breeding species, where offspring care is shared between breeders and helpers, helper presence may influence the female breeders’ egg investment, and consequently, survival and future reproductive success. For example, female breeders may reduce egg investment in response to helper presence if this reduction is compensated by helpers during provisioning. Alternatively, female breeders may increase egg investment in response to helper presence if helpers allow the breeders to raise more or higher quality offspring successfully. In the facultatively cooperative‐breeding Tibetan ground tit Pseudopodoces humilis, previous studies found that helpers improve total nestling provisioning rates and fledgling recruitment, but have no apparent effects on the number and body mass of fledglings produced, while breeders with helpers show reduced provisioning rates and higher survival. Here, we investigated whether some of these effects may be explained by female breeders reducing their investment in eggs in response to helper presence. In addition, we investigated whether egg investment is associated with the female breeder's future fitness. Our results showed that helper presence had no effect on the female breeders’ egg investment, and that egg investment was not associated with breeder survival and reproductive success. Our findings suggest that the responses of breeders to helping should be investigated throughout the breeding cycle, because the conclusions regarding the breeders’ adjustment of reproductive investment in response to being helped may depend on which stage of the breeding cycle is considered. 相似文献
997.
Xin Chen Jiahong Yu Changhu Xue Yuming Wang 《Bioscience, biotechnology, and biochemistry》2019,83(7):1227-1238
Here we have explored the effect of neoagarotetraose (NAT) on liver injury caused by intense exercise. Our results showed that NAT treatment obviously decreased liver weight (p < 0.01), improved the liver morphological structure, decreased ALT level (p < 0.05) and endotoxin (LPS) (p < 0.01). In addition, NAT could regulate bile acid profiles in feces and serum of mice, which indicated the potential of liver function, suggesting that NAT was effective to relieve intense exercise-induced liver injury. NAT could regulate the expression of colon genes. NAT tended to alter the microbial composition of mice under intense exercise. We uncovered the network interactions between liver traits and microbial communities in NAT treatment mice. Interestingly, our data indicated that intense exercise-induced liver injury may be related to Clostridiales. In summary, these results demonstrated that NAT relieved liver injury induced by intense exercise may be related to gut microbiota. 相似文献
998.
999.
Actinomycetes are one of the most valuable sources of natural products with industrial and medicinal importance. After more than half a century of exploitation, it has become increasingly challenging to find novel natural products with useful properties as the same known compounds are often repeatedly re-discovered when using traditional approaches. Modern genome mining approaches have led to the discovery of new biosynthetic gene clusters, thus indicating that actinomycetes still harbor a huge unexploited potential to produce novel natural products. In recent years, innovative synthetic biology and metabolic engineering tools have greatly accelerated the discovery of new natural products and the engineering of actinomycetes. In the first part of this review, we outline the successful application of metabolic engineering to optimize natural product production, focusing on the use of multi-omics data, genome-scale metabolic models, rational approaches to balance precursor pools, and the engineering of regulatory genes and regulatory elements. In the second part, we summarize the recent advances of synthetic biology for actinomycetal metabolic engineering including cluster assembly, cloning and expression, CRISPR/Cas9 technologies, and chassis strain development for natural product overproduction and discovery. Finally, we describe new advances in reprogramming biosynthetic pathways through polyketide synthase and non-ribosomal peptide synthetase engineering. These new developments are expected to revitalize discovery and development of new natural products with medicinal and other industrial applications. 相似文献
1000.
Jiao Guan Xin Yan Yajing Zhao Jing Lu Yinhe Sun 《Journal of biomolecular structure & dynamics》2019,37(13):3550-3565
Triclocarban (TCC), as a broad spectrum antibacterial agent widely used in personal care products, has recently been recognized as environmental pollutant with the potential of adversely affecting wildlife and human health. However, the behavior of TCC in blood circulatory system and the potential toxicity of TCC at the molecular level have been poorly investigated. In this study, the effect of TCC on human serum albumin (HSA) and the binding mechanism of TCC to HSA were examined using spectroscopic techniques and molecular modeling methods. The fluorescence results suggested that the fluorescence of HSA was quenched by TCC through a static quenching mechanism and nonradiation energy transfer, and TCC was bound to HSA with moderately strong binding affinity via hydrophobic interaction based on the analysis of the thermodynamic parameters. The site marker competitive experiments revealed that TCC bound into subdomain IIA (site I) of HSA. In addition, the results obtained from the circular dichroism, Fourier transform infrared (FT-IR), 8-anilino-1-naphthalenesulfonic acid fluorescence, synchronous fluorescence, three-dimensional fluorescence spectra and dynamic light scattering suggested the change in the microenvironment and conformation of HSA during the binding reaction. Finally, the best binding mode of TCC and specific interaction of TCC with amino acid residues were determined using molecular docking and molecular dynamics simulations. In a word, the present studies can provide a way to help us well understand the transport, distribution and toxicity effect of TCC when it diffused in the human body.
Communicated by Ramaswamy H. Sarma 相似文献