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| 1 | Whole-Genome Resequencing of a Worldwide Collection of Rapeseed Accessions Reveals the Genetic Basis of Ecotype Divergence显示文摘Rapeseed (Brassica napus),an important oilseed crop,has adapted to diverse climate zones and latitudes by forming three main ecotype groups,namely winter,semiwinter,and spring types. However,genetic variations underlying the divergence of these ecotypes are largely unknown. Here,we report the global pattern of genetic polymorphisms in rapeseed determined by resequencing a worldwide collection of 991 germplasm accessions.A total of 5.56 and 5.53 million singlenucleotide polymorphisms (SNPs)as Well as 1.86 and 1.92 million InDels were identified by mapping reads to the reference genomes of 'Darmor-bzh'and 'Tapidor,'respectively.We generated a map of allelic drift paths that shows splits and mixtures of the main populations,and revealed an asymmetric evolution of the two subgenomes of B.napus by calculating the genetic diversity and linkage disequilibrium parameters.Selective-sweep analysis revealed genetic changes in genes orthologous to those regulating various aspects of plant development and response to stresses.A genome-wide association study identified SNPs in the promoter regions of FLOWERING LOCUS T and FLOWERING LOCUS C orthologs that corresponded to the different rapeseed ecotype groups. Our study provides important insights into the genomic footprints of rapeseed evolution and flowering-time divergence among three ecotype groups,and will facilitate screening of molecular markers for accelerating rapeseed breeding. | Dezhi Wu Zhe Liang Tao Yan Ying Xu Lijie Xuan Juan Tang Gang Zhou Ulrike Lohwasser Shuijin Hua Haoyi Wang Xiaoyang Chen Qian Wang Le Zhu Antony Maodzeka Nazim Hussain Zhilan Li Xuming Li Imran Haider Shamsi Ghulam Jilani Linde Wu Hongkun Zheng Guoping Zhang Boulos Chalhoub Lisha Shen Hao Yu Lixi Jiang | 2019 | Molecular Plant2019,12,1: | 10 |
| 2 | A Tuberculosis Outbreak at a School-Xinjiang Uygur Autonomous Region, China, 2019显示文摘Summary What is already known about this topic?Worldwide,tuberculosis(TB)continues to be the most important cause of death from a single infectious agent,and China has a high TB burden.Although the reported incidence of TB in students is lower than that in general population,TB outbreaks in schools have continuously been reported in the past years,suggesting that schools are a high-risk setting for TB transmission. | Senlu Wang Yan Cui Nianqiang Liu Xijiang Wang Xinqi Wang Weidong Wu Canyou Zhang Maiwulan Parehati Zhi Li Chunhui Yu Lijie Zhang Jun Cheng | 2020 | China CDC weekly2020,2,46: | 5 |
| 3 | Preliminary Analysis of Diesel-Degrading Bacteria Immobilized on Organic Carriers in Seawater显示文摘Oil pollution in marine environment is becoming increasingly serious. Oil bioremediation by immobilization technology has been widely studied. However, the effect of bacteria immobilization was limited because of lack of nutrients. In this paper, the organic materials(corn straw, corn cob and corn leaf) were used as carriers. The diesel removal rate achieved by the immobilized bacteria was studied, and the effects of nutrients(e.g. nitrogen and phosphorus) released from organic carriers to the immobilized bacteria were analyzed. Test results indicated that a certain amount of nutrients was released from organic carriers. Additionally, the diesel removal rates achieved by different immobilized bacteria were all higher than those achieved by free bacteria. And, the diesel removal rates achieved by bacteria decreased in the following order: bacteria immobilized on corn straw(79%), bacteria immobilized on corn leaf(70%) and bacteria immobilized on corn cob(43%). These findings indicated two aspects, viz.: the carriers porous structure and the nutrients, which were favorable to biodegradation. Finally, the changes in nitrogen and phosphorus contents that were released from different carriers during biodegradation were studied. The results showed that the rate of diesel biodegradation was fast in the initial phase because of the sufficient nutrients released from carriers. Meanwhile, in the final phase, the rate of diesel biodegradation was relatively slow because of few nutrients released from carriers. | Liu Zhixiu Xue Jianliang Wu Yanan Li Menglu Sun Xiyu Cui Hao Cheng Lijie Gao Yu Xiao Xinfeng | 2017 | China Petroleum Processing & Petrochemical Technology2017,19,2: | 4 |
| 4 | Spatial learning and memory deficits in young adult mice exposed to a brief intense noise at postnatal age显示文摘Noise pollution is a major hazardous factor to human health and is likely harmful for vulnerable groups such as pre-term infants under lifesupport system in an intensive care unit. Previous studies have suggested that noise exposure impairs children's learning ability and cognitive performance and cognitive functions in animal models in which the effect is mainly attributed to the oxidant stress of noise on the cognitive brain. The potential role of noise induced hearing loss(NIHL), rather than the oxidant stress, has also been indicated by a depression of neurogenesis in the hippocampus long after a brief noise exposure, which produces only a tentative oxidant stress. It is not clear if noise exposure and NIHL during early development exerts a long term impact on cognitive function and neurogenesis towards adulthood. In the present study, a brief noise exposure at high sound level was performed in neonatal C57BL/6J mice(15 days after birth) to produce a significant amount of permanent hearing loss as proved 2 months after the noise. At this age, the noise-exposed animals showed deteriorated spatial learning and memory abilities and a reduction of hippocampal neurogenesis as compared with the control. The averaged hearing threshold was found to be strongly correlated with the scores for spatial learning and memory. We consider the effects observed are largely due to the loss of hearing sensitivity, rather than the oxidant stress, due to the long interval between noise exposure and the observations. | Shan Tao Lijie Liu Lijuan Shi Xiaowei Li Pei Shen Qingying Xun Xiaojing Guo Zhiping Yu Jian Wang | 2015 | Journal of Otology2015,10,1: | 3 |
| 5 | Biosynthesis of antibiotic chuangxinmycin from Actinoplanes tsinanensis显示文摘Chuangxinmycin is an antibiotic isolated from Actinoplanes tsinanensis CPCC 200056 in the1970 s with a novel indole-dihydrothiopyran heterocyclic skeleton. Chuangxinmycin showed in vitro antibacterial activity and in vivo efficacy in mouse infection models as well as preliminary clinical trials.But the biosynthetic pathway of chuangxinmycin has been obscure since its discovery. Herein, we report the identification of a stretch of DNA from the genome of A. tsinanensis CPCC 200056 that encodes genes for biosynthesis of chuangxinmycin by bioinformatics analysis. The designated cxn cluster was then confirmed to be responsible for chuangxinmycin biosynthesis by direct cloning and heterologous expressing in Streptomyces coelicolor M1146. The cytochrome P450 CxnD was verified to be involved in the dihydrothiopyran ring closure reaction by the identification of seco-chuangxinmycin in S. coelicolor M1146 harboring the cxn gene cluster with an inactivated cxn D. Based on these results, a plausible biosynthetic pathway for chuangxinmycin biosynthesis was proposed, by hijacking the primary sulfur transfer system for sulfur incorporation. The identification of the biosynthetic gene cluster of chuangxinmycin paves the way for elucidating the detail biochemical machinery for chuangxinmycin biosynthesis, and provides the basis for the generation of novel chuangxinmycin derivatives by means of combinatorial biosynthesis and synthetic biology. | Yuanyuan Shi Zhibo Jiang Xingxing Li Lijie Zuo Xuan Lei Liyan Yu Linzhuan Wu Jiandong Jiang Bin Hong | 2018 | Acta Pharmaceutica Sinica B2018,8,2: | 2 |
| 6 | Biochar for the removal of contaminants from soil and water:a review显示文摘Biochar shows significant potential to serve as a globally applicable material to remediate water and soil owing to the extensive availability of feedstocks and conducive physio-chemical surface characteristics.This review aims to highlight biochar production technologies,characteristics of biochar,and the latest advancements in immobilizing and eliminating heavy metal ions and organic pollutants in soil and water.Pyrolysis temperature,heat transfer rate,residence time,and type of feedstock are critical influential parameters.Biochar’s efficacy in managing contaminants relies on the pore size distribution,surface groups,and ion-exchange capacity.The molecular composition and physical architecture of biochar may be crucial when practically applied to water and soil.In general,biochar produced at relatively high pyrolysis temperatures can effectively manage organic pollutants via increasing surface area,hydrophobicity and microporosity.Biochar generated at lower temperatures is deemed to be more suitable for removing polar organic and inorganic pollutants through oxygen-containing functional groups,precipitation and electrostatic attraction.This review also presents the existing obstacles and future research direction related to biochar-based materials in immobilizing organic contaminants and heavy metal ions in effluents and soil. | Muqing Qiu Lijie Liu Qian Ling Yawen Cai Shujun Yu Shuqin Wang Dong Fu Baowei Hu Xiangke Wang | 2022 | Biochar2022,4,1: | 2 |
| 7 | Boosting faradaic efficiency of CO_(2)electroreduction to CO for Fe-NC single-site catalysts by stabilizing Fe^(3+)sites via F-doping显示文摘The atomically dispersed Fe^(3+)sites of Fe-N-C single-site catalysts(SSCs)are demonstrated as the active sites for CO_(2)electroreduction(CO_(2)RR)to CO but suffer from the reduction to Fe^(2+)at~−0.5 V,accompanied by the drop of CO faradaic efficiency(FECO)and deterioration of partial current(JCO).Herein,we report the construction of F-doped Fe-N-C SSCs and the electron-withdrawing character of fluorine could stabilize Fe3+sites,which promotes the FECO from the volcano-like highest value(88.2%@−0.40 V)to the high plateau(>88.5%@−0.40-−0.60 V),with a much-increased JCO(from 3.24 to 11.23 mA·cm^(−2)).The enhancement is ascribed to the thermodynamically facilitated CO_(2)RR and suppressed competing hydrogen evolution reaction,as well as the kinetically increased electroactive surface area and improved charge transfer,due to the stabilized Fe^(3+)sites and enriched defects by fluorine doping.This finding provides an efficient strategy to enhance the CO_(2)RR performance of Fe-N-C SSCs by stabilizing Fe^(3+). | Yiqun Chen Guochang Li Yu Zeng Lijie Yan Xizhang Wang Lijun Yang Qiang Wu Zheng Hu | 2022 | Nano Research2022,15,9: | 2 |
| 8 | Networked flexible spacecraft attitude maneuver based on adaptive fuzzy sliding mode control显示文摘 | Dong Chaoyang Xu Lijie Chen Yu | 2009 | Acta Astronautica2009,65,11: | 1 |
| 9 | Highly stable concentrated nanoemulsions by the phase inversion composition method at elevated temperature显示文摘 | YU LIJIE LI CHAO XU JIAN | 2012 | American Chemical Society2012,28,14: | 1 |
| 10 | An Outbreak of SARS-CoV-2 Omicron Subvariant BA.2.76 in an Outdoor Park—Chongqing Municipality,China,August 2022显示文摘Summary What is already known about this topic?Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)Omicron subvariant has a stronger transmission capacity and faster transmission speed than the previous strain. | Li Qi Wenge Tang Ju Wang Yu Xiong Yi Yuan Baisong Li Lin Yang Tingting Li Lianjian Yang Xiaoyuan Su Qin Li Lijie Zhang | 2022 | China CDC weekly2022,4,46: | 1 |
| 11 | A robust polyacrylic acid/chitosan cryogel for rapid hemostasis显示文摘Currently,it is a challenge to develop hemostatic materials with high water absorption capacity and anti-fatigue properties for quickly preventing massive hemorrhage from arteries and visceral organs.A series of polyacrylic acid/chitosan(PAA/CS)cryogels were prepared by a cryostructurization technique to improve mechanical performance and hemostatic efficiency of chitosan(CS).In this system,the chemically cross-linked PAA network was used as a framework to improve water absorption behaviors and mechanical strength.The CS network was co-blended by hydrogen bonding and electrostatic interactions,both of which synergistically promoted hemostasis.These cryogels had high porosity(>94%),rapid water absorption rate(<3 s),high blood absorption capacity(>2000%),outstanding mechanical strength,and fatigue resistance.Moreover,the results of cytotoxicity and hemolysis demonstrated that the cryogels had good biocompatibility.Notably,the PAA/CS cryogels exhibited superior whole blood coagulation ability and red blood cell and platelet adhesion ability compared to those of commercial hemostatic dressing(gauze,gelatin sponges,and CS sponges).Based on these results,mouse femoral artery hemorrhage models and liver hemorrhage models were prepared to investigate the hemostatic ability of the prepared PAA/CS cryogels.Results suggested that the hemostatic ability of PAA5/CS cryogels was superior to that of commercial hemostatic materials.Therefore,the PAA/CS cryogels showed potential application in preventing massive hemorrhage from arteries and visceral organs. | SHI MingYue JIANG LiJie YU ChaoJie DONG XiaoRu YU QingYu YAO MengMeng HE ShaoShuai YUE ZhiWei YAO FangLian ZHANG Hong SUN Hong LI JunJie | 2022 | Science China(Technological Sciences)2022,65,5: | 1 |
| 12 | Lifecycle of cobalt-based alloy for artificial joints:From bulk material to nanoparticles and ions due to bio-tribocorrosion显示文摘The release of debris and ions from metallic artificial joints during bio-tribocorrosion posed a severe threat to patient health.In this work,the lifecycle of a Co Cr Mo alloy was presented by investigating the subsurface microstructure transformation in-vitro.The results showed that the originally coarse grains changed to nano-grains(NGs)on the top region of the alloy,and nanoparticles(NPs)were torn off the surface,which were then blocked by the tribo-film.The agglomerated alloy NPs contained in the tribofilm transformed into debris after being removed from the alloy surface.The majority of the torn-off NPs were corroded and released ions into solution due to their high chemical activities. | Zhongwei Wang Yu Yan Yang Wang Yanjing Su Lijie Qiao | 2020 | Journal of Materials Science & Technology2020,42,11: | 1 |
| 13 | Determination of energy release rate and mode mix in three-dimensional layered structures using plate theory显示文摘 | Barry D. Davidson LiJie Yu Hurang Hu | 2000 | International Journal of Fracture2000,,1: | 1 |
| 14 | Remarkably enhanced piezo-photocatalytic performance in BaTiO_(3)/CuO heterostructures for organic pollutant degradation显示文摘Introducing polarization field of piezoelectric materials is an effective strategy to improve photocatalytic performance.In this study,a new type of BaTiO_(3)/CuO heterostructure catalyst was designed and synthesized to achieve high piezo-photocatalytic activity through the synergy of heterojunction and piezoelectric effect.The BaTiO_(3)/CuO heterostructure shows a significantly enhanced piezo-photocatalytic degradation efficiency of organic pollutants compared with the individual BaTiO_(3) nanowires(NWs)and CuO nanoparticles(NPs).Under the co-excitation of ultrasonic vibration and ultraviolet radiation,the optimal degradation reaction rate constant k of polarized BaTiO_(3)/CuO heterostructure on methyl orange(MO)dye can reach 0.05 min^(−1),which is 6.1 times of photocatalytic rate and 7 times of piezocatalytic rate.The BaTiO_(3)/CuO heterostructure with remarkable piezo-photocatalytic behavior provides a promising strategy for the development of high-efficiency catalysts for wastewater purification,and it also helps understand the coupling mechanism between piezoelectric effect and photocatalysis. | Chenye YU Mengxi TAN Chengdong TAO Yuxuan HU Chuanbao LIU Huimin MENG Yanjing SU Lijie QIAO Yang BAI | 2022 | Journal of Advanced Ceramics2022,11,3: | 1 |
| 15 | On-line principlecomponent analysis with application to process modeling 显示文摘 | Jian Tang Wen Yu Tianyou Chai Lijie Zhao | 2012 | Neurocomputing2012,82,1: | 1 |
| 16 | Networked flexible spacecraft attitude maneuver based on adaptive fuzzy sliding mode control显示文摘 | Chaoyang Dong Lijie Xu Yu Chen Qing Wang | 2009 | Acta Astronautica2009,,11: | 1 |
| 17 | CmRCD1 represses flowering by directly interacting with CmBBX8 in summer chrysanthemum显示文摘The CmBBX8-CmFTL1 regulatory module is a key determinant in the transition from vegetative growth to reproductive development in summer-flowering chrysanthemum.However,the detailed regulatory mechanism of CmBBX8-mediated flowering remains elusive.In this study,we revealed that RADICAL-INDUCED CELL DEATH 1(CmRCD1)physically associated with CmBBX8 through bimolecular fluorescence complementation(BiFC),pulldown and Coimmunoprecipitation(CoIP)assays.Furthermore,the RCD1-SRO1-TAF4(RST)domain of CmRCD1 and the B-box of CmBBX8 mediated their interaction.In addition,Luciferase(LUC)assays and electrophoretic mobility shift assay(EMSAs)showed that CmRCD1 repressed the transcriptional activity of CmBBX8 and interfered with its binding to the CmFTL1 promoter,thereby leading to delayed flowering in the summer chrysanthemum‘Yuuka’.These results provide insight into the molecular framework of CmRCD1-CmBBX8-mediated flowering in chrysanthemum. | Lijun Wang Hua Cheng Qi Wang Chaona Si Yiman Yang Yao Yu Lijie Zhou Lian Ding Aiping Song Dongqing Xu Sumei Chen Weimin Fang Fadi Chen Jiafu Jiang | 2021 | Horticulture Research2021,8,1: | 1 |
| 18 | Soft Sensor Modeling of Ball Mill Load via Principal Component Analysis and Support Vector Machines 显示文摘 | Tang Jian Zhao Lijie Yu Wen | 2010 | Lecture Notes in Electrical Engineering2010,,67: | 1 |
| 19 | Short-term, Mild Hypothermia Can Increase the Beneficial Effect of Permissive Hypotension on Uncontrolled Hemorrhagic Shock in Rats显示文摘 | Tao Li Xiulai Lin Yu Zhu Lijie Li Liangming Liu | 2012 | Anesthesiology2012,,6: | 1 |
| 20 | Choline acetate enhanced the catalytic performance of Candida rogusa lipase in AOT reverse micelles 显示文摘 | Xue Luyan Zhao Yin Yu Lijie | 2013 | Colloids and Surfaces B: Biointerfaces2013,105,: | 1 |