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4篇 您的检索式:作者名="Xu Guipeng"
    题名 作者 年代 出处 被引量
1On solution of matrix equation AXB+CYD=F显示文摘Xu Guipeng Wei Musheng Zheng Daosheng 1998Linear Algebra and Its Appli cations1998,279,:1
2Distribution and Cycling of Carbon Monoxide in the East China Sea and the Marine Atmosphere in Autumn显示文摘Carbon monoxide(CO) concentrations, sea-to-air fluxes and microbial consumption rate constants, along with atmospheric CO mixing ratios, were measured in the East China Sea(ECS) in autumn. Atmospheric CO mixing ratios varied from 96 to 256 ppbv, with an average of 146 ppbv(SD = 54 ppbv, n = 31). Overall, the atmospheric CO concentrations displayed a decreasing trend from inshore to offshore stations. The surface water CO concentrations in the investigated area ranged from 0.24 to 6.12 nmol L^(-1), with an average of 1.68 nmol L^(-1)(SD = 1.50 nmol L^(-1), n = 31). The surface water CO concentrations were affected significantly by sunlight. Vertical profiles showed that CO concentrations declined rapidly with depth, with the maximum appearing in the surface water. The surface CO concentrations were oversaturated, with the saturation factors ranging from 1.4 to 56.9, suggesting that the ECS was a net source of atmospheric CO. The sea-to-air fluxes of CO in the ECS ranged from 0.06 to 11.31 μmol m^(-2) d^(-1), with an average of 2.90 μmol m^(-2) d^(-1)(SD = 2.95μmol m^(-2) d^(-1), n = 31). In the incubation experiments, CO concentrations decreased exponentially with incubation time and the processes conformed to the first order reaction characteristics. The microbial CO consumption rate constants in the surface water(KCO) ranged from 0.063 to 0.22 h^(-1), with an average of 0.12 h^(-1)(SD = 0.062 h^(-1), n = 6). A negative correlation between KCO and salinity was observed in the present study.HE Zhen XU Guanqiu YANG Guipeng 2015Journal of Ocean University of China2015,14,6:1
3Metabolic engineering of Streptomyces to enhance the synthesis of valuable natural products显示文摘The mycelial bacterium Streptomyces is a workhorse for producing natural products,serving as a key source of drugs and other valuable chemicals.However,its complicated life cycle,silent biosynthetic gene clusters(BGCs),and poorly characterized metabolic mechanisms limit efficient production of natural products.There-fore,a metabolic engineering strategy,including traditional and emerging tools from different disciplines,was developed to further enhance natural product synthesis by Streptomyces.Here,current trends in systems metabolic engineering,including tools and strategies,are reviewed.Particularly,this review focuses on recent developments in the selection of methods for regulating the Streptomyces life cycle,strategies for the activation of silent gene clusters,and the exploration of regulatory mechanisms governing antibiotic production.Finally,future challenges and prospects are discussed.Zuwei Xu Lihao Ji Wenxiu Tang Liang Guo Cong Gao Xiulai Chen Jia Liu Guipeng Hu Liming Liu 2022Engineering Microbiology2022,2,2:0
4Tn5-FISH,a novel cytogenetic method to image chromatin interactions with sub-kilobase resolution显示文摘There is an increasing interest in understanding how three-dimensional(3D)organization of the genome is regulated.Different strategies have been employed to identify genome-wide chromatin interactions.However,due to current limitations in resolving genomic contacts,visualization and validation of these genomic loci with sub-kilobase resolution remain unsolved to date.Here,we describe Tn5 transposase-based Fluorescencein situhybridization(Tn5-FISH),a PCR-based,cost-effective imaging method,which can co-localize the genomic loci with sub-kilobase resolution,dissect genome architecture,and verify chromatin interactions detected by chromatin configuration capture(3C)-derived methods.To validate this method,short-range interactions in keratin-encoding gene(KRT)locus in topologically associated domain(TAD)were imaged by triple-color Tn5-FISH,indicating that Tn5-FISH is very useful to verify short-range chromatin interactions inside the contact domain and TAD.Therefore,Tn5-FISH can be a powerful molecular tool for the clinical detection of cytogenetic changes in numerous genetic diseases such as cancers.Jing Niu Xu Zhang Li Guipeng Pixi Yan Qing Yan Qionghai Dai Dayong Jin Xiaohua Shen Jichang Wang Michael QZhang Juntao Gao 2020Journal of Genetics and Genomics2020,47,12:0
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