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NTIS 바로가기Journal of industrial microbiology & biotechnology, v.48 no.3/4, 2021년, pp.kuaa001 -
Kim, Ji Hun (Department of Biological Sciences and KI for the BioCentury, Korea Advanced Institute of Science and Technology , Daejeon 34141, Republic of Korea) , Lee, Namil (Department of Biological Sciences and KI for the BioCentury, Korea Advanced Institute of Science and Technology , Daejeon 34141, Republic of Korea) , Hwang, Soonkyu (Department of Biological Sciences and KI for the BioCentury, Korea Advanced Institute of Science and Technology , Daejeon 34141, Republic of Korea) , Kim, Woori (Department of Biological Sciences and KI for the BioCentury, Korea Advanced Institute of Science and Technology , Daejeon 34141, Republic of Korea) , Lee, Yongjae (Department of Biological Sciences and KI for the BioCentury, Korea Advanced Institute of Science and Technology , Daejeon 34141, Republic of Korea) , Cho, Suhyung (Department of Biological Sciences and KI for the BioCentury, Kore) , Palsson, Bernhard O , Cho, Byung-Kwan
AbstractActinomycetes are a rich source of bioactive natural products important for novel drug leads. Recent genome mining approaches have revealed an enormous number of secondary metabolite biosynthetic gene clusters (smBGCs) in actinomycetes. However, under standard laboratory culture conditions, ...
Abdelmohsen U. R. , Grkovic T. , Balasubramanian S. , Kamel M. S. , Quinn R. J. , Hentschel U. ( 2015 ). Elicitation of secondary metabolism in actinomycetes . Biotechnology Advances , 33 , 798 – 811 . 10.1016/j.biotechadv.2015.06.003 26087412
Adnani N. , Chevrette M. G. , Adibhatla S. N. , Zhang F. , Yu Q. , Braun D. R. , Nelson J. , Simpkins S. W. , McDonald B. R. , Myers C. L. , Piotrowski J. S. , Thompson C. J. , Currie C. R. , Li L. , Rajski S. R. , Bugni T. S. ( 2017 ). Coculture of marine invertebrate-associated bacteria and interdisciplinary technologies enable biosynthesis and discovery of a new antibiotic, keyicin . ACS Chemical Biology , 12 , 3093 – 3102 . 10.1021/acschembio.7b00688 . 29121465
Adnani N. , Vazquez-Rivera E. , Adibhatla S. N. , Ellis G. A. , Braun D. R. , Bugni T. S. ( 2015 ). Investigation of interspecies interactions within marine Micromonosporaceae using an improved co-culture approach . Marine Drugs , 13 , 6082 – 6098 . 10.3390/md13106082 26404321
Amano S. , Morota T. , Kano Y. K. , Narita H. , Hashidzume T. , Yamamoto S. , Mizutani K. , Sakuda S. , Furihata K. , Takano-Shiratori H. , Takano H. , Beppu T. , Ueda K. ( 2010 ). Promomycin, a polyether promoting antibiotic production in Streptomyces spp . Journal of Antibiotics , 63 , 486 – 491 . 10.1038/ja.2010.68 20571515
Aminov R. I. ( 2010 ). A brief history of the antibiotic era: Lessons learned and challenges for the future . Frontiers in Microbiology , 1 , 134 . 10.3389/fmicb.2010.00134 21687759
Arora D. , Gupta P. , Jaglan S. , Roullier C. , Grovel O. , Bertrand S. ( 2020 ). Expanding the chemical diversity through microorganisms co-culture: Current status and outlook . Biotechnology Advances , 40 , 107521 . 10.1016/j.biotechadv.2020.107521 31953204
Baltz R. H. ( 2008 ). Renaissance in antibacterial discovery from actinomycetes . Current Opinion in Pharmacology , 8 , 557 – 563 . 10.1016/j.coph.2008.04.008 18524678
Barger S. R. , Hoefler B. C. , Cubillos-Ruiz A. , Russell W. K. , Russell D. H. , Straight P. D. ( 2012 ). Imaging secondary metabolism of Streptomyces sp. Mg1 during cellular lysis and colony degradation of competing Bacillus subtilis . Antonie Van Leeuwenhoek , 102 , 435 – 445 . 10.1007/s10482-012-9769-0 22777252
Belknap K. C. , Park C. J. , Barth B. M. , Andam C. P. ( 2020 ). Genome mining of biosynthetic and chemotherapeutic gene clusters in Streptomyces bacteria . Scientific Reports , 10 , 2003 . 10.1038/s41598-020-58904-9 32029878
Bhatnagar R. K. , Doull J. L. , Vining L. C. ( 1988 ). Role of the carbon source in regulating chloramphenicol production by Streptomyces venezuelae : Studies in batch and continuous cultures . Canadian Journal of Microbiology , 34 , 1217 – 1223 . 10.1139/m88-214 3208198
Bibb M. J. ( 2005 ). Regulation of secondary metabolism in Streptomycetes . Current Opinion in Microbiology , 8 , 208 – 215 . 10.1016/j.mib.2005.02.016 15802254
Bode H. B. , Bethe B. , Hofs R. , Zeeck A. ( 2002 ). Big effects from small changes: Possible ways to explore nature's chemical diversity . ChemBioChem , 3 , 619 – 627 . 10.1002/1439-7633(20020703)3:7<619::Aid-Cbic619>3.0.Co;2-9 12324995
Boucher H. W. , Talbot G. H. , Bradley J. S. , Edwards J. E. , Gilbert D. , Rice L. B. , Scheld M. , Spellberg B. , Bartlett J. ( 2009 ). Bad bugs, no drugs: No ESKAPE! An update from the Infectious Diseases Society of America . Clinical Infectious Diseases , 48 , 1 – 12 . 10.1086/595011 19035777
Carlson S. , Tanouye U. , Omarsdottir S. , Murphy B. T. ( 2015 ). Phylum-specific regulation of resistomycin production in a Streptomyces sp. via microbial coculture . Journal of Natural Products , 78 , 381 – 387 . 10.1021/np500767u 25537064
Challis G. L. , Hopwood D. A. ( 2003 ). Synergy and contingency as driving forces for the evolution of multiple secondary metabolite production by Streptomyces species . Proceedings of the National Academy of Sciences of the USA , 100 , 14555 – 14561 . 10.1073/pnas.1934677100 12970466
Charusanti P. , Fong N. L. , Nagarajan H. , Pereira A. R. , Li H. J. , Abate E. A. , Su Y. , Gerwick W. H. , Palsson B. O. ( 2012 ). Exploiting adaptive laboratory evolution of Streptomyces clavuligerus for antibiotic discovery and overproduction . PLoS One , 7 , e33727 . 10.1371/journal.pone.0033727 22470465
Chen G. , Wang G. Y. , Li X. , Waters B. , Davies J. ( 2000 ). Enhanced production of microbial metabolites in the presence of dimethyl sulfoxide . Journal of Antibiotics , 53 , 1145 – 1153 . 10.7164/antibiotics.53.1145 11132960
Cho J. Y. , Kim M. S. ( 2012 ). Induction of antifouling diterpene production by Streptomyces cinnabarinus PK209 in co-culture with marine-derived Alteromonas sp. KNS-16 . Bioscience, Biotechnology, and Biochemistry , 76 , 1849 – 1854 . 10.1271/bbb.120221 23047094
Christova K. , Sholeva Z. , Chipeva V. ( 1995 ). Application of molecular biological methods in taxonomy of genus Streptomyces . Journal of Culture Collections , 1 , 3 – 10 .
Cihak M. , Kamenik Z. , Smidova K. , Bergman N. , Benada O. , Kofronova O. , Petrickova K. , Bobek J. ( 2017 ). Secondary metabolites produced during the germination of Streptomyces coelicolor . Frontiers in Microbiology , 8 , 2495 . 10.3389/fmicb.2017.02495 29326665
Cobb R. E. , Wang Y. , Zhao H. ( 2015 ). High-efficiency multiplex genome editing of Streptomyces species using an engineered CRISPR/Cas system . ACS Synthetic Biology , 4 , 723 – 728 . 10.1021/sb500351f 25458909
Craney A. , Ahmed S. , Nodwell J. ( 2013 ). Towards a new science of secondary metabolism . Journal of Antibiotics , 66 , 387 – 400 . 10.1038/ja.2013.25 23612726
Cui H. , Song M. C. , Ban Y. H. , Jun S. Y. , Kwon A. S. , Lee J. Y. , Yoon Y. J. ( 2019 ). High-yield production of multiple O -methylated phenylpropanoids by the engineered Escherichia coli – Streptomyces cocultivation system . Microbial Cell Factories , 18 , 67 . 10.1186/s12934-019-1118-9 30971246
Dashti Y. , Grkovic T. , Abdelmohsen U. R. , Hentschel U. , Quinn R. J. ( 2014 ). Production of induced secondary metabolites by a co-culture of sponge-associated actinomycetes, Actinokineospora sp. EG49 and Nocardiopsis sp. RV163 . Marine Drugs , 12 , 3046 – 3059 . 10.3390/md12053046 24857962
Derewacz D. K. , Covington B. C. , McLean J. A. , Bachmann B. O. ( 2015 ). Mapping microbial response metabolomes for induced natural product discovery . ACS Chemical Biology , 10 , 1998 – 2006 . 10.1021/acschembio.5b00001 26039241
Doroghazi J. R. , Albright J. C. , Goering A. W. , Ju K. S. , Haines R. R. , Tchalukov K. A. , Labeda D. P. , Kelleher N. L. , Metcalf W. W. ( 2014 ). A roadmap for natural product discovery based on large-scale genomics and metabolomics . Nature Chemical Biology , 10 , 963 – 968 . 10.1038/nchembio.1659 . 25262415
Ebrahim W. , El-Neketi M. , Lewald L. I. , Orfali R. S. , Lin W. H. , Rehberg N. , Kalscheuer R. , Daletos G. , Proksch P. ( 2016 ). Metabolites from the fungal endophyte Aspergillus austroafricanus in axenic culture and in fungal-bacterial mixed cultures . Journal of Natural Products , 79 , 914 – 922 . 10.1021/acs.jnatprod.5b00975 27070198
Ezaki M. , Iwami M. , Yamashita M. , Komori T. , Umehara K. , Imanaka H. ( 1992 ). Biphenomycin A production by a mixed culture . Applied and Environmental Microbiology , 58 , 3879 – 3882 . 1476432
Ezaki M. , Shigematsu N. , Yamashita M. , Komori T. , Umehara K. , Imanaka H. ( 1993 ). Biphenomycin C, a precursor of biphenomycin A in mixed culture . Journal of Antibiotics , 46 , 135 – 140 . 10.7164/antibiotics.46.135 8436546
Fischer J. , Muller S. Y. , Netzker T. , Jager N. , Gacek-Matthews A. , Scherlach K. , Stroe M. C. , Garcia-Altares M. , Pezzini F. , Schoeler H. , Reichelt M. , Gershenzon J. , Krespach M. K. , Shelest E. , Schroeckh V. , Valiante V. , Heinzel T. , Hertweck C. , Strauss J. , Brakhage A. A. ( 2018 ). Chromatin mapping identifies BasR, a key regulator of bacteria-triggered production of fungal secondary metabolites . eLife , 7 , e40969 . 10.7554/eLife.40969 30311911
Frey-Klett P. , Burlinson P. , Deveau A. , Barret M. , Tarkka M. , Sarniguet A. ( 2011 ). Bacterial–fungal interactions: Hyphens between agricultural, clinical, environmental, and food microbiologists . Microbiology and Molecular Biology Reviews , 75 , 583 – 609 . 10.1128/Mmbr.00020-11 22126995
Gao C. , Hindra , Mulder D. , Yin C. , Elliot M. A. ( 2012 ). Crp is a global regulator of antibiotic production in Streptomyces . mBio , 3 , e00407 – 12 . 10.1128/mBio.00407-12 23232715
Grafe U. , Reinhardt G. , Schade W. , Eritt I. , Fleck W. F. , Radics L. ( 1983 ). Interspecific inducers of cytodifferentiation and anthracycline biosynthesis from Streptomyces bikinensis and Streptomyces cyaneofuscatus . Biotechnology Letters , 5 , 591 – 596 . 10.1007/Bf00130838
Han J. , Gao Q. X. , Zhang Y. G. , Li L. , Mohamad O. A. A. , Rao M. P. N. , Xiao M. , Hozzein W. N. , Alkhalifah D. H. M. , Tao Y. , Li W. J. ( 2018 ). Transcriptomic and ectoine analysis of halotolerant Nocardiopsis gilva YIM 90087(T) under salt stress . Frontiers in Microbiology , 9 , 618 . 10.3389/fmicb.2018.00618 29651284
Harvey A. L. ( 2008 ). Natural products in drug discovery . Drug Discovery Today , 13 , 894 – 901 . 10.1016/j.drudis.2008.07.004 18691670
Hibbing M. E. , Fuqua C. , Parsek M. R. , Peterson S. B. ( 2010 ). Bacterial competition: Surviving and thriving in the microbial jungle . Nature Reviews Microbiology , 8 , 15 – 25 . 10.1038/nrmicro2259 19946288
Horinouchi S. , Beppu T. ( 1992 ). Autoregulatory factors and communication in actinomycetes . Annual Review of Microbiology , 46 , 377 – 398 . 10.1146/annurev.mi.46.100192.002113
Hosaka T. , Ohnishi-Kameyama M. , Muramatsu H. , Murakami K. , Tsurumi Y. , Kodani S. , Yoshida M. , Fujie A. , Ochi K. ( 2009 ). Antibacterial discovery in actinomycetes strains with mutations in RNA polymerase or ribosomal protein S12 . Nature Biotechnology , 27 , 462 – 464 . 10.1038/nbt.1538
Hoshino S. , Okada M. , Awakawa T. , Asamizu S. , Onaka H. , Abe I. ( 2017 ). Mycolic acid containing bacterium stimulates tandem cyclization of polyene macrolactam in a lake sediment derived rare actinomycete . Organic Letters , 19 , 4992 – 4995 . 10.1021/acs.orglett.7b02508 28880091
Hoshino S. , Okada M. , Wakimoto T. , Zhang H. , Hayashi F. , Onaka H. , Abe I. ( 2015a ). Niizalactams A–C, multicyclic macrolactams isolated from combined culture of Streptomyces with mycolic acid-containing bacterium . Journal of Natural Products , 78 , 3011 – 3017 . 10.1021/acs.jnatprod.5b00804 26624939
Hoshino S. , Ozeki M. , Awakawa T. , Morita H. , Onaka H. , Abe I. ( 2018a ). Catenulobactins A and B, heterocyclic peptides from culturing Catenuloplanes sp. with a mycolic acid-containing bacterium . Journal of Natural Products , 81 , 2106 – 2110 . 10.1021/acs.jnatprod.8b00261 30130105
Hoshino S. , Ozeki M. , Wong C. P. , Zhang H. , Hayashi F. , Awakawa T. , Morita H. , Onaka H. , Abe I. ( 2018b ). Mirilactams C–E, novel polycyclic macrolactams isolated from combined-culture of Actinosynnema mirum NBRC 14064 and mycolic acid-containing bacterium . Chemical and Pharmaceutical Bulletin , 66 , 660 – 667 . 10.1248/cpb.c18-00143 29863068
Hoshino S. , Wakimoto T. , Onaka H. , Abe I. ( 2015b ). Chojalactones A–C, cytotoxic butanolides isolated from Streptomyces sp. cultivated with mycolic acid containing bacterium . Organic Letters , 17 , 1501 – 1504 . 10.1021/acs.orglett.5b00385 25742189
Hoshino S. , Wong C. P. , Ozeki M. , Zhang H. , Hayashi F. , Awakawa T. , Asamizu S. , Onaka H. , Abe I. ( 2018c ). Umezawamides, new bioactive polycyclic tetramate macrolactams isolated from a combined-culture of Umezawaea sp. and mycolic acid-containing bacterium . Journal of Antibiotics , 71 , 653 – 657 . 10.1038/s41429-018-0040-4 29540776
Hoshino S. , Zhang L. , Awakawa T. , Wakimoto T. , Onaka H. , Abe I. ( 2015c ). Arcyriaflavin E, a new cytotoxic indolocarbazole alkaloid isolated by combined-culture of mycolic acid-containing bacteria and Streptomyces cinnamoneus NBRC 13823 . Journal of Antibiotics , 68 , 342 – 344 . 10.1038/ja.2014.147 25335694
Huang H. , Zheng G. , Jiang W. , Hu H. , Lu Y. ( 2015 ). One-step high-efficiency CRISPR/Cas9-mediated genome editing in Streptomyces . Acta Biochimica et Biophysica Sinica , 47 , 231 – 243 . 10.1093/abbs/gmv007 25739462
Jose P. A. , Jebakumar S. R. ( 2012 ). Phylogenetic diversity of actinomycetes cultured from coastal multipond solar saltern in Tuticorin, India . Aquatic Biosystems , 8 , 23 . 10.1186/2046-9063-8-23 22950748
Kamdem R. S. T. , Wang H. , Wafo P. , Ebrahim W. , Ozkaya F. C. , Makhloufi G. , Janiak C. , Sureechatchaiyan P. , Kassack M. U. , Lin W. H. , Liu Z. , Proksch P. ( 2018 ). Induction of new metabolites from the endophytic fungus Bionectria sp. through bacterial co-culture . Fitoterapia , 124 , 132 – 136 . 10.1016/j.fitote.2017.10.021 29106994
Kawai K. , Wang G. , Okamoto S. , Ochi K. ( 2007 ). The rare earth, scandium, causes antibiotic overproduction in Streptomyces spp . FEMS Microbiology Letters , 274 , 311 – 315 . 10.1111/j.1574-6968.2007.00846.x 17645525
Keilhofer N. , Nachtigall J. , Kulik A. , Ecke M. , Hampp R. , Sussmuth R. D. , Fiedler H. P. , Schrey S. D. ( 2018 ). Streptomyces AcH 505 triggers production of a salicylic acid analogue in the fungal pathogen Heterobasidion abietinum that enhances infection of Norway spruce seedlings . Antonie Van Leeuwenhoek , 111 , 691 – 704 . 10.1007/s10482-018-1017-9 29350358
Khalil Z. G. , Cruz-Morales P. , Licona-Cassani C. , Marcellin E. , Capon R. J. ( 2019 ). Inter-kingdom beach warfare: Microbial chemical communication activates natural chemical defences . ISME Journal , 13 , 147 – 158 . 10.1038/s41396-018-0265-z 30116041
Khokhlov A. S. , Anisova L. N. , Tovarova I. I. , Kleiner E. M. , Kovalenko I. V. , Krasilnikova O. I. , Kornitskaya E. Y. , Pliner S. A. ( 1973 ). Effect of A-factor on the growth of asporogenous mutants of Streptomyces griseus , not producing this factor . Zeitschrift fur Allgemeine Mikrobiologie , 13 , 647 – 655 . 10.1002/jobm.3630130803 4131140
Kim E. S. , Hong H. J. , Choi C. Y. , Cohen S. N. ( 2001 ). Modulation of actinorhodin biosynthesis in Streptomyces lividans by glucose repression of afsR2 gene transcription . Journal of Bacteriology , 183 , 2198 – 2203 . 10.1128/JB.183.7.2198-2203.2001 11244057
Klapper M. , Gotze S. , Barnett R. , Willing K. , Stallforth P. ( 2016 ). Bacterial alkaloids prevent amoebal predation . Angewandte Chemie, International Edition , 55 , 8944 – 8947 . 10.1002/anie.201603312 27294402
Koehn F. E. , Carter G. T. ( 2005 ). The evolving role of natural products in drug discovery . Nature Reviews Drug Discovery , 4 , 206 – 220 . 10.1038/nrd1657 15729362
Konig C. C. , Scherlach K. , Schroeckh V. , Horn F. , Nietzsche S. , Brakhage A. A. , Hertweck C. ( 2013 ). Bacterium induces cryptic meroterpenoid pathway in the pathogenic fungus Aspergillus fumigatus . ChemBioChem , 14 , 938 – 942 . 10.1002/cbic.201300070 23649940
Kroiss J. , Kaltenpoth M. , Schneider B. , Schwinger M. G. , Hertweck C. , Maddula R. K. , Strohm E. , Svatos A. ( 2010 ). Symbiotic Streptomycetes provide antibiotic combination prophylaxis for wasp offspring . Nature Chemical Biology , 6 , 261 – 263 . 10.1038/Nchembio.331 20190763
Kronheim S. , Daniel-Ivad M. , Duan Z. , Hwang S. , Wong A. I. , Mantel I. , Nodwell J. R. , Maxwell K. L. ( 2018 ). A chemical defence against phage infection . Nature , 564 , 283 – 286 . 10.1038/s41586-018-0767-x 30518855
Kurosawa K. , Ghiviriga I. , Sambandan T. G. , Lessard P. A. , Barbara J. E. , Rha C. , Sinskey A. J. ( 2008 ). Rhodostreptomycins, antibiotics biosynthesized following horizontal gene transfer from Streptomyces padanus to Rhodococcus fascians . Journal of the American Chemical Society , 130 , 1126 – 1127 . 10.1021/ja077821p 18179219
Laureti L. , Song L. , Huang S. , Corre C. , Leblond P. , Challis G. L. , Aigle B. ( 2011 ). Identification of a bioactive 51-membered macrolide complex by activation of a silent polyketide synthase in Streptomyces ambofaciens . Proceeding of the National Academy of Sciences of the USA , 108 , 6258 – 6263 . 10.1073/pnas.1019077108
Lee N. , Kim W. , Chung J. , Lee Y. , Cho S. , Jang K. S. , Kim S. C. , Palsson B. , Cho B. K. ( 2020a ). Iron competition triggers antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus . ISME Journal , 14 , 1111 – 1124 . 10.1038/s41396-020-0594-6 31992858
Lee N. , Kim W. , Hwang S. , Lee Y. , Cho S. , Palsson B. , Cho B. K. ( 2020b ). Thirty complete Streptomyces genome sequences for mining novel secondary metabolite biosynthetic gene clusters . Scientific Data , 7 , 55 . 10.1038/s41597-020-0395-9 32054853
Luo Y. , Huang H. , Liang J. , Wang M. , Lu L. , Shao Z. , Cobb R. E. , Zhao H. ( 2013 ). Activation and characterization of a cryptic polycyclic tetramate macrolactam biosynthetic gene cluster . Nature Communications , 4 , 2894 . 10.1038/ncomms3894
Luti K. J. , Mavituna F. ( 2011 ). Elicitation of Streptomyces coelicolor with dead cells of Bacillus subtilis and Staphylococcus aureus in a bioreactor increases production of undecylprodigiosin . Applied Microbiology and Biotechnology , 90 , 461 – 466 . 10.1007/s00253-010-3032-2 21222119
Mavituna F. , Luti K. J. K. , Gu L. X. ( 2016 ). In search of the E. coli compounds that change the antibiotic production pattern of Streptomyces coelicolor during inter-species interaction . Enzyme and Microbial Technology , 90 , 45 – 52 . 10.1016/j.enzmictec.2016.03.009 27241291
Meschke H. , Walter S. , Schrempf H. ( 2012 ). Characterization and localization of prodiginines from Streptomyces lividans suppressing Verticillium dahliae in the absence or presence of Arabidopsis thaliana . Environmental Microbiology , 14 , 940 – 952 . 10.1111/j.1462-2920.2011.02665.x 22151498
Moussa M. , Ebrahim W. , Bonus M. , Gohlke H. , Mandi A. , Kurtan T. , Hartmann R. , Kalscheuer R. , Lin W. H. , Liu Z. , Proksch P. ( 2019 ). Co-culture of the fungus Fusarium tricinctum with Streptomyces lividans induces production of cryptic naphthoquinone dimers . RSC Advances , 9 , 1491 – 1500 . 10.1039/c8ra09067j 35518011
Nett M. , Ikeda H. , Moore B. S. ( 2009 ). Genomic basis for natural product biosynthetic diversity in the actinomycetes . Natural Product Reports , 26 , 1362 – 1384 . 10.1039/b817069j 19844637
Nierman W. C. , Pain A. , Anderson M. J. , Wortman J. R. , Kim H. S. , Arroyo J. , Berriman M. , Abe K. , Archer D. B. , Bermejo C. , Bennett J. , Bowyer P. , Chen D. , Collins M. , Coulsen R. , Davies R. , Dyer P. S. , Farman M. , Fedorova N. , Denning D. W. ( 2005 ). Genomic sequence of the pathogenic and allergenic filamentous fungus Aspergillus fumigatus . Nature , 438 , 1151 – 1156 . 10.1038/nature04332 16372009
Niu G. , Chater K. F. , Tian Y. , Zhang J. , Tan H. ( 2016 ). Specialised metabolites regulating antibiotic biosynthesis in Streptomyces spp . FEMS Microbiology Reviews , 40 , 554 – 573 . 10.1093/femsre/fuw012 27288284
Nutzmann H. W. , Reyes-Dominguez Y. , Scherlach K. , Schroeckh V. , Horn F. , Gacek A. , Schumann J. , Hertweck C. , Strauss J. , Brakhage A. A. ( 2011 ). Bacteria-induced natural product formation in the fungus Aspergillus nidulans requires Saga/Ada-mediated histone acetylation . Proceedings of the National Academy of Sciences of the USA , 108 , 14282 – 14287 . 10.1073/pnas.1103523108 21825172
Oh D. C. , Kauffman C. A. , Jensen P. R. , Fenical W. ( 2007 ). Induced production of emericellamides A and B from the marine-derived fungus Emericella sp. in competing co-culture . Journal of Natural Products , 70 , 515 – 520 . 10.1021/np060381f 17323993
Ohnishi Y. , Ishikawa J. , Hara H. , Suzuki H. , Ikenoya M. , Ikeda H. , Yamashita A. , Hattori M. , Horinouchi S. ( 2008 ). Genome sequence of the streptomycin-producing microorganism Streptomyces griseus IFO 13350 . Journal of Bacteriology , 190 , 4050 – 4060 . 10.1128/Jb.00204-08 18375553
Onaka H. , Mori Y. , Igarashi Y. , Furumai T. ( 2011 ). Mycolic acid-containing bacteria induce natural-product biosynthesis in Streptomyces species . Applied and Environmental Microbiology , 77 , 400 – 406 . 10.1128/AEM.01337-10 21097597
Onaka H. , Ozaki T. , Mori Y. , Izawa M. , Hayashi S. , Asamizu S. ( 2015 ). Mycolic acid-containing bacteria activate heterologous secondary metabolite expression in Streptomyces lividans . Journal of Antibiotics , 68 , 594 – 597 . 10.1038/ja.2015.31 25829201
Park H. B. , Park J. S. , Lee S. I. , Shin B. , Oh D. C. , Kwon H. C. ( 2017 ). Gordonic acid, a polyketide glycoside derived from bacterial coculture of Streptomyces and Gordonia species . Journal of Natural Products , 80 , 2542 – 2546 . 10.1021/acs.jnatprod.7b00293 28845982
Patin N. V. , Floros D. J. , Hughes C. C. , Dorrestein P. C. , Jensen P. R. ( 2018 ). The role of inter-species interactions in Salinispora specialized metabolism . Microbiology , 164 , 946 – 955 . 10.1099/mic.0.000679 29877785
Pel H. J. , de Winde J. H. , Archer D. B. , Dyer P. S. , Hofmann G. , Schaap P. J. , Turner G. , de Vries R. P. , Albang R. , Albermann K. , Andersen M. R. , Bendtsen J. D. , Benen J. A. , van den Berg M. , Breestraat S. , Caddick M. X. , Contreras R. , Cornell M. , Coutinho P. M. , Stam H. ( 2007 ). Genome sequencing and analysis of the versatile cell factory Aspergillus niger CBS 513.88 . Nature Biotechnology , 25 , 221 – 231 . 10.1038/nbt1282
Pendleton J. N. , Gorman S. P. , Gilmore B. F. ( 2013 ). Clinical relevance of the ESKAPE pathogens . Expert Reviews of Anti-infective Therapy , 11 , 297 – 308 . 10.1586/Eri.13.12 23458769
Perez J. , Munoz-Dorado J. , Brana A. F. , Shimkets L. J. , Sevillano L. , Santamaria R. I. ( 2011 ). Myxococcus xanthus induces actinorhodin overproduction and aerial mycelium formation by Streptomyces coelicolor . Microbial Biotechnology , 4 , 175 – 183 . 10.1111/j.1751-7915.2010.00208.x 21342463
Pettit R. K. ( 2011 ). Small-molecule elicitation of microbial secondary metabolites . Microbial Biotechnology , 4 , 471 – 478 . 10.1111/j.1751-7915.2010.00196.x 21375710
Procopio R. E. , Silva I. R. , Martins M. K. , Azevedo J. L. , Araujo J. M. ( 2012 ). Antibiotics produced by Streptomyces . Brazilian Journal of Infectious Diseases , 16 , 466 – 471 . 10.1016/j.bjid.2012.08.014
Quillet L. , Barray S. , Labedan B. , Petit F. , Guespin-Michel J. ( 1995 ). The gene encoding the β-1,4-endoglucanase (CelA) from Myxococcus xanthus : Evidence for independent acquisition by horizontal transfer of binding and catalytic domains from actinomycetes . Gene , 158 , 23 – 29 . 10.1016/0378-1119(95)00091-j 7789807
Rateb M. E. , Hallyburton I. , Houssen W. E. , Bull A. T. , Goodfellow M. , Santhanam R. , Jaspars M. , Ebel R. ( 2013 ). Induction of diverse secondary metabolites in Aspergillus fumigatus by microbial co-culture . RSC Advances , 3 , 14444 – 14450 . 10.1039/c3ra42378f
Reen F. J. , Romano S. , Dobson A. D. W. , O'Gara F. ( 2015 ). The sound of silence: Activating silent biosynthetic gene clusters in marine microorganisms . Marine Drugs , 13 , 4754 – 4783 . 10.3390/md13084754 26264003
Rice L. B. ( 2008 ). Federal funding for the study of antimicrobial resistance in nosocomial pathogens: No ESKAPE . Journal of Infectious Diseases , 197 , 1079 – 1081 . 10.1086/533452 18419525
Romano S. , Jackson S. A. , Patry S. , Dobson A. D. W. ( 2018 ). Extending the “one strain many compounds” (OSMAC) principle to marine microorganisms . Marine Drugs , 16 , 244 . 10.3390/md16070244
Saito S. , Kato W. , Ikeda H. , Katsuyama Y. , Ohnishi Y. , Imoto M. ( 2020 ). Discovery of “heat shock metabolites” produced by thermotolerant actinomycetes in high-temperature culture . Journal of Antibiotics , 73 , 203 – 210 . 10.1038/s41429-020-0279-4 32015464
Sanchez S. , Chavez A. , Forero A. , Garcia-Huante Y. , Romero A. , Sanchez M. , Rocha D. , Sanchez B. , Avalos M. , Guzman-Trampe S. , Rodriguez-Sanoja R. , Langley E. , Ruiz B. ( 2010 ). Carbon source regulation of antibiotic production . Journal of Antibiotics , 63 , 442 – 459 . 10.1038/ja.2010.78 20664603
Sankaran L. , Pogell B. M. ( 1975 ). Biosynthesis of puromycin in Streptomyces alboniger : Regulation and properties of O -demethylpuromycin O -methyltransferase . Antimicrobial Agents and Chemotherapy , 8 , 721 – 732 . 10.1128/aac.8.6.721 1211926
Schaberle T. F. , Orland A. , Konig G. M. ( 2014 ). Enhanced production of undecylprodigiosin in Streptomyces coelicolor by co-cultivation with the corallopyronin A-producing myxobacterium, Corallococcus coralloides . Biotechnology Letters , 36 , 641 – 648 . 10.1007/s10529-013-1406-0 24249103
Schroeckh V. , Scherlach K. , Nutzmann H. W. , Shelest E. , Schmidt-Heck W. , Schuemann J. , Martin K. , Hertweck C. , Brakhage A. A. ( 2009 ). Intimate bacterial–fungal interaction triggers biosynthesis of archetypal polyketides in Aspergillus nidulans . Proceedings of the National Academy of Sciences of the USA , 106 , 14558 – 14563 . 10.1073/pnas.0901870106 19666480
Shin D. , Byun W. S. , Moon K. , Kwon Y. , Bae M. , Um S. , Lee S. K. , Oh D. C. ( 2018 ). Coculture of marine Streptomyces sp. with Bacillus sp. produces a new piperazic acid-bearing cyclic peptide . Frontiers in Chemistry , 6 , 498 . 10.3389/fchem.2018.00498 30406080
Slattery M. , Rajbhandari I. , Wesson K. ( 2001 ). Competition-mediated antibiotic induction in the marine bacterium Streptomyces tenjimariensis . Microbial Ecology , 41 , 90 – 96 . 12032613
Straight P. D. , Fischbach M. A. , Walsh C. T. , Rudner D. Z. , Kolter R. ( 2007 ). A singular enzymatic megacomplex from Bacillus subtilis . Proceedings of the National Academy of Sciences of the USA , 104 , 305 – 310 . 10.1073/pnas.0609073103 17190806
Stroe M. C. , Netzker T. , Scherlach K. , Kruger T. , Hertweck C. , Valiante V. , Brakhage A. A. ( 2020 ). Targeted induction of a silent fungal gene cluster encoding the bacteria-specific germination inhibitor fumigermin . eLife , 9 , e52541 . 10.7554/eLife.52541 32083553
Sugiyama R. , Nishimura S. , Ozaki T. , Asamizu S. , Onaka H. , Kakeya H. ( 2015 ). 5-Alkyl-1,2,3,4-tetrahydroquinolines, new membrane-interacting lipophilic metabolites produced by combined culture of Streptomyces nigrescens and Tsukamurella pulmonis . Organic Letters , 17 , 1918 – 1921 . 10.1021/acs.orglett.5b00607 25826296
Sugiyama R. , Nishimura S. , Ozaki T. , Asamizu S. , Onaka H. , Kakeya H. ( 2016 ). Discovery and total synthesis of streptoaminals: Antimicrobial [5,5]-spirohemiaminals from the combined-culture of Streptomyces nigrescens and Tsukamurella pulmonis . Angewandte Chemie, International Edition , 55 , 10278 – 10282 . 10.1002/anie.201604126 27459894
Sung A. A. , Gromek S. M. , Balunas M. J. ( 2017 ). Upregulation and identification of antibiotic activity of a marine-derived Streptomyces sp. via co-cultures with human pathogens . Marine Drugs , 15 , 250 . 10.3390/md15080250
Tacconelli E. , Carrara E. , Savoldi A. , Harbarth S. , Mendelson M. , Monnet D. L. , Pulcini C. , Kahlmeter G. , Kluytmans J. , Carmeli Y. , Ouellette M. , Outterson K. , Patel J. , Cavaleri M. , Cox E. M. , Houchens C. R. , Grayson M. L. , Hansen P. , Singh N. , … WHO Pathogens Priority List Working Group . ( 2018 ). Discovery, research, and development of new antibiotics: The WHO priority list of antibiotic-resistant bacteria and tuberculosis . Lancet Infectious Diseases , 18 , 318 – 327 . 10.1016/S1473-3099(17)30753-3 29276051
Tan Z. Q. , Leow H. Y. , Lee D. C. W. , Karisnan K. , Song A. A. L. , Mai C. W. , Yap W. S. , Lim S. H. E. , Lai K. S. ( 2019 ). Co-culture systems for the production of secondary metabolites: Current and future prospects . The Open Biotechnology Journal , 13 , 18 – 26 .
Tanaka Y. , Hosaka T. , Ochi K. ( 2010 ). Rare earth elements activate the secondary metabolite-biosynthetic gene clusters in Streptomyces coelicolor A3(2) . Journal of Antibiotics , 63 , 477 – 481 . 10.1038/ja.2010.53 20551989
Traxler M. F. , Seyedsayamdost M. R. , Clardy J. , Kolter R. ( 2012 ). Interspecies modulation of bacterial development through iron competition and siderophore piracy . Molecular Microbiology , 86 , 628 – 644 . 10.1111/mmi.12008 22931126
Traxler M. F. , Watrous J. D. , Alexandrov T. , Dorrestein P. C. , Kolter R. ( 2013 ). Interspecies interactions stimulate diversification of the Streptomyces coelicolor secreted metabolome . mBio , 4 , e00459 – 13 . 10.1128/mBio.00459-13 23963177
Ueda K. , Kawai S. , Ogawa H. , Kiyama A. , Kubota T. , Kawanobe H. , Beppu T. ( 2000 ). Wide distribution of interspecific stimulatory events on antibiotic production and sporulation among Streptomyces species . Journal of Antibiotics , 53 , 979 – 982 . 10.7164/antibiotics.53.979 11099234
van Bergeijk D. A. , Terlouw B. R. , Medema M. H. , van Wezel G. P. ( 2020 ). Ecology and genomics of actinobacteria: New concepts for natural product discovery . Nature Reviews Microbiology , 18 , 546 – 558 . 10.1038/s41579-020-0379-y 32483324
Vargas-Bautista C. , Rahlwes K. , Straight P. ( 2014 ). Bacterial competition reveals differential regulation of the pks genes by Bacillus subtilis . Journal of Bacteriology , 196 , 717 – 728 . 10.1128/JB.01022-13 24187085
Ventola C. L. ( 2015 ). The antibiotic resistance crisis: Part 1: Causes and threats . Pharmacy and Therapeutics , 40 , 277 – 283 . 25859123
Wakefield J. , Hassan H. M. , Jaspars M. , Ebel R. , Rateb M. E. ( 2017 ). Dual induction of new microbial secondary metabolites by fungal bacterial co-cultivation . Frontiers in Microbiology , 8 , 1284 . 10.3389/fmicb.2017.01284 28744271
Wang Y. , Wang L. , Zhuang Y. , Kong F. , Zhang C. , Zhu W. ( 2014 ). Phenolic polyketides from the co-cultivation of marine-derived Penicillium sp. WC-29-5 and Streptomyces fradiae 007 . Marine Drugs , 12 , 2079 – 2088 . 10.3390/md12042079 24714124
Wortman J. R. , Gilsenan J. M. , Joardar V. , Deegan J. , Clutterbuck J. , Andersen M. R. , Archer D. , Bencina M. , Braus G. , Coutinho P. , von Dohren H. , Doonan J. , Driessen A. J. , Durek P. , Espeso E. , Fekete E. , Flipphi M. , Estrada C. G. , Geysens S. , Turner G. ( 2009 ). The 2008 update of the Aspergillus nidulans genome annotation: A community effort . Fungal Genetics and Biology , 46 ( Suppl. 1 ), S2 – S13 . 10.1016/j.fgb.2008.12.003 19146970
Wu C. , Zacchetti B. , Ram A. F. , van Wezel G. P. , Claessen D. , Hae Choi Y. ( 2015 ). Expanding the chemical space for natural products by Aspergillus – Streptomyces co-cultivation and biotransformation . Scientific Reports , 5 , 10868 . 10.1038/srep10868 26040782
Wu M. H. , Huang S. B. , Lee G. B. ( 2010 ). Microfluidic cell culture systems for drug research . Lab on a Chip , 10 , 939 – 956 . 10.1039/b921695b 20358102
Yamanaka K. , Oikawa H. , Ogawa H. O. , Hosono K. , Shinmachi F. , Takano H. , Sakuda S. , Beppu T. , Ueda K. ( 2005 ). Desferrioxamine E produced by Streptomyces griseus stimulates growth and development of Streptomyces tanashiensis . Microbiology , 151 , 2899 – 2905 . 10.1099/mic.0.28139-0 16151202
Yu L. , Ding W. , Ma Z. ( 2016 ). Induced production of cytochalasans in co-culture of marine fungus Aspergillus flavipes and actinomycete Streptomyces sp . Natural Product Research , 30 , 1718 – 1723 . 10.1080/14786419.2015.1136910 26783945
Yu L. , Hu Z. , Ma Z. ( 2015 ). Production of bioactive tryptamine derivatives by co-culture of marine Streptomyces with Bacillus mycoides . Natural Product Research , 29 , 2087 – 2091 . 10.1080/14786419.2015.1005619 25643750
Yu M. , Li Y. , Banakar S. P. , Liu L. , Shao C. , Li Z. , Wang C. ( 2019 ). New metabolites from the co-culture of marine-derived actinomycete Streptomyces rochei MB037 and fungus Rhinocladiella similis 35 . Frontiers in Microbiology , 10 , 915 . 10.3389/fmicb.2019.00915 31134000
Zhang M. M. , Wong F. T. , Wang Y. , Luo S. , Lim Y. H. , Heng E. , Yeo W. L. , Cobb R. E. , Enghiad B. , Ang E. L. , Zhao H. ( 2017 ). CRISPR–Cas9 strategy for activation of silent Streptomyces biosynthetic gene clusters . Nature Chemical Biology , 13 , 607 – 609 . 10.1038/nchembio.2341
Zuck K. M. , Shipley S. , Newman D. J. ( 2011 ). Induced production of N -formyl alkaloids from Aspergillus fumigatus by co-culture with Streptomyces peucetius . Journal of Natural Products , 74 , 1653 – 1657 . 10.1021/np200255f 21667925
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