[1] 夏焕章,翟航.放线菌次级代谢产物研究进展[J].微生物学杂志,2023,43(4):1-9. [2] VAN BERGEIJK D A,TERLOUW B R,MEDEMA M H,et al.Ecology and genomics of Actinobacteria:new concepts for natural product discovery[J].Nature Reviews Microbiology,2020,18(10):546-558. [3] 董雷,韩嘉瑞,李帅,等.链霉菌最新研究进展[J].微生物学报,2023,63(5):1815-1832. [4] 李帅,董雷,韩嘉瑞,等.新疆古尔班通古特沙漠链霉菌:从可培养资源多样性到抗菌天然产物的生物合成潜力探索[J].中国科学:生命科学,2024,54(9):1699-1718. [5] 潘明慧,杨雪,杜国忠,等.合成生物学助力链霉菌天然产物农药创制与产业化[J].植物保护,2023,49(5):371-389. [6] FENG H W,ZHI Y E,SUN Y J,et al.Draft genome sequence of a novel Streptomyces griseorubens strain,JSD-1,active in carbon and nitrogen recycling[J].Genome Announcements,2014,2(4):e00650. [7] 苏燕. 产抗菌物质海洋放线菌的筛选、鉴定及活性物质的研究[D].秦皇岛:燕山大学,2017. [8] FENG H W,ZHI Y E,SHI W W,et al.Isolation,identification and characterization of a straw degrading Streptomyces griseorubens JSD-1[J].African Journal of Microbiology Research,2013,7(22):2730-2735. [9] PRASAD P,SINGH T,BEDI S.Characterization of the cellulolytic enzyme produced by Streptomyces griseorubens (Accession No.AB184139) isolated from Indian soil[J].Journal of King Saud University - Science,2013,25(3):245-250. [10] 罗艳青. 灰色链霉菌JSD-1发酵工艺及代谢产物研究[D].上海:上海交通大学,2015. [11] 朱本伟,李富超,秦松.海洋链霉菌M506的鉴定及代谢产物抑菌活性初步研究[J].海洋科学,2012,36(12):45-49. [12] 梁光杰,车程川,巩志金,等.一株海洋链霉菌发酵条件的优化及其抑菌活性物质的研究[J].中国酿造,2018,37(12):101-105. [13] SUDHEER N S,BIJU I F,BALASUBRAMANIAN C P,et al.Probiotic potential of a novel endophytic Streptomyces griseorubens CIBA-NS1 isolated from Salicornia sp.against Vibrio campbellii infection in shrimp[J].Microbial Pathogenesis,2024,191:106677. [14] PADEROG M J V,SUAREZ A F L,SABIDO E M,et al.Anthracycline shunt metabolites from philippine marine sediment-derived Streptomyces destroy cell membrane integrity of multidrug-resistant Staphylococcus aureus[J].Frontiers in Microbiology,2020,11:743. [15] HAMED A,ABDEL-RAZEK A S,FRESE M,et al.New oxaphenalene derivative from marine-derived Streptomyces griseorubens sp. ASMR4[J].Zeitschrift Für Naturforschung B,2017,72(1):53-62. [16] 张艳茹,郎剑锋,郭富超,等.禾谷镰刀菌拮抗放线菌21-3的筛选及鉴定[J].河南科技学院学报(自然科学版),2022,50(1):16-21. [17] 韩超,李欣欣,韩建荣.堆肥提取液中大丽轮枝菌拮抗放线菌的分离、鉴定[J].山西农业科学,2016,44(3):328-332. [18] BAKA Z A,RASHAD Y M,GHONEEM K M,et al.Streptomyces griseorubens E44G:a potent antagonist isolated from soil in saudi arabia[J].Journal of Pure and Applied Microbiology,2014,8(S1):221-230. [19] SUNARYANTO R,PRAMISANDI A,RUDIYONO,et al.Isolation and screening of actinomycetes producing antimicrobial substances from Pulau Seribu[J].IOP Conference Series:Earth and Environmental Science,2024,1377(1):012084. [20] SURYAMINARSIH P,KUSRININGRUM,NI′MATUZAROH,et al.Antagonistic compatibility of Streptomyces griseorubens,Gliocladium virens,and Trichoderma harzianum againts Fusarium oxysporum cause of tomato wilt deseases[J].International Journal of Plant and Soil Science,2015,5(2):82-89. [21] SURYAMINARSIH P,WIRANTHI A,WINDRIYANTI W,et al.Study of the application of mixed entomopathogen formula Streptomyces griseorubens and Trichoderma harzianum on Non-Pest insects diversity in rice crops[J].Tec Empresarial,2024,19(2):36-46. [22] ATALLAH B M,HAROUN S A,EL-MOHSNAWY E.Antibacterial activity of two actinomycetes species isolated from black sand in North Egypt[J].South African Journal of Science,2023,119(11/12):1-8. [23] 马赛买,李同源,马燕军,等.几丁质酶在农作物病虫害生物防治中的研究进展[J].生物技术通报,2023,39(10):29-40. [24] MERIEM G,MAHMOUD K.Optimization of chitinase production by a new Streptomyces griseorubens C9 isolate using response surface methodology[J].Annals of Microbiology,2017,67(2):175-183. [25] RASHAD Y M,AL-ASKAR A A,GHONEEM K M,et al.Chitinolytic Streptomyces griseorubens E44G enhances the biocontrol efficacy against Fusarium wilt disease of tomato[J].Phytoparasitica,2017,45(2):227-237. [26] AL-ASKAR A A,RASHAD Y M,HAFEZ E E,et al.Characterization of alkaline protease produced by Streptomyces griseorubens E44G and its possibility for controlling Rhizoctonia root rot disease of corn[J].Biotechnology and Biotechnological Equipment,2015,29(3):457-462. [27] HAFEZ E,RASHAD Y M,ABDULKHAIR W M,et al.Improving the chitinolytic activity of Streptomyces griseorubens e44g by mutagenesis[J].Journal of Microbiology,Biotechnology and Food Sciences,2019,8(5):1156-1160. [28] AL HAMAD B M,AL RAISH S M,RAMADAN G A,et al.Effectiveness of augmentative biological control of Streptomyces griseorubens UAE2 depends on 1-aminocyclopropane-1-carboxylic acid deaminase activity against Neoscytalidium dimidiatum[J].Journal of Fungi,2021,7(11):885. [29] FARAG A M,ELSILK S E,GHONAM E B,et al.L-glutaminase production from new halophilic marine Streptomyces griseorubens NAHE isolated from mangrove sediment,Red Sea,Egypt[J].Egyptian Journal of Aquatic Biology and Fisheries,2024,28(3):167-189. [30] 周潇,张云,黄洪波,等.深海来源链霉菌Streptomyces griseorubens scsio ZY0206多酚蒽酮类代谢产物的研究[J].天然产物研究与开发,2013,25(1):7-11. [31] 刘占文,张利莉.生存胁迫法分离那拉提土壤拮抗放线菌及活性产物[J].塔里木大学学报,2019,31(2):13-22. [32] 刘占文,万传星,张利莉.复合维生素对灰略红链霉菌TRM11107生产拒霉素的影响[J].生物资源,2019,41(1):69-74. [33] NGUYEN Q H,NGUYEN H V,VU T H,et al.Characterization of endophytic Streptomyces griseorubens MPT42 and assessment of antimicrobial synergistic interactions of its extract and essential oil from host plant Litsea cubeba[J].Antibiotics,2019,8(4):197. [34] ABDULKHAIR W M,ALGHUTHAYMI M A.Production and characterization of semi-quinolone antibiotic produced by Streptomyces griseorubens[J].Petroleum and Chemical Industry International,2022,5(3):137-149. [35] HEO C S,KANG J S,YANG J W,et al.Labdane-type diterpenoids from Streptomyces griseorubens and their antimicrobial and cytotoxic activities[J].International Journal of Molecular Sciences,2024,25(6):3311. [36] YANG W Z,LIANG G J,SUN Y,et al.Bioactive secondary metabolites from marine Streptomyces griseorubens f8:isolation,identification and biological activity assay[J].Journal of Marine Science and Engineering,2021,9(9):978. [37] BAYGAR T,UGUR A.Biosynthesis of silver nanoparticles by Streptomyces griseorubens isolated from soil and their antioxidant activity[J].IET Nanobiotechnology,2017,11(3):286-291. [38] EL-NAGGAR M Y,RAMADAN W,EL-HAMAMSY R A.The application of mediated biosynthesized green silver nanoparticles by Streptomyces griseorubens in water treatment[J].Journal of Pure and Applied Microbiology,2017,11(2):685-694. [39] ANJUM M S,KHALIQ S,ASHRAF N,et al.Bioactive streptomycetes:a powerful tool to synthesize diverse nanoparticles with multifarious properties[J].Journal of Basic Microbiology,2024,64(9):e2400129. [40] 马英辉,李利军,卢美欢,等.木质素降解放线菌的鉴定及产酶特性研究[J].环境污染与防治,2018,40(8):902-906. [41] 徐杰,许修宏.Streptomyces griseorubens C-5对堆肥木质纤维素降解及微生物群落代谢的影响[J].太阳能学报,2018,39(2):285-291. [42] 王战,冷雨茜,郭世荣,等.木薯渣基质化发酵微生物分离及复合菌配制[J].农业工程学报,2020,36(21):266-271. [43] CHI C P.灰略红链霉菌JSD-1对猪粪和秸秆混合堆肥效果的影响及其微生态效应研究[D].上海:上海交通大学,2021. [44] TUYEN D T,PHUONG D T H,VAN THANG L.Assessment of the mineralization process efficiency to decompose waste of dry bio-toilet of bio-NTK microbial inoculants[J].Biology Bulletin,2023,50(10):2872-2880. [45] SARITHA M,ARORA A,SINGH S,et al.Streptomyces griseorubens mediated delignification of paddy straw for improved enzymatic saccharification yields[J].Bioresource Technology,2013,135:12-17. [46] CHEN L Z,TANG T,WANG Z,et al.A novel fungal and bacterial consortium promotes the degradation of rice straw:conditions optimization and degradation properties[J].International Biodeterioration and Biodegradation,2024,194:105875. [47] MILAD S,SALEH S E,ABOULWAFA M M,et al.Screening and characterization of soil bacteria for lignin and textile dye effluent bioremediation and optimization using response surface methodology[J].Scientific Reports,2025,15(1):25788. [48] 冯海玮,孙玉静,毛亮,等.接种灰略红链霉菌(Streptomyces griseorubens)对水稻秸秆堆肥及还田后土壤理化性质和微生物群落影响[J].上海交通大学学报(农业科学版),2015,33(4):25-32. [49] BOUBEKRI K,SOUMARE A,MARDAD I,et al.The screening of potassium- and phosphate-solubilizing Actinobacteria and the assessment of their ability to promote wheat growth parameters[J].Microorganisms,2021,9(3):470. [50] SOUMARE A,BOUBEKRI K,LYAMLOULI K,et al.Efficacy of phosphate solubilizing Actinobacteria to improve rock phosphate agronomic effectiveness and plant growth promotion[J].Rhizosphere,2021,17:100284. [51] CHI C P,CHU S H,WANG B,et al.Dynamic bacterial assembly driven by Streptomyces griseorubens JSD-1 inoculants correspond to composting performance in swine manure and rice straw co-composting[J].Bioresource Technology,2020,313:123692. [52] ALSHAMSI A A A,SHETEIWY M S,ABUQAMAR S F,et al.Enhancement of mangrove growth performance using fish emulsion and halotolerant plant growth-promoting Actinobacteria for sustainable management in the UAE[J].Marine Pollution Bulletin,2024,199:115916. [53] ASLAM T,LU A,RANA M,et al.Properties of cellulolytic Streptomyces strains from saline-sodic soil and their effects on rice growth under saline conditions[J].Pakistan Journal of Botany,2024,56(3):1163-1170. [54] XU J,YANG Q.Isolation and characterization of rice straw degrading Streptomyces griseorubens C-5[J].Biodegrada-tion,2010,21(1):107-116. [55] 徐杰. 水稻秸秆降解放线菌的分离鉴定及其降解机理研究[D].哈尔滨:哈尔滨工业大学,2011. [56] 张俊,许超,张宇,等.纤维素酶降解机理的研究进展[J].华南理工大学学报(自然科学版),2019,47(9):121-130. [57] 于跃,张剑.纤维素酶降解纤维素机理的研究进展[J].化学通报,2016,79(2):118-122. [58] ZHANG D,LUO Y Q,CHU S H,et al.Biological pretreatment of rice straw with Streptomyces griseorubens JSD-1 and its optimized production of cellulase and xylanase for improved enzymatic saccharification efficiency[J].Preparative Biochemistry and Biotechnology,2016,46(6):575-585. [59] AANAL P,JAIMIN P,APOORVA V,et al.Isolation and characterization of cellulase-producing actinomycetes from agricultural soils of gujarat,India:potential for liquid lignocellulosic waste degradation[J].Vidya-a Journal of Gujarat University,2025,4(1):148-159. [60] FENG H W,SUN Y J,ZHI Y E,et al.Lignocellulose degradation by the isolate of Streptomyces griseorubens JSD-1[J].Functional and Integrative Genomics,2015,15(2):163-173. [61] FENG H W,ZHI Y E,SUN Y J,et al.Insight into a novel β-1,4-glucosidase from Streptomyces griseorubens JSD-1[J].Applied Biochemistry and Microbiology,2016,52(4):371-377. [62] ZHANG D,LUO Y Q,CHU S H,et al.Enhancement of cellulase and xylanase production using pH-shift and dissolved oxygen control strategy with Streptomyces griseorubens JSD-1[J].Applied Biochemistry and Biotec-hnology,2016,178(2):338-352. [63] DOBARA M I A,EL-SAYED A K A,EL-FALLAL A A,et al.Immobilization and characterization of Streptomyces griseorubens xylanase[J].Egyptian Journal of Botany,2013(3):485-493. [64] 周宁,王智伟,曹平华,等.产酸性木聚糖酶链霉菌的鉴定、酶学特性及发酵工艺研究[J].中国饲料,2016(8):16-21. [65] FENG H W,SUN Y J,ZHI Y E,et al.Expression and characterization of a novel endo-1,4-β-xylanase produced by Streptomyces griseorubens JSD-1 isolated from compost-treated soil[J].Annals of Microbiology,2015,65(3):1771-1779. [66] EL-SAYED M H,GOMAA A E F,ATTA O M,et al.Characteristics and kinetics of thermophilic actinomycetes′amylase production on agro-wastes and its application for ethanol fermentation[J].World Journal of Microbiology and Biotechnology,2024,40(8):255. [67] FENG J,WANG B,ZHANG D,et al.Streptomyces griseo-rubens JSD-1 promotes rice straw composting efficiency in industrial-scale fermenter:evaluation of change in physicochemical properties and microbial community[J].Bioresource Technology,2021,321:124465. |