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161.
Zeng Zeyu Cheung William W. L. Li Shiyu Hu Jiatang Wang Ying 《Reviews in Fish Biology and Fisheries》2019,29(4):861-875
Reviews in Fish Biology and Fisheries - Climate change poses a challenge to the management of marine ecosystems and fisheries. Estuarine ecosystems in particular are exposed to a broad range of... 相似文献
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Zhang Zhe Fan Junxia Long Chuannan He Bin Hu Zhihong Jiang Chunmiao Li Yongkai Ma Long Wen Jingshang Zou Xiaojin Chen Yuan Ge Zhenxiang Zeng Bin 《Journal of industrial microbiology & biotechnology》2019,46(12):1769-1780
Journal of Industrial Microbiology & Biotechnology - The ZRT, IRT-like protein (ZIP) family exists in many species and plays an important role in many biological processes, but little is known... 相似文献
165.
转运核糖核酸 (tRNA) 是蛋白质合成过程中重要参与成分之一,为了探索稀有密码子对应的tRNA (稀少tRNA) 丰度改变对外源基因表达量的影响,文中构建了毕赤酵母稀少tRNA基因与外源基因共表达体系。首先在GFP基因中添加由4个连续脯氨酸稀有密码子CCG组成的阻遏区,结果显示该GFP基因的表达量明显降低。然后将带有阻遏区的GFP基因和tRNAPro CCG基因顺次连接于pPIC9K载体上,在毕赤酵母GS115中共表达,结果使GFP表达量提高了4.9%;另将带有阻遏区的GFP基因和tRNAPro CCG基因分别连接于pPIC9K和pFLDα载体,在毕赤酵母GS115中共表达,GFP表达量最高提高了12.5%;应用同样方式将tRNAPro CCG基因与NFATc3T-GFP融合基因共表达,其表达量提高了21.3%。可见,tRNAPro CCG在毕赤酵母GS115中确为稀少tRNA,通过共表达tRNAPro CCG基因可显著提高带有连续该密码子的外源基因表达量,并且,文中构建的共表达体系将同样适用于其他稀少tRNA基因的筛选和验证。 相似文献
166.
Yonghui Qiao Yujie Zeng Ying Ding Jianren Fan 《Computer methods in biomechanics and biomedical engineering》2019,22(6):620-630
The behavior of blood cells and vessel compliance significantly influence hemodynamic parameters, which are closely related to the development of aortic dissection. Here the two-phase non-Newtonian model and the fluid-structure interaction (FSI) method are coupled to simulate blood flow in a patient-specific dissected aorta. Moreover, three-element Windkessel model is applied to reproduce physiological pressure waves. Important hemodynamic indicators, such as the spatial distribution of red blood cells (RBCs) and vessel wall displacement, which greatly influence the hemodynamic characteristics are analyzed. Results show that the proximal false lumen near the entry tear appears to be a vortex zone with a relatively lower volume fraction of RBCs, a low time-averaged wall shear stress (TAWSS) and a high oscillatory shear index (OSI), providing a suitable physical environment for the formation of atherosclerosis. The highest TAWSS is located in the narrow area of the distal true lumen which might cause further dilation. TAWSS distributions in the FSI model and the rigid wall model show similar trend, while there is a significant difference for the OSI distributions. We suggest that an integrated model is essential to simulate blood flow in a more realistic physiological environment with the ultimate aim of guiding clinical treatment. 相似文献
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Meijia Gu Zixuan Zeng Mai Xing Yige Xiong Zixin Deng Shi Chen Lianrong Wang 《Biotechnology journal》2019,14(12)
Fluorescence imaging, as a commonly used scientific tool, is widely applied in various biomedical and material structures through visualization technology. Highly selective and sensitive luminescent biological probes, as well as those with good water solubility, are urgently needed for biomedical research. In contrast to the traditional aggregation‐caused quenching of fluorescence, in the unique phenomenon of aggregation‐induced emission (AIE), the individual luminogens have extremely weak or no emissivity because they each have free intramolecular motion; however, when they form aggregates, these components immediately “light up”. Since the discovery of “turn‐on” mechanism, researchers have been studying and applying AIE in a variety of fields to develop more sensitive, selective, and efficient strategies for the AIE dyes. There are numerous advantages to the use of AIE‐based methods, including low background interference, strong contrast, high performance in intracellular imaging, and the ability for long‐term monitoring in vivo. In this review, two typical examples of AIEgens, TPE‐Cy and TPE‐Ph‐In, are described, including their structure properties and applications. Recent progress in the biological applications is mainly focused on. Undoubtedly, in the near future, an increasing number of encouraging and practical ideas will promote the development of more AIEgens for broad use in biomedical applications. 相似文献
169.
Yuwei Han Weixiong Zhang Botong Zhou Peng Zeng Zunzhe Tian Jing Cai 《Molecular ecology resources》2022,22(1):391-403
Welwitschia mirabilis, which is endemic to the Namib Desert, is the only living species within the family Welwitschiaceae. This species has an extremely long lifespan of up to 2,000 years and bears a single pair of opposite leaves that persist whilst alive. However, the underlying genetic mechanisms and evolution of the species remain poorly elucidated. Here, we report on a chromosome-level genome assembly for W. mirabilis, with a 6.30-Gb genome sequence and contig N50 of 27.50 Mb. In total, 39,019 protein-coding genes were predicted from the genome. Two brassinosteroid-related genes (BRI1 and CYCD3), key regulators of cell division and elongation, were strongly selected in W. mirabilis and may contribute to their long ever-growing leaves. Furthermore, 29 gene families in the mitogen-activated protein kinase signalling pathway showed significant expansion, which may contribute to the desert adaptations of the plant. Three positively selected genes (EHMT1, EIF4E, SOD2) may be involved in the mechanisms leading to long lifespan. Based on molecular clock dating and fossil calibrations, the divergence time of W. mirabilis and Gnetum montanum was estimated at ~123.5 million years ago. Reconstruction of population dynamics from genome data coincided well with the aridification of the Namib Desert. The genome sequence detailed in the current study provides insight into the evolution of W. mirabilis and should be an important resource for further study on gnetophyte and gymnosperm evolution. 相似文献
170.
Three-dimensional quantitative structure-activity relationship (3D-QSAR) analyses using CoMFA and CoMSIA methods were conducted
on a series of fluoropyrrolidine amides as dipeptidyl peptidase IV (DP-IV) inhibitors. The selected ligands were docked into
the binding site of the 3D model of DP-IV using the GOLD software, and the possible interaction models between DP-IV and the
inhibitors were obtained. Based on the binding conformations of these fluoropyrrolidine amides and their alignment inside
the binding pocket of DP-IV, predictive 3D-QSAR models were established by CoMFA and CoMSIA analyses, which had conventional
r
2 and cross-validated coefficient values () up to 0.982 and 0.555 for CoMFA and 0.953 and 0.613 for CoMSIA, respectively. The predictive ability of these models was
validated by six compounds that were in the testing set. Structure-based investigations and the final 3D-QSAR results provide
the guide for designing new potent inhibitors. 相似文献