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20篇 您的检索式:作者名="Shuli Fan"
    题名 作者 年代 出处 被引量
1High-density Linkage Map of Cultivated Allotetraploid Cotton Based on SSR, TRAP, SRAP and AFLP Markers显示文摘一张高密度的连锁图为从在 Gossypium hirsutum L 之间的 cultivatedallotetraploid 种类的一个种间的十字导出的一张 F_2 人口被构造。并且 G.barbadense L。从种间的十字的 186 个 F_2 个人的一个总数“ CRI36 x 哈尔 7124' 是在包括一个新奇标记系统的 1 252 多态的 loci 的 genotyped,目标区域扩大多型性(陷井) 。地图由 1 097 个标记组成,包括 697 简单顺序重复(SSR ) , 171 个陷井, 129 顺序相关的放大多型性, 98 放大 fragmentlengthpolymorphisms,和二个词法标记,并且跨越了 4 有 4.1cM 的平均遗传距离的 536.7 厘米每标记。用在染色体之中的 45 复制 SSR loci, 13 同源染色体中的 11 个在四倍体棉花被识别。这张地图将为量的特点 loci 并且在棉花的分子的繁殖印射的高分辨率提供一个必要资源。Jiwen Yu Shuxun Yu Cairui Lu Wu Wang Shuli Fan Meizhen Song Zhongxu Lin Xianlong Zhang Jinfa Zhang 2007Journal of Integrative Plant Biology2007,49,5:29
2Molecular Cloning and Function Analysis of Two SQUAMOSA-Like MADS-Box Genes From Gossypium hirsutum L.显示文摘疯盒子的基因编码在植物开发有多样的角色的抄写因素的一个大家庭。SQUAMOSA (SQUA )/APETALA1 (AP1 )/FRUITFULL (FUL ) 亚科基因是花的转变和花的机关身份的必要管理者。这里,我们克隆二疯盒子的基因, GhMADS22 和 GhMADS23,属于从 Gossypium hirsutum L 的 SQUA/AP1/FUL 亚群。种系发生的分析和顺序排列显示出那 GhMADS22, GhMADS23 分别地属于 euFUL 和 euAP1 subclades。二基因两个都根据在获得的 cDNA 顺序和 Gossypium raimondii L 之间的排列从开始 codon 有八 exons 和七 introns 到站 codon。染色体顺序。表示侧面分析证明 GhMADS22 和 GhMADS23 高度在开发射击顶,苞,和萼片被表示。Gibberellic 酸在射击顶支持了 GhMADS22 和 GhMADS23 表示。转基因的 Arabidopsis 线 overexpressing 35S::GhMADS22 有反常的花并且在长天的条件(16h light/8h 黑暗) 下面比野类型早跑了。而且,推迟的花的机关老朽和截去和它能也回答到 abscisic 酸的 GhMADS22 overexpression。在摘要, GhMADS22 可以在支持 flowering 有功能,改进抵抗并且推迟它可以是的为棉花并且这样的老朽为支持的一个候选人目标在棉花繁殖早成熟。Wenxiang Zhang Shuli Fan Chaoyou Pang Hengling Wei Jianhui Ma Meizhen Song Shuxun Yu 2013Journal of Integrative Plant Biology2013,55,7:6
3Identification of genes associated with cotyledon senescence in upland cotton显示文摘In order to unravel the biochemical pathways and understand the molecular mechanisms involved in leaf senescence, suppression subtractive hybridization (SSH) was used to generate a cDNA library enriched for transcripts differentially expressed in developmental senescence cotyledons of upland cotton. After differential screening by membrane- based hybridization and subsequent confirmation by reverse Northern blot analysis, selected 678 clones were sequenced and analyzed. Sequencing of these cDNA fragments reveals that 216 of expressed se- quence tags (ESTs) represented unique genes. Of these 216 cDNAs, 151 clones (69.9%) show signifi- cant homologies to previously known genes, while the remaining 65 do not match any known sequences. 151 unique ESTs are assigned to twelve different categories based on their putative functions gener- ated by BLAST analysis. These SAG-encoded pro- teins are likely to participate in macromolecule deg- radation, nutrient recycling, detoxification of oxidative metabolites, and signaling and regulatory events. The expression pattern of selection of genes was confirmed using northern hybridization. Northern hybridization confirmed several distinct patterns, from expression at a very early stage to the terminal phase of the senescence syndrome. Clones encod- ing proteases and proteins involved in macromole- cule degradation and gluconeogenesis, as well as stress-related genes, are up regulated in senescence cotyledons.SHEN Fafu YU Shuxun XlE Qingen HAN Xiulan FAN Shuli 2006Chinese Science Bulletin2006,51,9:4
4Selection and Characterization of a Novel Photoperiod-Sensitive Male Sterile Line in Upland Cotton显示文摘高地棉花(Gossypium hirsutum L.) 显示出强壮的杂种优势。然而,杂种优势广泛地没由于混合种子生产的高费用被利用。一根光周期敏感的基因男无菌的线的创造能实质地在高地棉花减少混合种子生产的费用。有带绿色的标记的如此的异种被空间变化在接近地球的轨道发现,它的特点在 4 年在 Anyang 和 Sanya 的选择以后是稳定的,中国。当温度比 21.5 敶高时,这异种与一个 1112.5h 光周期是肥沃的吗?Jianhui Ma Hengling Wei Ji Liu Meizhen Song Chaoyou Pang Long Wang Wenxiang Zhang Shuli Fan Shuxun Yu 2013Journal of Integrative Plant Biology2013,55,7:3
5Design of Porous Membranes by Liquid Gating Technology显示文摘CONSPECTUS:Porous membranes are playing paramount roles in the areas of wastewater treatment,chemical analysis,energy storage and conversion,flexible devices,and biomedical engineering.Despite their significance in the above fields,the performances of the porous membrane will be weakened due to the inevitable membrane fouling.Solid surfaces or pores of the membranes are easily contaminated or even clogged due to the absorption of small molecules or the accumulation of fine particles,which lower the flux of fluid transport over time,reduce the separation efficiency,shorten the lifetime of the membranes,and increase the operational costs.In addition,the defects in membranes also hinder their applications to some extent.The above-mentioned limitations all arise from the intrinsic properties of the solid surfaces of the membranes.To solve these challenges,liquid gating technology was proposed,which utilizes the capillary-stabilized functional liquid as a pressure-driven,reversible,and reconfigurable gate to fill and seal the pores on demand.Using liquid gating technology,multiphase transportation in the membrane can be modulated with exceptional antifouling and energy-saving manners due to the defect-free molecular-smooth liquid interface.Moreover,the further responsive interface design accelerated the development of liquid gating membranes and their practical applications to a great extent.In recent years,the concept of the liquid gating membrane has become a reality through developing various porous membranes by the rational selection and design of the two essential parts of the composite membranes:the solid porous matrix and the gating liquid.These membranes expand the basic scientific issues of the traditional membranes from the solid−liquid/gas interface to the solid−liquid−liquid/gas interface and bring more possibilities for the applications of porous membranes.With properties and advantages of antifouling,anticorrosion,enhanced transparency,energy-saving,and stability,these porous membranes have shown various applications in multiphase separation,biomedical catheters,chemical detection,mobile valves,microscale flow control,etc.In this Account,we provide a systematic review of our group’s recent progresses in the design and applications of porous membranes with liquid gating technology.First,we give a comprehensive introduction to the liquid gating technology,followed by further details on how to design porous membranes through liquid gating technology and properties and advantages of the porous membranes.Second,we discuss the applications of these porous membranes in the fields of multiphase separation,biomedical catheters,chemical detection,mobile valves,and microscale flow control.Third,we conclude the Account by describing the current challenges and future directions of the field.Shuli Wang Yunmao Zhang Yuhang Han Yaqi Hou Yi Fan Xu Hou 2021Accounts of Materials Research2021,2,6:3
6Analysis of decision-making coefficients of the lint yield of upland cotton ( Gossypium hirsutum L.)显示文摘Yongjun Mei Weifeng Guo Shuli Fan Meizhen Song Chaoyou Pang Shuxun Yu 2014Euphytica2014,,1:1
7LM/I-based robust controller design approach显示文摘 Fan Shuli and Qu Jianling 2000Control and Decision2000,15,5:1
8Mapping quantitative trait loci for cottonseed oil, protein and gossypol content in a Gossypium hirsutum?×?Gossypium barbadense backcross inbred line population显示文摘Jiwen Yu Shuxun Yu Shuli Fan Meizhen Song Honghong Zhai Xingli Li Jinfa Zhang 2012Euphytica2012,,2:1
9Identification and Profiling of Known and Novel Fiber MicroRNAs during the Secondary Wall Thickening Stage in Cotton(Gossypium hirsutum) via High-Throughput Sequencing显示文摘Upland cotton (Gossypium hirsutum L.) is an allotetraploid species originated from interspecific hybridization between AA-genome diploid (G.arboretum) and DD-genome diploid (G.raimondii) (Wendel et al.,1992).Cotton fibers are singlecelled trichomes that emerge from the ovule epidermal cells.Indexed by the number of days post-anthesis (dpa),fiber morphogenesis includes four distinct but overlapping steps:initiation (0-3 dpa),elongation (3-20 dpa),secondary cell wall thickening (15-45 dpa) and maturation (40-60 dpa) (Yang et al.,2008,Du et al.,2013).The efficiency and duration of each morphogenesis stage is important to the quality attributes of the mature fiber.Cell elongation is critical for fiber length,whereas secondary cell wall thickening is important for fiber fineness and strength (Meinert and Delmer,1977).Dingwei Yua Yanmei Wang Wei Xue Shuli Fan Shuxun Yu Jin-Yuan Liu 2014Journal of Genetics and Genomics2014,41,10:1
10Decreased CDld level is associated with CD86 over-expression in B cells from systemic lupus erythematosus显示文摘Fei Liu Jianjian Ji Xiujun Li Xiaojing Li Jingjing Xu Huimin Yue Shuli Zhao Hongye Fan Yayi Hog 2017Acta Biochimica et Biophysica Sinica2017,49,4:1
11New artificial boundary condition for saturated soil foundations显示文摘一个新人工的边界模型基于多方向性的播送和粘滞春天的人工的边界理论被建议在动态分析专心于压力波浪一个浸透的土壤基础。后来砍波浪(S 波浪) 是在一个浸透的土壤基础和一个单相的中等基础的一样,为一个单相的中等基础的一个正切的粘弹性的边界条件能也被用于浸透的土壤基础。因此,人工的边界的目的在这建议纸主要是专心于 P 波浪的二种类型一个浸透的土壤基础。主要想法是在浸透的土壤基础的 P 波浪的压力被分解成二种类型。应力的第一种类型, ra,被第一条人工的边界吸收。应力的第二种类型, rb,被第二条人工的边界产生的压力平衡。最终, P 波浪(fast-P-waves 和 slow-P-waves ) 的两种类型被在这份报纸建议的人工的边界模型吸收。特别地,注意 fast-P-waves 和 slow-P-waves 在第一条边界的位置被吸收。因此,此处建议的人工的边界模型能同时吸收 P 快的波浪, P 慢的波浪并且砍波浪。最后,一个数字例子被给检查建议人工的边界模特儿,并且结果证明它是很精确的。Xu Qiang Chen Jianyun Li Jing Fan Shuli 2012Earthquake Engineering and Engineering Vibration2012,11,1:1
12Reconfiguring confined magnetic colloids with tunable fluid transport behavior显示文摘Collective dynamics of confined colloids are crucial in diverse scenarios such as self-assembly and phase behavior in materials science,microrobot swarms for drug delivery and microfluidic control.Yet,fine-tuning the dynamics of colloids in microscale confined spaces is still a formidable task due to the complexity of the dynamics of colloidal suspension and to the lack of methodology to probe colloids in confinement.Here,we show that the collective dynamics of confined magnetic colloids can be finely tuned by external magnetic fields.In particular,the mechanical properties of the confined colloidal suspension can be probed in real time and this strategy can be also used to tune microscale fluid transport.Our experimental and theoretical investigations reveal that the collective configuration characterized by the colloidal entropy is controlled by the colloidal concentration,confining ratio and external field strength and direction.Indeed,our results show that mechanical properties of the colloidal suspension as well as the transport of the solvent in microfluidic devices can be controlled upon tuning the entropy of the colloidal suspension.Our approach opens new avenues for the design and application of drug delivery,microfluidic logic,dynamic fluid control,chemical reaction and beyond.Zhizhi Sheng Mengchuang Zhang Jing Liu Paolo Malgaretti Jianyu Li Shuli Wang Wei Lv Rongrong Zhang Yi Fan Yunmao Zhang Xinyu Chen Xu Hou 2021National Science Review2021,8,5:1
13Discontinuous streaming potential via liquid gate显示文摘Streaming potential is mainly related to electrokinetic energy conversion,which has been considered to show promising potential for advanced technologies,especially sensing.The inherent property of streaming potential is that the energy conversion process is always a continuous state.However,practical applications include many cases of discontinuous states,such as nonlinear sensing.Here,we report a discontinuous streaming potential electrokinetic energy conversion fluid system.Experiments and theoretical calculations reveal that this system exhibits a discontinuous electrokinetic effect and provides a gating liquid slip in micropores,offering the advantages of gating liquid charge coupling and interfacial drag reduction.Moreover,the system is demonstrated in a wearable fall-down alert application.We expect this liquid gating energy conversion system to open up a platform for the design and application of autonomous health monitoring devices,seismic sea wave warning systems,and beyond.Jian Zhang Kan Zhan Shusong Zhang Yigang Shen Yaqi Hou Jing Liu Yi Fan Yunmao Zhang Shuli Wang Yanbo Xie Xinyu Chen Xu Hou 2022eScience2022,2,6:0
14An alternative approach for computing seismic response with accidental eccentricity显示文摘Accidental eccentricity is a non-standard assumption for seismic design of tall buildings. Taking it into consideration requires reanalysis of seismic resistance, which requires either time consuming computation of natural vibration of eccentric structures or finding a static displacement solution by applying an approximated equivalent torsional moment for each eccentric case. This study proposes an alternative modal response spectrum analysis(MRSA) approach to calculate seismic responses with accidental eccentricity. The proposed approach, called the Rayleigh Ritz Projection-MRSA(RRP-MRSA), is developed based on MRSA and two strategies:(a) a RRP method to obtain a fast calculation of approximate modes of eccentric structures; and(b) an approach to assemble mass matrices of eccentric structures. The efficiency of RRP-MRSA is tested via engineering examples and compared with the standard MRSA(ST-MRSA) and one approximate method, i.e., the equivalent torsional moment hybrid MRSA(ETM-MRSA). Numerical results show that RRP-MRSA not only achieves almost the same precision as ST-MRSA, and is much better than ETM-MRSA, but is also more economical. Thus, RRP-MRSA can be in place of current accidental eccentricity computations in seismic design.Fan Xuanhua Yin Jiacong Sun Shuli Chen Pu 2014Earthquake Engineering and Engineering Vibration2014,13,3:0
15Experts consensus on the procedure of dental operative microscope in endodontics and operative dentistry显示文摘The dental operative microscope has been widely employed in the field of dentistry,particularly in endodontics and operative dentistry,resulting in significant advancements in the effectiveness of root canal therapy,endodontic surgery,and dental restoration.However,the improper use of this microscope continues to be common in clinical settings,primarily due to operators’insufficient understanding and proficiency in both the features and established operating procedures of this equipment.In October 2019,Professor Jingping Liang,Vice Chairman of the Society of Cariology and Endodontology,Chinese Stomatological Association,organized a consensus meeting with Chinese experts in endodontics and operative dentistry.The objective of this meeting was to establish a standard operation procedure for the dental operative microscope.Subsequently,a consensus was reached and officially issued.Over the span of about four years,the content of this consensus has been further developed and improved through practical experience.Bin Liu Xuedong Zhou Lin Yue Benxiang Hou Qing Yu Bing Fan Xi Wei Lihong Qiu Zhengwei Huang Wenwei Xia Zhe Sun Hanguo Wang Liuyan Meng Bin Peng Chen Zhang Shuli Deng Zhaojie Lu Deqin Yang Tiezhou Hou Qianzhou Jiang Xiaoli Xie Xuejun Liu Jiyao Li Zuhua Wang Haipeng Lyu Ming Xue Jiuyu Ge Yi Du Jin Zhao Jingping Liang 2023International Journal of Oral Science2023,15,3:0
16Expert consensus on irrigation and intracanal medication in root canal therapy显示文摘Chemical cleaning and disinfection are crucial steps for eliminating infection in root canal treatment. However, irrigant selection or irrigation procedures are far from clear. The vapor lock effect in the apical region has yet to be solved, impeding irrigation efficacy and resulting in residual infections and compromised treatment outcomes.Xiaoying Zou Xin Zheng Yuhong Liang Chengfei Zhang Bing Fan Jingping Liang Junqi Ling Zhuan Bian Qing Yu Benxiang Hou Zhi Chen Xi Wei Lihong Qiu Wenxia Chen Wenxi He Xin Xu Liuyan Meng Chen Zhang Liming Chen Shuli Deng Yayan Lei Xiaoli Xie Xiaoyan Wang Jinhua Yu Jin Zhao Song Shen Xuedong Zhou Lin Yue 2024International Journal of Oral Science2024,16,1:0
17Developing an efficient CRISPR-dCas9-TVderived transcriptional activation system to create three novel cotton germplasm materials显示文摘Dear Editor,With the development of CRISPR-Cas technology,an RNAguided CRISPR activation system has been developed in plants,in which a dead Cas9(dCas9)nuclease is fused to transcriptional activators to regulate the transcription of endogenous genes(Li et al.,2017;Liu et al.,2017;Manghwar et al.,2020;Ming et al.,2020;Pan et al.,2021).Precise upregulation of gene transcription is emerging as a promising approach for functional genomics research,molecular breeding,and germplasm innovation.However,there have been no reports on the use of the CRISPR-dCas9 transcriptional activation system in cotton.Lu Yu Zhanshuai Li Xiao Ding Muna Alariqi Chaojun Zhang Xiangqian Zhu Shuli Fan Longfu Zhu Xianlong Zhang Shuangxia Jin 2023Plant Communications2023,4,4:0
18Identification, characterization, and expression profiles of the GASA genes in cotton显示文摘Background:GASA(Giberellic Acid Stimulated in Arabidopsis)gene family plays a crucial role in the phytohormone signaling pathway,growth and development,and stress responses in plants.Many GASA homologs have been identified in various plants.Nevertheless,little is known about these proteins in cotton.Results:In the current study,we identified 19,17,25,33,and 38 GASA genes via genome-wide analyses of Gossypium herbaceum,G.arboreum,G.raimondii,G.barbadense,and G.hirsutum,respectively,and performed comprehensive bioinformatics and expression analyses.According to our results,132 GASA proteins shared similar protein structures and were classified into four groups based on the phylogenetic tree.A synteny analysis suggested that segmental duplication was a key driver in the expansion of the GASA gene family.Meanwhile,the cis-element and protein interaction analyses indicated that GhGASA proteins play a significant role in the hormone responses.Transcriptomic and qRT-PCR(Quantitative real time-polymerase chain reaction)analyses revealed diverse expression profiles of the GhGASA genes in different organs under abiotic stresses,indicating that some GhGASA genes possibly participate in fiber development and abiotic-stress responses.Conclusions:The GASA genes in cotton were systematically identified and analyzed for the first time in this paper,and it suggested that the GASA genes are important to the development and growth of cotton.These results will support future exploration of the functions of GASA genes in cotton.QIAO Kaikai MA Changkai LV Jiaoyan ZHANG Chaojun MA Qifeng FAN Shuli 2021Journal of Cotton Research2021,4,1:0
19Line X Tester Analysis of Estimating Heterosis and Combining Ability in F_1 Generation of Sunflower显示文摘The present research was conducted in Line X tester analysis for estimating combining ability and heterotic effects,restorers malesterile(CMS) crossed with seven tester lines 3x7 21 F_1 hybrids of sunflower were further used to estimate their general combining ability(GCS),specific combining ability(SCA) and heterosis effects on main traits of sunflower during 2009.For this study,seven lines of sunflower were tested with three testers 7x3 of sunflower to obtain twenty one F_1 genotypes from Line X tester mating design.It was concluded from present study that among the lines,0505 Cms-6,Peshawer-93 Cms-11,Peshawar-93 Cms-12 were the best general combiners to play the vital role in flowering,maturity,plant height,head diameter,seed index,grain per head and 100-grain yield per plant.While RHP-53,RHP-42,RHP-46 were also the best combiners for all the traits.However,hybrid 54CMS-1 x RHP-42 showed best specific combiners,while Peshawer-93 exhibited good specific combiners for grain yield per plant,the hybrids,plant height,head diameter,seed index,grain per head and grain yield per plant,respectively.Significant differences among the tested sunflower genotypes with regard to mean values of all the investigated traits were determined.The analysis of variance of combining abilities and the analysis of genetic variance components confirmed the non-additive component.Ameer Hussain Jarwar Xiaoyan WANG Long WANG Qifeng MA Shuli FAN 2017Asian Agricultural Research2017,9,8:0
20Revisiting N,S co-doped carbon materials with boosted electrochemical performance in sodium-ion capacitors:The manipulation of internal electric field显示文摘Heteroatom doping has emerged as a prevailing strategy to enhance the storage of sodium ions in carbon materials.However,the underlying mechanism governing the performance enhancement remains undisclosed.Herein,we fabricated N/S co-doped carbon beaded fibers(S-N-CBFs),which exhibited glorious rate performance and durableness in Na+storage,showcasing no obvious capacity decay even after 3500 cycles.Furthermore,when used as anodes in sodium-ion capacitors,the S-N-CBFs delivered exceptional results,boasting a high energy density of 225 Wh·kg^(-1),superior power output of 22500 W·kg^(-1),and outstanding cycling stability with a capacity attenuation of merely 0.014%per cycle after 4000 cycles at 2 A·g^(-1).Mechanistic investigations revealed that the incorporation of both pyridinic N and pyrrolic N into the carbon matrix of S-N-CBFs induced internal electric fields(IEFs),with the former IEF being stronger than the latter,in conjunction with the doped S atom.Density functional theory calculations further unveiled that the intensity of the IEF directly influenced the adsorption of Na+,thereby resulting in the exceptional performances of S-N-CBFs as sodium-ion storage materials.This work uncovers the pivotal role of IEF in regulating the electronic structure of carbon materials and enhancing their Na^(+)storage capabilities,providing valuable insights for the development of more advanced electrode materials.Shuli Li Jinqiang Zhang Yanan Li Pengxiang Fan Mingbo Wu 2024Nano Research Energy2024,3,1:0
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