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    题名 作者 年代 出处 被引量
1Genome Editing and Double-Fluorescence Proteins Enable Robust Maternal Haploid Induction and Identification in Maize显示文摘Le Dong Lina Li Changlin Liu Chenxu Liu Shuaifeng Geng Xinhai Li Changling Huang Long Mao Shaojiang Chen Chuanxiao Xie 2018Molecular Plant2018,11,9:22
2Effect of dietary supplementation with protease on growth performance,nutrient digestibility, intestinal morphology, digestive enzymes and gene expression of weaned piglets显示文摘This study was conducted to investigate the effect of dietary protease supplementation on the growth performance, nutrient digestibility, intestinal morphology, digestive enzymes and gene expression in weaned piglets. A total of 300 weaned piglets(21 days of age Duroc x Large White x Landrace; initial BW = 6.27 ± 0.45 kg) were randomly divided into 5 groups. The 5 diets were: 1) positive control diet(PC), 2) negative control diet(NC), and 3) protease supplementations, which were 100, 200, and 300 mg per kg NC diet. Results indicated that final BW, ADG, ADFI, crude protein digestibility, enzyme activities of stomach pepsin, pancreatic amylase and trypsin, plasma total protein, and intestinal villus height were higher for the PC diet and the supplementations of 200 and 300 mg protease per kg NC diet than for the NC diet(P < 0.05). Supplementations of 200 and 300 mg protease per kg NC diet significantly increased the ratio of villus height to crypt depth(VH:CD) of duodenum, jejunum and ileum compared with NC diet(P < 0.05). Feed to gain ratio, diarrhea index, blood urea nitrogen, and diamine oxidase were lower for the PC diet and supplementations of 200 and 300 mg protease per kg NC diet than for the NC diet(P < 0.05). Piglets fed the PC diet had a higher peptide transporter 1(PepTl) mRNA abundance in duodenum than piglets fed the NC diet(P < 0.05), and supplementations of 100, 200 and 300 mg protease per kg NC diet increased the PepTl mRNA abundance in duodenum(P < 0.05) comparing with the NC diet. Piglets fed the PC diet had a higher b0,+AT mRNA abundance in jejunum than piglets fed the NC diet(P < 0.05), and supplementations of 200 and 300 mg protease per kg NC diet increased the b0,+AT mRNA abundance in jejunum and ileum comparing with the NC diet(P < 0.05). In summary, dietary protease supplementation increases growth performance in weaned piglets, which may contribute to the improvement of intestinal development, protein digestibility, nutrient transport efficiency, and health status of piglets when fed low digestible protein sources.Jianjun Zuo Baoming Ling Lina Long Tiejun Li Ludovic Lahaye Chengbo Yang Dingyuan Feng 2015Animal Nutrition2015,,4:18
3Startup and operation of anaerobic EGSB reactor treating palm oil mill effluent显示文摘A bench-scale expanded granular sludge bed (EGSB) reactor was applied to the treatment of palm oil mill effuent (POME). The reactor had been operated continuously at 35°C for 514 d, with organic loading rate (OLR) increased from 1.45 to 17.5 kg COD/(m3·d). The results showed that the EGSB reactor had good performance in terms of COD removal on the one hand, high COD removal of 91% was obtained at two days’ of hydraulic retention time (HRT), and the highest OLR of 17.5 kg COD/(m3·d). On the other hand, only 46% COD in raw POME was transformed into biogas in which the methane content was about 70% (V/V). A 30-d intermittent experiment indicated that the maximum transformation potential of organic matter in raw POME into methane was 56%. Volatile fatty acid (VFA) accumulation was observed in the later operation stage, and this was settled by supplementing trace metal elements. On the whole, the system exhibited good stability in terms of acidity and alkalinity. Finally, the operational problems inherent in the laboratory scale experiment and the corresponding countermeasures were also discussed.ZHANG Yejian YAN Li CHI Lina LONG Xiuhua MEI Zhijian ZHANG Zhenjia 2008Journal of Environmental Sciences2008,20,6:18
4Normal Structure and Function of Endothecium Chloroplasts Maintained by ZmMs33-Mediated Lipid Biosynthesis in Tapetal Cells Are Critical for Anther Development in Maize显示文摘Genic male sterility(GMS)is critical for heterosis utilization and hybrid seed production.Although GMS mutants and genes have been studied extensively in plants,it has remained unclear whether chloroplast-associated photosynthetic and metabolic activities are involved in the regulation of anther development.In this study,we characterized the function of ZmMs33/ZmGPAT6,which encodes a member of the glycerol-3-phosphate acyltransferase(GPAT)family that catalyzes the first step of the glycerolipid synthetic pathway.We found that normal structure and function of endothecium(En)chloroplasts maintained by ZmMs33-mediated lipid biosynthesis in tapetal cells are crucial for maize anther development.ZmMs33 is expressed mainly in the tapetum at early anther developmental stages and critical for cell proliferation and expansion at late stages.Chloroplasts in En cells of wild-type anthers function as starch storage sites before stage 10 but as photosynthetic factories since stage 10 to enable starch metabolism and carbohydrate supply.Loss of ZmMs33 function inhibits the biosynthesis of glycolipids and phospholipids,which are major components of En chloroplast membranes,and disrupts the development and function of En chloroplasts,resulting in the formation of abnormal En chloroplasts containing numerous starch granules.Further analyses reveal that starch synthesis during the day and starch degradation at night are greatly suppressed in the mutant anthers,leading to carbon starvation and low energy status,as evidenced by low trehalose-6-phosphate content and a reduced ATP/AMP ratio.The energy sensor and inducer of autophagy,SnRK1,was activated to induce early and excessive autophagy,premature PCD,and metabolic reprogramming in tapetal cells,finally arresting the elongation and development of mutant anthers.Taken together,our results not only show that ZmMs33 is required for normal structure and function of En chloroplasts but also reveal that starch metabolism and photosynthetic activities of En chloroplasts at different developmental stages are essential for normal anther development.These findings provide novel insights for understanding how lipid biosynthesis in the tapetum,the structure and function of En chloroplasts,and energy and substance metabolism are coordinated to maintain maize anther development.Taotao Zhu Ziwen Li Xueli An Yan Long Xiaofeng Xue Ke Xie Biao Ma Danfeng Zhang Yijian Guan Canfang Niu Zhenying Dong Quancan Hou Lina Zhao Suowei Wu Jinping Li Weiwei Jin Xiangyuan Wan 2020Molecular Plant2020,13,11:9
5Serine metabolism orchestrates macrophage polarization by regulating the IGF1–p38 axis显示文摘Serine metabolism is reportedly involved in immune cell functions, but whether and how serine metabolism regulates macrophage polarization remain largely unknown. Here, we show that suppressing serine metabolism, either by inhibiting the activity of the key enzyme phosphoglycerate dehydrogenase in the serine biosynthesis pathway or by exogenous serine and glycine restriction, robustly enhances the polarization of interferon-γ-activated macrophages (M(IFN-γ)) but suppresses that of interleukin-4-activated macrophages (M(IL-4)) both in vitro and in vivo. Mechanistically, serine metabolism deficiency increases the expression of IGF1 by reducing the promoter abundance of S-adenosyl methionine-dependent histone H3 lysine 27 trimethylation. IGF1 then activates the p38-dependent JAK–STAT1 axis to promote M(IFN-γ) polarization and suppress STAT6-mediated M(IL-4) activation. This study reveals a new mechanism by which serine metabolism orchestrates macrophage polarization and suggests the manipulation of serine metabolism as a therapeutic strategy for macrophage-mediated immune diseases.Xiao Shan Penghui Hu Lina Ni Long Shen Yanan Zhang Zemin Ji Yan Cui Meihua Guo Haoan Wang Liyuan Ran Kun Yang Ting Wang Lei Wang Bin Chen Zhi Yao Vingjie Wu Qiujing Yu 2022Cellular & Molecular Immunology2022,19,11:5
6Desertification: China provides a solution to a global challenge显示文摘Desertification has been caused by various factors and is a major environmental problem and development bottleneck faced by the world. It is also a serious threat to ecological security and to sustainable economic and social development. As a stubborn world problem, focused on by the United Nations 2030 sustainable development goal 15.3, China aims to combat desertification by implementing the 'eight-column fourbeam' strategy, and also suggest the 'four-medicine'approach for global desertification governance. This includes the development of the United Nations Convention to Combat Desertification protocol, unified global compliance and compliance metrics; building a global observation network, and monitoring land changes based on remote sense; preparing the global natural desert(heritage) list, leaving the original deserts for future generations; initiating the global action of combating desertification, and striving to achieve a land degradationneutral world by 2030.Yingshuang BAO Leilei CHENG Yanfeng BAO Liu YANG Lina JIANG Chao LONG Zhe KONG Peng PENG Jun XIAO Qi LU 2017Frontiers of Agricultural Science and Engineering2017,4,4:3
7Investigation of hrDNA targeting vector-mediated tumor-specific suicide gene therapy for hepatocellular carcinoma显示文摘Human ribosomal DNA (hrDNA) target- ing vector (pHrn) is one of the human derived vectors, which was devised by our lab and has got patent authority. To investigate its effect on gene therapy for hepatocellular carcinoma, a double suicide fusion gene expression cassette, CDUPRT/GFP controlled by a synthetic CMV enhancer-enhanced hTERT promoter (CeTp) which was determined by luciferase assays was constructed in pHrn backbone, creating an expression vector pHr-CeTpCDUPRT/GFP. After transfer of plasmid to hepatocellular carcinoma cell line Bel7402 in vitro, the transfection efficiency reached 30%―50% by using flow cytometer. The expression of CDUPRT/GFP was detected by RT-PCR and Western Blotting. After the administra- tion of 5-FC, high performance liquid chromatography (HPLC) was applied to examine the level of 5-FU in supernatant, resulting in a concentration of 60.15 μg/mL. The Methylthiazolyl tetrazolium (MTT) assay was then utilized to investigate the antitumor effect of pHr-CeTpCDUPRT/GFP in Bel7402 cells, and rela- tive cell survival of 60%-35% was observed after 5-FC treatment. In vivo experiments, the nude mouse model of hepatocellular carcinoma was constructed and in situ gene therapy was performed. The results indicated the tumor growth of treatment group was obviously suppressed, and some even shrank, whenthe vectors and prodrugs were injected continuously. The expression of CDUPRT in tumor tissues was also identified by RT-PCR, and the concentration of 5-FU was 7.694 μg/mL in blood serum using HPLC detection. Then the pathological section of tumor tissues revealed significant tumor cell necrosis. All of these results provide important experiment evidences of the gene therapy for hepatocellular carcinoma with the utilization of our vectors.WANG Lina XUE Zhigang LI Zhuo XUE Jinfeng LIU Xionghao PAN Qian LONG Zhigao CAI Fang WU Lingqian DAI Heping XIA Kun LIANG Desheng XIA Jiahui 2006Chinese Science Bulletin2006,51,19:3
8GC-MS Analysis of Chemical Components of Volatile Oil in Different Parts of Fennel( Foenicuzu vulgare Mill. )显示文摘[Objectives] This study was conducted to analyze the composition of volatile oil in different parts of fennel(Foenicuzu vulgare Mill.) and to compare the differences in the composition of volatile oil in different parts of fennel.[Methods]The steam distillation method was applied to extract volatile oil from different parts of fennel,and the components of volatile oil from different parts of fennel were separated and identified by GC-MS.The relative content of each component was determined by the peak area normalization method.[Results]37,33,18,and 44 chemical components were separated from the volatile oil of fennel roots,stems,young leaves and fruit,respectively,accounting for 98.64%,99.34%,99.59% and 95.99% of the total volatile oil of corresponding parts.A total of 77 chemical components were identified in the four parts,of which 5 were common components.The main component of the volatile oil in the stems and young leaves was trans-anethole.The main components of the volatile oil in fruit were estragole and trans-anethole.And the main component of the volatile oil in the roots was dill apiol.The components in the volatile oil of fennel roots,stems,young leaves and fruit were different in type and content.[Conclusions]This study provides a theoretical reference for the further effective development and utilization of fennel resources.Wei CHEN Kaibin LI Lina LONG Wen YANG Jianghai WANG Qiuyue KONG Fujun SUN 2020Agricultural Biotechnology2020,9,2:3
9Depressed mitochondrial biogenesis and dynamic remodeling in mouse tibialis anterior and gastrocnemius induced by 4‐week hindlimb unloading显示文摘Jing Liu Yunhua Peng Zhiwei Cui Zhiming Wu Airong Qian Peng Shang Lina Qu Yinghui Li Jiankang Liu Jiangang Long 2012IUBMB Life2012,,11:1
10Potassium pre-inserted K1.04Mn8O16 as cathode materials for aqueous Li-ion and Na-ion hybrid capacitors显示文摘For the applications of aqueous Li-ion hybrid capacitors and Na-ion hybrid capacitors,potassium ions are pre-inserted into MnO2 tunnel structure,the as-prepared K1.04Mn8 O16 materials consist of nanoparticles and nanorods were prepared by facile high-temperature solid-state reaction.The as-prepared materials were well studied and they show outstanding electrochemical behavior.We assembled hybrid supercapacitors with commercial activated carbon(YEC-8 A)as anode and K1.04Mn8 O16 as cathode.It shows high energy and power densities.Li-ion capacitors reach a high energy density of 127.61 Wh kg-1 at the power density of 99.86 W kg-1 and Na-ion capacitor obtains 170.96 Wh kg-1 at 133.79 W kg-1.In addition,the hybrid supercapacitors demonstrate excellent cycling performance which maintain 97%capacitance retention for Li-ion capacitor and 85%for Na-ion capacitor after 10,000 cycles.Yamin Zhang Lina Chen Chongyang Hao Xiaowen Zheng Yixuan Guo Long Chen Kangrong Lai Yinghe Zhang Lijie Ci 2020Journal of Energy Chemistry2020,29,7:1
11Dereplication of Saccharide and Polyolconstituents of Candidate Sweet-tasting Plants: isolation of the Sesquiterpene Glycoside Mukurozioside IIb as a Sweet Principle of Sapindus Rarakw显示文摘MYUNG-SOOK CHUNG NAM-CJEO KIM LINA LONG 1997Phytochemical Analysis1997,8,:1
12Characters and Microscopic Identification of Aralia cordata显示文摘[Objectives]Characters and microscopic characteristics of Aralia cordata were studied,to improve identification method for Aralia cordata.[Methods]Using pharmacognostic identification method,original plant morphology of Aralia cordata was observed,and microscopic observation of its root cross section and powder was conducted.[Results]It is perennial herb,with rhizome recess,arranged in clusters of nodules.There are double or triple pinnate compound leaves.It is glabrous or sparsely pubescent,with umbel.Flowers are white,while fruits are spherical and purple black.In microstructure,the cork layer on the cross section of root consists of 6-10 rows of cells,and there is secondary cortex.The parenchyma cells are rich in starch granules,and the cambium is not obvious.The vessels are uniserial,and the wood fiber is less,and the primary xylem is bipartite.There are many starch granules in powder,mostly single granules,round or quasi round,oval,umbilicus herringbone or short slit,with many marginal pits and reticulate ducts.Calcium oxalate cluster crystals are mostly gathered.Cork cells are yellowish brown and arranged neatly.The fibrous wall is thin,and the pore groove is obvious,and stone cells are occasionally seen.[Conclusions]Using character and microscopic identification method,it could accurately identify medicinal material of Aralia cordata,and provide reference basis for development and utilization of its resources.Pengfei XIA Kaibin LI Xiaoyan WANG Lina LONG Shimei ZHAO Juan BAO 2022Medicinal Plant2022,13,4:0
13ZmMS1/ZmLBD30-orchestrated transcriptional regulatory networks precisely control pollen exine development显示文摘Because of its significance for plant male fertility and,hence,direct impact on crop yield,pollen exine development has inspired decades of scientific inquiry.However,the molecularmechanismunderlying exine formation and thickness remains elusive.In this study,we identified that a previously unrecognized repressor,ZmMS1/ZmLBD30,controls proper pollen exine development in maize.Using an ms1 mutant with aberrantly thickened exine,we cloned a male-sterility gene,ZmMs1,which encodes a tapetum-specific lateral organ boundary domain transcription factor,ZmLBD30.Weshowed thatZmMs1/ZmLBD30 is initially turned on by a transcriptional activation cascade of ZmbHLH51-ZmMYB84-ZmMS7,and then it serves as a repressor to shut down this cascade via feedback repression to ensure timely tapetal degeneration and proper level of exine.This activation-feedback repression loop regulating male fertility is conserved in maize and sorghum,and similar regulatory mechanism may also exist in other flowering plants such as rice and Arabidopsis.Collectively,these findings reveal a novel regulatory mechanism of pollen exine development by which a long-sought master repressor of upstream activators prevents excessive exine formation.Quancan Hou Xueli An Biao Ma Suowei Wu Xun Wei Tingwei Yan Yan Zhou Taotao Zhu Ke Xie Danfeng Zhang Ziwen Li Lina Zhao Canfang Niu Yan Long Chang Liu WeiZhao FeiNi Jinping Li Daolin Fu Zhong-NanYang Xiangyuan Wan 2023Molecular Plant2023,16,8:0
14Carbon nanotube-based photothermal membrane for efficient cold air heating and removal of particulate matter and airborne bacteria显示文摘Indoor heating results in high energy consumption and severe atmospheric pollution.Although the development of solar air heaters provides a sustainable route for indoor thermal comfort,such heaters still face challenges in terms of adequate heat exchange and filtering of atmospheric pollutants.Inspired by solar-driven interfacial evaporation,we propose a multifunctional carbon nanotube-based photothermal membrane for efficient cold air heating and purification via ventilation.Carbon nanotubes endow the membrane with high light absorption and thermal conversion capabilities,thereby sufficiently heating the approaching cold air.With the hierarchical structure formed by phase inversion,the thin upper skin of the composite membrane intercepts micropollutants via the size-sieving effect,whereas the finger-like pores and interpenetrating macrovoids inside the membrane ensure that the heated clear air passes through quickly.A proof-of-principle experiment indicated a cold airflow of 1 L/min across the membrane,yielding a temperature increase of ca.37°C as well as a PM 2.5 rejection always higher than 93%.Further antibacterial experiments demonstrated that the membrane effectively removed airborne bacteria.This multifunctional carbon nanotube-based photothermal membrane with specific microstructures not only improves the indoor living quality but also provides a sustainable development scheme to coordinate the relationship among energy utilization,building heating,and air purification.Weichao Dong Lina Huang Xiangju Song Yan Zhang Mengke Liu Zhenzhen Ren Long Pang Hui Peng Heqing Jiang 2024Green Carbon2024,2,1:0
15Observation of Arctic surface currents using data from a surface drifting buoy显示文摘During the 10th Chinese Arctic scientific expedition carried out in the summer of 2019,the surface current in the high-latitude areas of the Arctic Ocean was observed using a self-developed surface drifting buoy,which was initially deployed in the Chukchi Sea.The buoy traversed the Chukchi Sea,Chukchi Abyssal Plain,Mendeleev Ridge,Makarov Basin,and Canada Basin over a period of 632 d.After returning to the Mendeleev Ridge,it continued to drift toward the pole.Overall,the track of the buoy reflected the characteristics of the transpolar drift and Chukchi Slope Current,as well as the inertial flow,cross-ridge surface flow,and even the surface disorganized flow for some time intervals.The results showed that:(1)the transpolar drift mainly occurs in the Chukchi Abyssal Plain,Mendeleev Ridge,and western Canada Basin to the east of the ridge where sea ice concentration is high,and the average northward flow velocity in the region between 79.41°N and 86.32°N was 5.1 cm/s;(2)the average surface velocity of the Chukchi Slope Current was 13.5 cm/s,and while this current moves westward along the continental slope,it also extends northwestward across the continental slope and flows to the deep sea;and(3)when sea ice concentration was less than 50%,the inertial flow was more significant(the maximum observed inertial flow was 26 cm/s,and the radius of the inertia circle was 3.6 km).Hongxia Chen Lina Lin Long Fan Wangxiao Yang Yinke Dou Bingrui Li Yan He Bin Kong Guangyu Zuo Na Liu 2024Acta Oceanologica Sinica2024,43,1:0
16钠离子电池工程化——机遇与挑战显示文摘当前,在应对全球能源枯竭与环境恶化之际,可持续且环境友好的可再生能源正迎来重要的发展机遇。以二次电池为代表的电化学储能技术(EES),可实现绿色新能源安全且经济有效的存储和转化,被视为平抑可再生能源间歇性并实现稳定并网输入的最佳解决方案。钠离子电池(SIB),受益于钠资源的丰富性及低成本,是下一代大规模电化学存储系统最具应用前景的选择之一。本文详细讨论了锂离子电池(LIB)和钠离子电池在不同应用场景下的主要区别,并描述了当前对钠离子电池的理解。通过比较锂离子电池、铅酸电池(LAB)和钠离子电池之间的技术发展情况,进一步揭示钠离子电池的优势。本文以基于钠离子电池技术所取得的商业化成就为文章亮点,重点介绍了五家钠离子电池企业和相应的钠离子电池产品,以及各自的钠离子电池化学与技术。最后,讨论了下一代钠离子电池商业化的前景与挑战。Lina Zhao Teng Zhang Wei Li Tao Li Long Zhang Xiaoguang Zhang Zhiyi Wang 2023Engineering2023,,5:0
17ZmMs33 promotes anther elongation via modulating cell elongation regulators,metabolic homeostasis,and cell wall remodeling in maize显示文摘Plant cell elongation depends on well-defined gene regulations,adequate nutrients,and timely cell wall modifications.Anther size is positively correlated with the number and viability of pollen grains,while little is known about molecular mechanisms underlying anther cell elongation.Here,we found that properly activated cell elongation regulators at transcriptional levels in loss-of-function ZmMs33 mutant(ms33-6038)anthers failed to promote maize anther elongation.ZmMs33 deficiency disrupted metabolic homeostasis mainly by inhibiting both photosynthesis in anther endothecium and lipid accumulation in anther tapetum.Importantly,ms33-6038 anthers displayed ectopic,premature and excessive secondary cell wall thickening in anther middle layer,which constrained cell elongation structurally and blocked nutrient flows across different anther wall layers.The metabolic disorder was only found in ms33-6038 mutant rather than several representative male-sterility lines at transcriptional and post-translational levels.Collectively,the disordered metabolisms and blocked nutrient flows defeated the activated cell elongation regulators,and finally inhibited anther elongation and growth with a unique‘‘idling effect”in ms33-6038 mutant.Ziwen Li Taotao Zhu Shuangshuang Liu Lina Zhao Xueli An Yan Long Xun Wei Juan Zhang Zhenying Dong Xiangyuan Wan 2023The Crop Journal2023,11,2:0
18Identification and validation of a major gene for kernel length at the P1 locus in Triticum polonicum显示文摘Kernel size, one of the traits that determine wheat yield, is controlled by multiple quantitative trait loci.Polish wheat(Triticum polonicum) has elongated and plump kernel and is a valuable material for breeding high-yielding wheat cultivars. However, genes or loci determining kernel length(KL) in Polish wheat are unknown. We identified and validated a major KL gene, KL-PW, at the P1 locus in Polish wheat. KL-PW is VRT-A2, which encodes a MIKC-type MADS-box protein(MADS55). An insertion/deletion mutation in intron 1 of VRT-A2;led to an alternatively spliced transcript, VRT-A2;. Quantitative PCR analysis showed that VRT-A2;was more highly expressed in developing seeds than was VRT-A2 Ailanmai.Brassinosteroid(BR) sensitivity experiment and the expression of BR-related genes indicated that VRTA2;functions as a positive regulator of BR responses. VRT-A2;significantly increased KL of wheat.These findings not only reveal the molecular basis of KL-PW in controlling KL, but also provide a valuable genetic resource for increasing kernel size in wheat.Songyue Chai Qin Yao Rui Liu Wenhui Xiang Xue Xiao Xing Fan Jian Zeng Lina Sha Houyang Kang Haiqin Zhang Dan Long Dandan Wu Yonghong Zhou Yi Wang 2022The Crop Journal2022,10,2:0
19Correction to: Classes of tree-based networks显示文摘Following publication of the original article[1],in the description of the leaf shrinking procedure as well as in Algorithm 1 and the definition of edge-based graphs in[1],the condition that G contains at least two leaves(i.e.,the condition|VL(G)|≥2)needs to be omitted.Mareike Fischer Lina Herbst Michelle Galla Yangjing Long Kristina Wicke 2021Visual Computing for Industry,Biomedicine,and Art2021,4,1:0
20Classes of tree-based networks显示文摘Recently,so-called tree-based phylogenetic networks have attracted considerable attention.These networks can be constructed from a phylogenetic tree,called the base tree,by adding additional edges.The primary aim of this study is to provide sufficient criteria for tree-basedness by reducing phylogenetic networks to related graph structures.Even though it is generally known that determining whether a network is tree-based is an NP-complete problem,one of these criteria,namely edge-basedness,can be verified in linear time.Surprisingly,the class of edgebased networks is closely related to a well-known family of graphs,namely,the class of generalized series-parallel graphs,and we explore this relationship in full detail.Additionally,we introduce further classes of tree-based networks and analyze their relationships.Mareike Fischer Michelle Galla Lina Herbst Yangjing Long Kristina Wicke 2020Visual Computing for Industry,Biomedicine,and Art2020,3,1:0
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