
Journal of Jishou University(Natural Sciences Edition) ›› 2026, Vol. 47 ›› Issue (1): 78-89.DOI: 10.13438/j.cnki.jdzk.2026.01.011
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ZOU Wenhai,DA Chunyao,DENG Liying,CHEN Jinhua,LIU Zhuxiang,CHEN Yiguang
Online:2026-01-25
Published:2026-01-30
ZOU Wenhai, DA Chunyao, DENG Liying, CHEN Jinhua, LIU Zhuxiang, CHEN Yiguang. Research Progress on Halophilic Bacteria Based on Bibliometric Evaluation[J]. Journal of Jishou University(Natural Sciences Edition), 2026, 47(1): 78-89.
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URL: https://zkxb.jsu.edu.cn/EN/10.13438/j.cnki.jdzk.2026.01.011
| [1] GUNDE-CIMERMAN NINA,PLEMENITA ANA,OREN AHARON.Strategies of Adaptation of Microorganisms of the Three Domains of Life to High Salt Concentrations[J].Fems Microbiology Reviews,2018,42(3):353-375. [2] 庄滢潭,刘芮存,陈雨露,等.极端微生物及其应用研究进展[J].中国科学:生命科学,2022,52(2):204-222. [3] 李泉泉,王芸,王科珂,等.新疆两盐湖可培养极端嗜盐菌组成及功能多样性研究[J].微生物学报,2022,62(6):2074-2089. [4] 张田田,李永臻,沈国平,等.高盐盐湖可分离嗜盐耐盐菌的种群多样性及四氢嘧啶产量评价[J].生物技术通报,2022,38(1):168-178. [5] FREUND LINTON,HUNG CAROLINE,TOPACIO TALYSSA M,et al.Diversity of Sulfur Cycling Halophiles Within the Salton Sea,California's Largest Lake[J].BMC Microbiology,2025,25(1):120.DOI:10.1186/s12866-025-03839-2. [6] GUINDO CHEIKH O,MORSLI MOHAMED,BELLALI S,et al.A Tetragenococcus halophilus Human Gut Isolate[J].Current Research in Microbial Sciences,2022,3:100112.DOI:10.1016/j.crmicr.2022.100112. [7] DASARI VENKATA RATNA RAVI KUMAR,MUTHYALA MANIKYA KUMARI,NIKKU MY,et al.Novel Pyridinium Compound from Marine Actinomycete,Amycolatopsis alba Var. Nov. DVR D4 Showing Antimicrobial and Cytotoxic Activities in Vitro[J].Microbiological Research,2012,167(6):346-351. [8] MALLICK INDRANI,BHATTACHARYYA CHIRANJIT,MUKHERJI SOUMYADIP,et al.Effective Rhizoinoculation and Biofilm Formation by Arsenic Immobilizing Halophilic Plant Growth Promoting Bacteria (PGPB) Isolated from Mangrove Rhizosphere:A Step Towards Arsenic Rhizoremediation[J].Science of the Total Environment,2018,610/611:1239-1250. [9] DE LOURDES MORENO MARA,PREZ DOLORES,GARCA MARA TERESA,et al.Halophilic Bacteria as a Source of Novel Hydrolytic Enzymes[J].Life,2013,3(1):38-51. [10] 高锋,李学斌,陈林,等.基于文献计量分析土壤微生物对气候变暖的响应[J].微生物学通报,2023,50(5):2280-2295. [11] GURUNG SHAMBHU,LEE CHANGHWAN,WEON HANGYEON,et al.Comparative Genome Analysis of Three Halobacillus Strains Isolated from Saline Environments Reveal Potential Salt Tolerance and Algicidal Mechanisms[J].Environmental Microbiology Reports,2025,17(3):e70121.DOI:10.1111/1758-2229.70121. [12] 陈江楠,陈潇宁,刘心怡,等.基于工程化盐单胞菌的下一代工业生物技术[J].合成生物学,2020,1(5):516-527. [13] SU Chen,CUI Hao,WANG Wei,et al.Bioremediation of Complex Organic Pollutants by Engineered Vibrio natriegens[J].Nature,2025,642(8069):1024-1033. [14] EDBEIB MOHAMED F,WAHAB ROSWANIRA A,HUYOP FAHRUL.Halophiles:Biology,Adaptation,and Their Role in Decontamination of Hypersaline Environments[J].World Journal of Microbiology and Biotechnology,2016,32(8):135.DOI:10.1007/s11274-016-2081-9. [15] 尹炳,汪建飞,张世文,等.基于知识图谱的土壤硒研究热点和趋势分析[J].土壤通报,2019,50(5):1062-1071. [16] ARIA MASSIMO,CUCCURULLO CORRADO.Bibliometrix:An R-Tool for Comprehensive Science Mapping Analysis[J].Journal of Informetrics,2017,11(4):959-975. [17] CHEN Chen,SONG Mei.Visualizing a Field of Research:A Methodology of Systematic Scientometric Reviews[J].PLOS One,2019,14(10):e0223994.DOI:10.1371/journal.pone.0223994. [18] GRANT WILLIAM D,GEMMELL RICHARD T,MCGENITY TERRY J.Halobacteria:The Evidence for Longevity[J].Extremophiles,1998,2(3):279-287. [19] ANDREI ANDREI-〖TEFAN,LEONTE IULIANA KARINA,TIRGARI TUDOR-ANDREI,et al.HaloDom:A New Database of Halophiles Across All Life Domains[J].Journal of Biological Research-Thessaloniki,2018,25:7.DOI:10.1186/s40709-018-0077-1. [20] OREN AHARON.Life at High Salt Concentrations,Intracellular KCl Concentrations,and Acidic Proteomes[J].Frontiers in Microbiology,2013,4:315.DOI:10.3389/fmicb.2013.00315. [21] 张鑫,舒志万,李永臻,等.相容溶质四氢嘧啶的微生物合成研究进展[J].生物工程学报,2022,38(3):868-881. [22] NGUYEN PHUONG-THAO,NGUYEN-THI THI-UYEN,NGUYEN HONG-THI,et al.Halophilic Lactic Acid Bacteria—Play a Vital Role in the Fermented Food Industry[J].Folia Microbiologica,2024,69(2):305-321. [23] 张梦颖,李雅慧,詹元龙,等.嗜盐菌生物合成聚羟基脂肪酸酯(PHAs)的研究进展[J].生物技术通报,2019,35(6):172-177. [24] SUN Delong,JIANG Xue,WU Qinglong,et al.Intragenomic Heterogeneity of 16S rRNA Genes Causes Overestimation of Prokaryotic Diversity[J].Applied and Environmental Microbiology,2013,79(19):5962-5969. [25] CHUN JONGSIK,OREN AHARON,VENTOSA ANTONIO,et al.Proposed Minimal Standards for the Use of Genome Data for the Taxonomy of Prokaryotes[J].International Journal of Systematic and Evolutionary Microbiology,2018,68(1):461-466. [26] KUMAR SUDHIR,STECHER GLEN,TAMURA KOICHIRO.MEGA7:Molecular Evolutionary Genetics Analysis Version 7.0 for Bigger Datasets[J].Molecular Biology and Evolution,2016,33(7):1870-1874. [27] YOON SANG-HEE,HA SEUNG-MO,KWON SOYEON,et al.Introducing EzBioCloud:A Taxonomically United Database of 16S rRNA Gene Sequences and Whole-Genome Assemblies[J].International Journal of Systematic and Evolutionary Microbiology,2017,67(5):1613-1617. [28] GUPTA RADHEY S,NAUSHAD SABYASACHI,BAKER SIDNEY.Phylogenomic Analyses and Molecular Signatures for the Class Halobacteria and Its Two Major Clades:A Proposal for Division of the Class Halobacteria into an Emended Order Halobacteriales and Two New Orders,Haloferacales ord. nov. and Natrialbales ord. nov.,Containing the Novel Families Haloferacaceae fam. nov. and Natrialbaceae fam. nov.[J].International Journal of Systematic and Evolutionary Microbiology,2015,65(Pt_3):1050-1069. [29] GUPTA RADHEY S,PATEL SHARAT,SAINI NAVNEET,et al.Robust Demarcation of 17 Distinct Bacillus Species Clades,Proposed as Novel Bacillaceae Genera,by Phylogenomics and Comparative Genomic Analyses:Description of Robertmurraya kyonggiensis sp. nov. and Proposal for an Emended Genus Bacillus Limiting It Only to the Members of the Subtilis and Cereus Clades of Species[J].International Journal of Systematic and Evolutionary Microbiology,2020,70(11):5753-5798. [30] BAKER BRADLEY A,GUTIRREZ-PRECIADO ANA,RODRGUEZ DEL RO LVARO,et al.Expanded Phylogeny of Extremely Halophilic Archaea Shows Multiple Independent Adaptations to Hypersaline Environments[J].Nature Microbiology,2024,9(4):964-975. [31] SATARI LEILA,GUILLN ADRIN,LATORRE-PREZ ADELA,et al.Beyond Archaea:The Table Salt Bacteriome[J].Frontiers in Microbiology,2021,12:714110.DOI:10.3389/fmicb.2021.714110. [32] OREN AHARON.Halophilic Microbial Communities and Their Environments[J].Current Opinion in Biotechnology,2015,33:119-124. [33] OREN AHARON,ELEVI BARDAVID RAHEL,MANA LILY.Perchlorate and Halophilic Prokaryotes:Implications for Possible Halophilic Life on Mars[J].Extremophiles,2014,18(1):75-80. [34] SOROKIN DIMITRY Y,MAKAROVA KSENIA S,ABBAS BAHAA,et al.Discovery of Extremely Halophilic,Methyl-Reducing Euryarchaea Provides Insights into the Evolutionary Origin of Methanogenesis[J].Nature Microbiology,2017,2(8):17081.DOI:10.1038/nmicrobiol.2017.81. [35] NABTI ELHAFIDH,SAHNOUNE MOHAMED,ADJRAD SALAH,et al.A Halophilic and Osmotolerant Azospirillum brasilense Strain from Algerian Soil Restores Wheat Growth Under Saline Conditions[J].Engineering in Life Sciences,2007,7(4):354-360. [36] CORRAL PABLO,AMOOZEGAR MOHAMMAD A,VENTOSA ANTONIO.Halophiles and Their Biomolecules:Recent Advances and Future Applications in Biomedicine[J].Marine Drugs,2019,18(1):33.DOI:10.3390/md18010033. [37] ALBATAINEH HANA,STEVENS DOUGLAS.Marine Myxobacteria:A Few Good Halophiles[J].Marine Drugs,2018,16(6):209.DOI:10.3390/md16060209. [38] LIU Yang,OJIKA MAKOTO.Genomic Analysis of the Rare Slightly Halophilic Myxobacterium "Paraliomyxa miuraensis" SMH-27-4,the Producer of the Antibiotic Miuraenamide A[J].Microorganisms,2023,11(2):371.DOI:10.3390/microorganisms11020371. [39] CHEN Jian,JIA Yun,SUN Yu,et al.Global Marine Microbial Diversity and Its Potential in Bioprospecting[J].Nature,2024,633(8029):371-379. [40] MEDINA-CHVEZ NO ORTEGA,TORRES-CERDA ALFREDO,CHACN JESS M,et al.Disentangling a Metabolic Cross-Feeding in a Halophilic Archaea-Bacteria Consortium[J].Frontiers in Microbiology,2023,14:1221784.DOI:10.3389/fmicb.2023.1221784. [41] PAIDI MURALI KRISHNA,AGARWAL PARINITA,MORE PRASHANT,et al.Chemical Derivatization of Metabolite Mass Profiling of the Recretohalophyte Aeluropus lagopoides Revealing Salt Stress Tolerance Mechanism[J].Marine Biotechnology,2017,19(3):207-218. [42] YANG Xin,YUAN Rui,YANG Shuang,et al.A Salt-Tolerant Growth-Promoting Phyllosphere Microbial Combination from Mangrove Plants and Its Mechanism for Promoting Salt Tolerance in Rice[J].Microbiome,2024,12(1):270. [43] BECKER ERIC A,SEITZER PATRICK M,TRITT ANDREW,et al.Phylogenetically Driven Sequencing of Extremely Halophilic Archaea Reveals Strategies for Static and Dynamic Osmo-Response[J].PLOS Genetics,2014,10(11):e1004784.DOI:10.1371/journal.pgen.1004784. [44] DASSARMA SHILADITYA,DASSARMA PRIYA.Halophiles and Their Enzymes:Negativity Put to Good Use[J].Current Opinion in Microbiology,2015,25:120-126. [45] MUKUNDRAJ GAUTAM R,GAUTAM TARUN K,PRATIBHA INDIRA D,et al.Halophilic Microbiome:Distribution,Diversity and Applications[J].World Journal of Advanced Research and Reviews,2023,17(1):926-933. [46] MARTNEZ-ESPINOSA ROSA MARA.Halophilic Archaea as Tools for Bioremediation Technologies[J].Applied Microbiology and Biotechnology,2024,108(1):319.DOI:10.1007/s00253-024-13164-5. [47] QU Zhen,TAN Chen,WANG Xin,et al.Deciphering Performance and Microbial Characterization of Marine Anammox Bacteria-Based Consortia Treating Nitrogen-Laden Hypersaline Wastewater:Inhibiting Threshold of Salinity[J].Bioresource Technology,2024,393:130170.DOI:10.1016/j.biortech.2023.130170. [48] LIU Wenfang,WU Yutong.Simultaneous Nitrification,Denitrification and Electricity Recovery of Halomonas Strains in Single Chamber Microbial Fuel Cells for Seawater Sewage Treatment[J].Journal of Environmental Chemical Engineering,2021,9(6):106761.DOI:10.1016/j.jece.2021.106761. [49] DUAN Jian,FANG Haiping,SU Ben,et al.Characterization of a Halophilic Heterotrophic Nitrification-Aerobic Denitrification Bacterium and Its Application on Treatment of Saline Wastewater[J].Bioresource Technology,2015,179:421-428. [50] SONG Weilong,LEE LIANYEW,YOU Hong,et al.Microbial Community Succession and Its Correlation with Reactor Performance in a Sponge Membrane Bioreactor Coupled with Fiber-Bundle Anoxic Bio-Filter for Treating Saline Mariculture Wastewater[J].Bioresource Technology,2020,295:122284.DOI:10.1016/j.biortech.2019.122284. [51] HOU Jun,ZHANG Qingke,ZHANG Ruoyao,et al.A Hyperstable,Low-Salt Adapted Protease from Halophilic Archaeon with Potential Applications in Salt-Fermented Foods[J].Food Research International,2024,191:114738.DOI:10.1016/j.foodres.2024.114738. [52] GAONKAR SHARMILA K,ALVARES JENNIFER J,FURTADO IMELDA J.Recent Advances in the Production,Properties and Applications of Haloextremozymes Protease and Lipase from Haloarchaea[J].World Journal of Microbiology and Biotechnology,2023,39(10):285.DOI:10.1007/s11274-023-03733-5. [53] AMOOZEGAR MOHAMMAD A,SAFARPOUR AZADEH,NOGHABI KIANOUSH A,et al.Halophiles and Their Vast Potential in Biofuel Production[J].Frontiers in Microbiology,2019,10:1895.DOI:10.3389/fmicb.2019.01895. [54] CHEN Guoqiang,JIANG Xinrui.Next Generation Industrial Biotechnology Based on Extremophilic Bacteria[J].Current Opinion in Biotechnology,2018,50:94-100. [55] HAN Jing,WU Liping,LIU Xiangbin,et al.Biodegradation and Biocompatibility of Haloarchaea-Produced Poly(3-Hydroxybutyrate-co-3-Hydroxyvalerate) Copolymers[J].Biomaterials,2017,139:172-186. [56] YIN Jin,CHEN Jiancai,WU Qiong,et al.Halophiles,Coming Stars for Industrial Biotechnology[J].Biotechnology Advances,2015,33(7):1433-1442. [57] MATARREDONA LAURA,CAMACHO MARA,ZAFRILLA BEATRIZ,et al.The Survival of Haloferax mediterranei Under Stressful Conditions[J].Microorganisms,2021,9(2):336.DOI:10.3390/microorganisms9020336. [58] MITRA RUPALI,XU Ting,XIANG Heng,et al.Current Developments on Polyhydroxyalkanoates Synthesis by Using Halophiles as a Promising Cell Factory[J].Microbial Cell Factories,2020,19(1):86.DOI:10.1186/s12934-020-01352-5. [59] PARROQUIN-GONZALEZ MARIANA,WINTERBURN JAMES.Continuous Bioreactor Production of Polyhydroxyalkanoates in Haloferax mediterranei[J].Frontiers in Bioengineering and Biotechnology,2023,11:1220271.DOI:10.3389/fbioe.2023.1220271. |
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