Session Details

[P006]Poster

Wed. Jul 1, 2026 1:00 PM - 1:50 PM JST
Wed. Jul 1, 2026 4:00 AM - 4:50 AM UTC
Poster 1(4FFoyer+401+402)

[P03-304]Genome-wide CRISPRi screens in Eubacterium limosum elucidates essential genes and enhanced autotrophic phenotypes

○Chanho Park1, Jongoh Shin1, Jiyun Bae1, Seulgi Kang1, Dongwhi Lee1, Hyunwoo Jung2, Minkyu Huh2, Jejin Kim2, Minkoo Jung2, Suhyung Cho1,3, Byung-Kwan Cho1,2,3 (1. Department of Biological Sciences, Korea Advanced Institute of Science and Technology (Korea), 2. Graduate School of Engineering Biology, Korea Advanced Institute of Science and Technology (Korea), 3. KI for the BioCentury, Korea Advanced Institute of Science and Technology (Korea))
Comment()

[P03-306]Benchmarking and Workflow Development for Anaerobic Bacteria in Food Bioproduction

○Maybelle Darlene Kho Go1, Sabrina Tan1, Prakash Pandey1, Ricco Tindjau1, Jan Ron Goh1, In-Young Hwang2, Wen Shan Yew1,3, Yong-Su Jin1,4 (1. Illinois Advanced Research Center at Singapore Ltd (Singapore), 2. Singapore Institute of Technology (Singapore), 3. National University of Singapore (Singapore), 4. University of Illinois at Urbana-Champaign (USA))
Comment()

[P03-308]Transcriptome and Translatome Analysis of FK506 Biosynthesis in Streptomyces tsukubaensis NRRL 18488

○Hyeseong Kim1,5, Namil Lee1,2,3,4,10, Woori Kim1,5, Ji Hun Kim1,5, Yongjae Lee1,5, Soonkyu Hwang1,5, Gahyeon Kim1,5, Qingyun Dan3,4, Matthias Schmidt2,3,4, Yeo Joon Yoon6, Suhyung Cho1,5, Bernhard Palsson7,8, Jay D. Keasling2,3,4,7,9, Byung-Kwan Cho5,10 (1. Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon (Korea), 2. California Institute for Quantitative Biosciences (QB3), University of California, Berkeley, California (USA), 3. Joint BioEnergy Institute, Emeryville, California (USA), 4. Biological Systems and Engineering Division, Lawrence Berkeley National Laboratory, Berkeley, California (USA), 5. KI for the BioCentury, Korea Advanced Institute of Science and Technology, Daejeon (Korea), 6. College of Pharmacy, Seoul National University, Seoul (Korea), 7. Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Lyngby (Denmark), 8. Department of Bioengineering, Department of Pediatrics, University of California San Diego, La Jolla, California (USA), 9. Department of Chemical & Biomolecular Engineering, Department of Bioengineering, University of California, Berkeley, California (USA), 10. Graduate School of Engineering Biology, Korea Advanced Institute of Science and Technology, Daejeon (Korea))
Comment()

[P03-310]Engineering a Vibrio Chassis for Robust 5-Hydroxyectoine Production at Elevated Salinity

○yeeun Mun1, DONG KYU SEO1 (1. Department of Biological Sciences and Biotechnology, Chonnam National University (Korea))
Comment()

[P03-312]Engineering Tunable Translational Coupling Bioparts for Multi-Gene Expression Control in Corynebacterium glutamicum

○Eunseo Jeong1, JISEON LEE1 (1. Department of Biological Sciences and Biotechnology, Chonnam National University (Korea))
Comment()

[P03-314]Genome-wide identification of genetic regulatory elements in Streptomyces tsukubaensis NRRL 18488

○Woori Kim1,2, Namil Lee1,3,4,5,12, Ji Hun Kim1,2, Yongjae Lee1,2, Soonkyu Hwang1,2, Gahyeon Kim1,2, Hyeseong Kim1,2, Qingyun Dan4,5, Matthias Schmidt3,4,5, Yeo Joon Yoon6, Suhyung Cho1,2, Bernhard Palsson7,8,9, Jay D. Keasling3,4,5,7,10,11, Byung-Kwan Cho2,12 (1. Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon (Korea), 2. KI for the BioCentury, Korea Advanced Institute of Science and Technology, Daejeon (Korea), 3. California Institute for Quantitative Biosciences (QB3), University of California, Berkeley, California (USA), 4. Joint BioEnergy Institute, Emeryville, California (USA), 5. Biological Systems and Engineering Division, Lawrence Berkeley National Laboratory, Berkeley, California (USA), 6. College of Pharmacy, Seoul National University, Seoul (Korea), 7. Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Lyngby (Denmark), 8. Department of Bioengineering, University of California San Diego, La Jolla, California (USA), 9. Department of Pediatrics, University of California San Diego, La Jolla, California (USA), 10. Department of Chemical & Biomolecular Engineering, University of California, Berkeley, California (USA), 11. Department of Bioengineering, University of California, Berkeley, California (USA), 12. Graduate School of Engineering Biology, Korea Advanced Institute of Science and Technology, Daejeon (Korea))
Comment()

[P03-316]Enhancing the thermostability of yeast lipase by semi-rational design and its application in hydrolysis of fats

○Carol Ping Han1, Yan Ping Lim1, Elvis Chua1, Albert Xue1, Wen Shan Yew1 (1. National University of Singapore (Singapore))
Comment()

[P03-318]Inter-kingdom adrenergic signaling enables stress hormone sensing and programmable biological output

Santosh Kumar Srivastava1,2,3, ○Guo Wei Foo1,2,3, Nikhil Aggarwal1,2,3, Matthew Wook Chang1,2,3,4 (1. NUS Synthetic Biology for Clinical and Technological Innovation (SynCTI), National University of Singapore (Singapore), 2. Synthetic Biology Translational Research Programme, Yong Loo Lin School of Medicine, National University of Singapore (Singapore), 3. National Centre for Engineering Biology (NCEB) (Singapore), 4. Department of Biochemistry, Yong Loo Lin School of Medicine, National University of Singapore (Singapore))
Comment()

[P03-320]Genome-Integrated Multi-Output Genetic Circuit with Serine Recombinase-Based Output Switching

○Toshiki Saito1, Koko Nakata2, Shunsuke Takahashi3 (1. Materials and Life Sci., Grad. Sch. Adv. Sci. Technol., Tokyo Denki Univ. (Japan), 2. Div. Life Sci. Eng., Grad.Sch. Sci. Eng., Tokyo Denki Univ. (Japan), 3. Div. Life Sci., Sch. Sci. Eng., Tokyo Denki Univ. (Japan))
Comment()

[P03-322]Design of a highly active sequence-specific RNA modification tool with low affinity RNA binding protein

○Azumi Uchida1, Shiroh Futaki2, Miki Imanishi1 (1. Institute for Chemical Research, Kyoto Univ. (Japan), 2. Grad. Sch. Pharm. Sci., Kyoto Univ. (Japan))
Comment()

[P03-324]Development of a high-efficiency genome editing platform in Komagataella phaffii for biopharmaceutical production

○Masaki Matsumoto1, Yoichiro Ito1, Kento Yamada1, Noriko Hashiba1, Keiji Nishida1, Masahiro Tominaga1, Rintaro Sato1, Jun Ishii1 (1. Kobe Univ. (Japan))
Comment()

[P03-326]Dual-Orthogonal CRISPR Screening to Identify Trait-Associated Targets for Engineering Robust Industrial Microorganisms

○Xue Zhang2,1, Kai Li1, Fengwu Bai1, Shen Hu2 (1. Shanghai Jiao Tong University (China), 2. Yangtze Delta Region Institute of Tsinghua University (China))
Comment()

[P03-328]Elucidation and Optimization of Intestinal Metabolism in Escherichia coli Nissle 1917 via Systems Metabolic Engineering

○Jungyeon Kim1 (1. Seoul National University (Korea))
Comment()

[P03-330]Keratin-Marine Adhesive Protein Nanocomposites with Enhanced Adhesive Strength

○Yang Wei1 (1. National Taipei University of Technology/ Chemical Engineering and Biotechnology Department (Taiwan))
Comment()

[P03-332]Small Molecule Hec1 Inhibitors Probe the Hec1/Nek2 Interaction: Disrupting the Complex to Reveal Stability Mechanisms

○Jiann-Jyh Huang1 (1. Institute of BioPharmaceutical Sciences, National Sun Yat-sen University (Taiwan))
Comment()

[P03-334]Synthesis and Biological Evaluation of Novel Protocatechuic Acid Alkyl Esters as Potent Dual-Functional Agents for Skin Whitening and Antioxidant Protection

○Se Won Bae1, Yunseul Park1, Suwan Oh1 (1. Kongju National University (Korea))
Comment()

[P03-336]Tumor-Targeted Hyaluronic Acid/Tannic Acid-Engineered Oxygen Nanogenerators with IR780 Payloads Enable Dual-Mode Glutathione Depletion and Effective Singlet Oxygen Generation for Melanoma Treatment

○Wen-Hsuan Chiang1, Chai-How Hsu1, I-Ju Liu1 (1. National Chung Hsing University (Taiwan))
Comment()

[P03-338]Enzymatic Synthesis and Comparative Study of α- and β-Anomeric Glycosides of 6-Gingerol: Impact on Solubility and Bioactivity

○Jiumn-Yih Wu1, Tzi-Yuan Wang2, Hsiou-Yu Ding3, Han-Ying Lin4, Te-Sheng Chang4 (1. National Quemoy University (Taiwan), 2. Academia Sinica (Taiwan), 3. Chia Nan University of Pharmacy and Science (Taiwan), 4. National University of Tainan (Taiwan))
Comment()

[P03-340]Synergistic Polyvinyl Alcohol/Sodium Alginate Composite Nanofibers: Optimizing the Sustained Release of 5-Fluorouracil

○Yu-Cheng Chang1, Chen-Yu Wu1 (1. Feng Chia University (Taiwan))
Comment()

[P03-342]Meso-Phenyl Substituent Effects on Photophysical and Photodynamic Activity in Cationic BODIPY Photosensitizers

○Arrhon Mae Bongo1, Ho-Joong Kim1 (1. Chosun University (Korea))
Comment()

[P03-344]Heavy-Atom-Enhanced Singlet Oxygen Generation in Cationic 2,6-Halogenated BODIPY Photosensitizers

○yeonghyeon Son1, Ho-Joong Kim1 (1. Chosun university (Korea))
Comment()

[P03-346]Photodynamic therapy with hybrid liposomes including indocyanine green suppresses triple–negative breast cancer in vitro and in vivo

○Junna Takai1 (1. Sojo university (Japan))
Comment()

[P03-348]Development of a nanogel-emulsion system capable of efficient topical delivery to the ocular posterior segment via eye drops

○CHONGZHI CHEN1, Norifumi Kawasaki1, Yasuhiro Ikegami1, Yusuke Sakai1, Hiroyuki Ijima1 (1. Department of Chemical Engineering, Faculty of Engineering, Graduate School of Engineering, Kyushu University (Japan))
Comment()

[P03-350]Controlled antibody modification using engineered microbial transglutaminase fusion proteins via proximity labeling

○Riko Nishioka1, Koki Murozono1, Yoshirou Kawaguchi1, Michio Kimura1, Noriho Kamiya1,2 (1. Department of Applied Chemistry, Graduate School of Engineering, Kyushu University (Japan), 2. Division of Biotechnology, Center for Future Chemistry, Kyushu University (Japan))
Comment()

[P03-352]Metal Ion–Directed Self-Assembly of Minimal HIX Peptides into Tunable Hydrogels

○Asuka Inada1, Kenta Fukumoto1, Takumi Watanabe1, Tatsuya Oshima1 (1. Miyazaki Univ. (Japan))
Comment()

[P03-354]Novel Peptide Binders for the Early Detection of Epithelial Ovarian Cancer in E. coli

○Surya S Nair1, Guhan Jayaraman2, Narayanan M S2, Mayilvahanan Bose2 (1. Doctoral student (India), 2. Professor (India))
Comment()

[P03-356]Promoter-driven and translational tuning strategies enable enhanced aromatic compound biosynthesis in cyanobacterium Synechococcus sp. PCC 7002

○Hanh Duy Dao1, Kenya Tanaka1,2, Tomohisa Hasunuma1,2,3 (1. Engineering Biology Research Center, Kobe University (Japan), 2. Graduate School of Science, Innovation and Technology, Kobe University (Japan), 3. Center for Sustainable Resource Science, RIKEN (Japan))
Comment()

[P03-358]Development of Novel Translation-Enhancing Peptides to Improve recombinant protein productivity in Bacillus subtilis

○Khairil Anwar1, Hideo Nakano1, Teruyo Ojima-Kato1 (1. Graduate School of Bioagricultural Sciences, Nagoya University (Japan))
Comment()

[P03-360]Screening of translation-enhancing peptides (TEPs) in Human cell-free translation system

○Yuma Nishikawa1, Hideo Nakano1, Teruyo Kato1 (1. Grad. Sch. of Bioagr. Sci., Nagoya Univ. (Japan))
Comment()

[P03-362]Development of a whole-genome sequencing method for single fungal spores using droplet microfluidics

○Nevin McCone1, Zikai Xiang2, Kazuki Takahashi3, Masahito Hosokawa1,2,3,4 (1. Grad. Sch. Adv. Sci. Eng., Waseda Univ. (Japan), 2. Research Institute for Science and Engineering, Waseda Univ. (Japan), 3. Institute for Nanoscience and Nanotechnology (Nano & Life Innovation), Waseda Univ. (Japan), 4. Institute for Advanced Biomedical Sciences (Institute for Life Dynamics Research), Waseda Univ. (Japan))
Comment()

[P03-364]Development of functional metabolic cocktail to promote production of useful compounds in soybean roots

○Hiromitsu Tabeta1,2, Masami Hirai2 (1. Grad. Sch. Agr. Sci., Kobe Univ. (Japan), 2. RIKEN CSRS (Japan))
Comment()

[P03-366]Isolation of hydrogen-oxidizing bacteria using a continuous low-hydrogen supply system

○Yuta Michimori1, Naoki Ohashi1, Koudai Shiotsu1, Yuna Ishida1, Yuko Murayama1, Yuusuke Yokooji1, Haruyuki Atomi1 (1. Kyoto Univ. (Japan))
Comment()

[P03-368]Bioproduction from formate in an engineered Escherichia coli via the tetrahydrofolate cycle

○Tatsumi Imada1, Keitaro Tatsumi1, Kyoka Mizuta1, Kinuka Isshiki1, Hiroshi Shimizu1, Yoshihiro Toya1 (1. The University of Osaka (Japan))
Comment()

[P03-370]Increased fumarate titer by relieving arginine feedback inhibition in cyanobacteria

○Haruka Higuchi1, Satoko Ohneda1, Ryosuke Mitsui2, Tomokazu Shirai2, Takashi Osanai1 (1. Meiji Univ. (Japan), 2. RIKEN (Japan))
Comment()

[P03-372]Analyses of growth and stress responses of microalgae under high-temperature and high-pH conditions

○Nagi Morita1, Tsuyoshi Takeshita1,2, Hayato Ozaki1, Mone Ishida1, Yoji Okabe1, Tomoe Kodama1, Yayoi Inui1, Tomoko M Matsunaga1, Kazuhide Tsuneizumi3, Yusuke Kazama3, Tomoko Abe3, Shinichiro Maruyama1, Sachihiro Matsunaga1 (1. Graduate School of Frontier Sciences, The University of Tokyo (Japan), 2. Graduate School of Human and Environmental Studies, Kyoto University (Japan), 3. RIKEN Nishina Center for Accelerator-Based Science (Japan))
Comment()

[P03-374]Development of semi-de novo ATP and NAD+ production cascades using thermophilic enzymes

○Takuma Suzuki1,2, Gladwin Suryatin Alim1,3, Kentaro miyazaki1, Hiroya Tomita1,4, Kohsuke Honda1,4 (1. International Center for Biotechnology, The University of Osaka (Japan), 2. Research Fellow of Japan Society for the Promotion of Science (Japan), 3. Department of Chemistry, University of Basel (Switzerland), 4. Institute for Open and Transdisciplinary Research Initiatives, The University of Osaka (Japan))
Comment()

[P03-376]Growth phase–dependent dynamics of proteome allocation in Escherichia coli

○Atsushi Hatano1, Yuki Soma2, Masahito Hosokawa3, Masaki Matsumoto1 (1. Graduate School of Medical and Dental Sciences, Niigata University (Japan), 2. Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (Japan), 3. Graduate School of Advanced Science and Engineering, Waseda University (Japan))
Comment()

[P03-378]Engineering anaerobic metabolic branch points toward coproduction of wax ester and succinate in Euglena gracilis

○Rikuto Oishi1, Ryunosuke Katayama1, Mitsuhiro Ueda1, Tatsuji Sakamoto1, Masami Nakazawa1 (1. Osaka Metropolitan University (Japan))
Comment()

[P03-380]Novel screening method for environmental pollutant-degrading bacteria via bacteriophage-mediated selective depletion

○Madoka Kashiki1, Hiroaki Iwaki2, Kenji Okano2 (1. Kansai University Graduated School (Japan), 2. Kansai University (Japan))
Comment()

[P03-382]Amino acid deaminase outperforms transaminase in α-keto acid production from amino acids

○Ryo Nasuno1, Hisashi Kudo1, Keiji Fushimi2, Ryota Hidese1, Akihiko Kondo1,2,3, Tomohisa Hasunuma1,2,3 (1. Engineering Biology Research Center, Kobe University (Japan), 2. Graduate School of Science, Technology, and Innovation, Kobe University (Japan), 3. Research Center for Sustainable Resource Science, RIKEN (Japan))
Comment()

[P03-384]Analysis of cyanobacterial D-lactate production mechanism using dynamic metabolomics

○Mami Matsuda1, Tomohisa Hasunuma1 (1. Kobe University (Japan))
Comment()

[P03-386]Heterologous polyhydroxyalkanoate synthase expression enables PHBH production in Rhodobacter capsulatus

○Kako Miura1, Takayuki Shimizu2, Kenya Tanaka1,3,4, Tomohisa Hasunuma1,3,5,6 (1. Grad. Sch. Sci. Technol. Innov., Kobe Univ. (Japan), 2. Div. Nat. Sci., Nara Women’s Univ. (Japan), 3. EGBRC, Kobe Univ. (Japan), 4. Grad. Sch. Eng. Sci., Univ. Osaka (Japan), 5. CSRS, RIKENS (Japan), 6. Grad. Sch. Eng., Dept. Chem. Sci. Eng., Kobe Univ. (Japan))
Comment()

[P03-388]A practical design space for constitutive gene expression defined by promoter, RBS, and replication origin combinations in Escherichia coli

○Hidenobu Hirayama1, Akito Odani1, Yoko Hirono-Hara2, Yoshihiro Toya3, Fumio Matsuda3, Kiyotaka Y. Hara4, Jun Ishii1 (1. Graduate School of Science, Technology and Innovation, Kobe University (Japan), 2. 396Bio Inc., 52-1 Yada, Suruga-ku, Shizuoka (Japan), 3. Graduate School of Information Science and Technology, The University of Osaka (Japan), 4. Graduate Division of Nutritional and Environmental Sciences, University of Shizuoka (Japan))
Comment()

[P03-390]A Promoter-Replacement Library Platform for Genome-Scale Overexpression Screening in Komagataella phaffii

○Yoichiro Ito1, Masahiro Tominaga1, Takahiro Sawada1, Yuri Kyo1, Akihiko Kondo1, Jun Ishii1 (1. Kobe university (Japan))
Comment()

[P03-392]A Modular Expression Architecture for Tunable Single- and Multi-gene Expression in Yeast Using T7 RNA Polymerase

○Eunha Jeon1,3, Sujin Hong1, Seung-Gyun Woo2, Dae-Hee Lee1,3 (1. Synthetic Biology Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Korea (Korea), 2. Department of Biological Science and Biotechnology, Hannam University, Daejeon 34430, Korea (Korea), 3. Graduate School of Engineering Biology, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Korea (Korea))
Comment()

[P03-394]Species-specific microbiome engineering using bacteriophages to control the function of microbiomes

○Tomoki Tanaka1, Ryota Ueki1, Hiroaki Iwaki1, Kenji Okano1 (1. Kansai University (Japan))
Comment()

[P03-396]Engineering of probiotic Escherichia coli Nissle 1917 for 3-hydroxy-3-methylbutyrate production in an antibiotic-and inducer-free expression system

○Alice P. Du1, Jenny J. Hung1, Ethan I. Lan1 (1. National Yang Ming Chiao Tung University (Taiwan))
Comment()

[P03-398]Translational Biotechnology for Population Health: Leveraging RICCA Isothermal Amplification and BioMuRun Robotics for Pandemic Readiness

Manish Biyani1, ○Anjali Pandit1, Yuri Ishii1, Shinsuke Fujiwara1 (1. Kwansei Gakuin University (Japan))
Comment()

[P03-400]Rewiring bacterial surface motility via hybrid histidine kinase mutation enhances colony expansion in Cupriavidus

○ZHIYU XIONG1, Shoko Hirano1, Hiromi Kato1, Kohei Kishida1, Leonardo Stari1, Yoshiyuki Otsubo1, Yuji Nagata1 (1. TOHOKU UNIVERSITY (Japan))
Comment()

[P03-402]Microbial Oxidative Transformation of Polyolefin Plastics by Enzymes Derived from Contaminated Freshwater Environments

○Eun-Woo Choi1,3, Kil Koang Kwon1,2,3, Dae-Hee Lee1,3,4, Seung-Goo Lee1,2,3,4 (1. Synthetic Biology Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea (Korea), 2. Korea Biofoundry, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea (Korea), 3. Department of Biosystems and Bioengineering, KRIBB School of Biotechnology, University of Science and Technology (UST), Daejeon 34113, Republic of Korea (Korea), 4. Graduate School of Engineering Biology, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea (Korea))
Comment()

[P03-404]Establishing a CAST-based genome engineering framework in methanotrophs

○Do-Hyeon Kim1,2, Seong Keun Kim1, Seung-Goo Lee1,2,3, Dae-Hee Lee1,2,3, Hyewon Lee1,3 (1. Synthetic Biology Research Center and Korea Biofoundry, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea (Korea), 2. Graduate School of Engineering Biology, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea (Korea), 3. Department of Biosystems and Bioengineering, KRIBB School of Biotechnology, University of Science and Technology (UST), Daejeon 34113, Republic of Korea (Korea))
Comment()

[P03-406]Integrative and Conjugative Elements (ICEs) from Stutzerimonas and Their Ubiquitous Distribution and Potential Application to Bioremediation

○JUN HIROSE1, Ayako Okumura1, Hiroto Fujinami1 (1. Faculty of Engineering, University of Miyazaki (Japan))
Comment()

[P03-408]The role of the nitrate-responsive two-component system SCO1369–SCO1370 in Streptomyces coelicolor A3(2)

○Chihaya Ito1, Masaki Takei1, Akito Hosoi2, Shinsaku Ito1, Shunsuke Yajima1, Yasuyuki Sasaki1 (1. Tokyo Universityb of Agriculture Faculty of Life Sciences (Japan), 2. NODAI Genome Reserch Center Tokyo Universityb of Agriculture (Japan))
Comment()

[P03-410]Transcriptome Analysis of Acetophenone-Responsive Genes in Streptomyces coelicolor A3(2)

○SHUMA SUZUKI1, Nanami NAKAJIMA1, Tadashi USUKI1, Taishi TUBOUCHI2, Akito HOSOI3, Shinsaku ITO1, Shunsuke YAJIMA1, Yasuyuki SASAKI1 (1. Tokyo Universityb of Agriculture Faculty of Life Sciences (Japan), 2. Graduate School of Medicine, Osaka Metropolitan University (Japan), 3. NODAI Genome Reserch Center Tokyo Universityb of Agriculture (Japan))
Comment()

[P03-412]Elucidation of the Physiological Significance of SCO0168 in Streptomyces coelicolor A3(2)

○SOUICHI TOGAWA1, Sota Honma1, Akito Hosoi2, Shinsaku Ito1, Syunnsuke Yajima1, Yasuyuki Sasaki1 (1. Tokyo University of Agriculture Faculty of Life Sciences (Japan), 2. NODAI Genome Research Center,Tokyo university of Agriculture (Japan))
Comment()

[P03-414]Microscopic Analysis of Antibiotic Resistance Mechanisms in Pseudomonas aeruginosa Biofilms Mediated by Hydrogen Sulfide

○Kana Higuchi1, Nobuhiko Nomura2,3,4,5, Masanori Toyofuku2,3,4, Yoshihide Tokunou2,6 (1. Graduate School of Science and Technology, Tsukuba Univ., Tsukuba, (Japan), 2. Institute of Life and Environmental Sciences, Tsukuba Univ., Tsukuba, (Japan), 3. Microbiology Research Center for Sustainability (MiCS), Tsukuba Univ., Tsukuba, (Japan), 4. Tsukuba Institute for Advanced Research (TIAR), Tsukuba Univ., Tsukuba, (Japan), 5. Life Science Center for Survival Dynamics, Tsukuba Advanced Research Alliance (TARA) , Tsukuba Univ. Tsukuba, (Japan), 6. Research Center for Macromolecules and Biomaterials, National Institute for Material Science (Japan))
Comment()

[P03-416]Neutralizer selection and excess sludge utilization in microaerobic activated sludge system to convert wastewater nitrogen to ammonium

○Tomo Aoyagi1, Akihiko Terada2, Tomoyuki Hori1 (1. National Institute of Advanced Industrial Science and Technology (Japan), 2. Tokyo University of Agriculture and Technology (Japan))
Comment()

[P03-418]Quantitative Analysis of Trace Impurity Effects in Culture Media on Escherichia coli Phenotypes

○Yuki Soma1,2, Masatomo Takahashi2,3, Yoshihiro Izumi2,3, Takeshi Bamba (1. National Institute of Advanced Industrial Science and Technology (Japan), 2. Kyushu University (Japan), 3. Osaka University (Japan))
Comment()

[P03-420]Versatile spatiotemporal control of protein functions via sterically bulky caging for medical applications

○Kosuke Habuchi1, Chiharu Moriyama2, Ryotaro Yamamoto1,2, Akimitsu Okamoto2, Satoshi Yamaguchi1 (1. The University of Osaka (Japan), 2. The University of Tokyo (Japan))
Comment()

[P03-422]Organoid-Based Drug Repurposing Identifies Dual-Action Therapeutics Targeting HBV Replication and HBV-Associated Hepatocellular Carcinoma

○GEONWOO KIM1, JAESU MOON2 (1. Chungnam National University (Korea), 2. Korea Research Institute of Chemical Technology (Korea))
Comment()

[P03-424]Cell caging for photo-regulation of mammalian cell functions

○Satoshi Yamaguchi1,2 (1. The University of Osaka (Japan), 2. The University of Tokyo (Japan))
Comment()

[P03-426]A Scalable 3D Mold-Based Platform for Uniform BO–VO–GBM Fusion Organoids and Drug Evaluation

○Taehyeong Ha1, Kihwan Hwang1,2 (1. SEOUL NATIONAL UNIVERSITY BUNDANG HOSPITAL (Korea), 2. Seoul National University College of Medicine (Korea))
Comment()

[P03-428]Substrate Stiffness Regulates Endocytosis-Related Pathways and Molecular Uptake in Human Induced Pluripotent Stem Cells

○Xi Yuan1, Masanobu Horie1, Yuichi Tsunoyama1 (1. Kyoto University (Japan))
Comment()

[P03-430]Pro-angiogenic activity of cancer cell-derived migrasomes evaluated using a peptide-modified substrate

○Yuka Iwasaki1, Shogo Saito1, Mina Okochi1 (1. Institute of Science Tokyo (Japan))
Comment()

[P03-432]Engineered probiotic bacteria producing an RNA-based TLR7/8 agonist for enhanced cancer immunotherapy

Hyungjin Sun1, ○Jinyoung Kim2, Pyunghwajun Lee1, Sang Woo Seo1,2,3,4,5, Junsang Doh1,4,6,7 (1. Interdisciplinary Program in Bioengineering, Seoul National University (Korea), 2. Department of Chemical and Biological Engineering, Seoul National University (Korea), 3. Institute of Chemical Processes, Seoul National University (Korea), 4. Bio-MAX Institute, Seoul National University (Korea), 5. Institute of Bio Engineering, Seoul National University (Korea), 6. Department of Materials Science and Engineering, Seoul National University (Korea), 7. Research Institute of Advanced Materials, Seoul National University (Korea))
Comment()

[P03-434]Wood-supported Floating Core-shell Hydrogels for Advanced Culture of Mammalian Cells

○Rio Nozaki1, Rie Utoh1, Masumi Yamada1 (1. Chiba University (Japan))
Comment()

[P03-436]From Mycelium to Materials: Scalable Bioprocessing and Application of Mushroom Mycelium for Sustainable Bioproducts

○Hyun-Jae Shin1, Gi-Won Goh1, Moon-Hee Choi1,2 (1. Chosun University (Korea), 2. SumsumBio, Inc. (Korea))
Comment()

[P03-438]Microalgae Biotechnology: Deciphering Artificial Intelligence-Driven and Machine Learning Modelling

○Kuan Shiong Khoo1 (1. Yuan Ze University (Taiwan))
Comment()

[P03-440]Translational Regulation of cell growth and cellulase production in Trichoderma reesei revealed by comparative translatome analysis

○Lan Yang1, Linjing Shen1, Xinqing Zhao1 (1. Shanghai Jiao Tong University (China))
Comment()

[P03-442]Development of Integrated Bio-circular Economy from Food and Energy Estate Waste Fraction to Bio-fuel and Bio-chemicals Using Microorganisms

○Puspita Lisdiyanti1, Chiaki Ogino2 (1. National Research and Innovation Agency of Indonesia (BRIN) (Indonesia), 2. Kobe University (Japan))
Comment()

[P03-444]Metabolic Reprogramming of Steroidal Glycoalkaloid Biosynthesis in Potato via CYP88B1 Genome Editing

○Takaya Inoue1, Shuhei Yasumoto1, Hikaru Seki1,2, Toshiya Muranaka2 (1. Grad. Sch. Eng., Univ. Osaka (Japan), 2. OTRI, Univ. Osaka (Japan))
Comment()

[P03-446]Evaluation of the Tomato spotted wilt virus(TSWV)-based Vectors for Gene Editing in Petunia

○Yu,Qin Sun1, Chien-Hung Chung1, Hsin-Mei Ku1 (1. NATIONAL CHUNG HSING UNIVERSITY (Taiwan))
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[P03-448]Synthetic Biology–Driven Rewiring of Triterpenoid Biosynthesis toward Glycyrrhizin Production in Licorice Hairy Roots

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[P03-450]Plant Extracellular Vesicles as a Platform for Bioactive Molecule Delivery

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