日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Production and characterization of low-cost superfine bacterial cellulose from coculture fermentation of Komagataeibacter oboediens RC30-15 with Saccharomyces bayanus and its antibacterial activities

利用 Komagataeibacter oboediens RC30-15 与 Saccharomyces bayanus 共培养发酵生产和表征低成本超细细菌纤维素及其抗菌活性

Lertsirirut, Punyawee; Tippayasak, Uraiwan; Puangsin, Buapan; Theeragool, Gunjana

Two NADPH-dependent 2-ketogluconate reductases involved in 2-ketogluconate assimilation in Gluconobacter sp. strain CHM43

在葡萄糖杆菌属 CHM43 菌株中,两种 NADPH 依赖性 2-酮葡萄糖酸还原酶参与 2-酮葡萄糖酸的同化作用

Nakashima, Sakura; Matsutani, Minenosuke; Kataoka, Naoya; Adachi, Osao; Yamashita, Riku; Matsushita, Kazunobu; Tippayasak, Uraiwan; Theeragool, Gunjana; Yakushi, Toshiharu

Evidence for ethanol-dependent acetic acid resistance in Acetobacter pasteurianus strain SKU1108

巴氏醋杆菌SKU1108菌株中乙醇依赖性乙酸耐药性的证据

Narimatsu, Akari; Murakami, Kaho; Kataoka, Naoya; Yamashita, Riku; Matsushita, Kazunobu; Matsutani, Minenosuke; Tippayasak, Uraiwan; Theeragool, Gunjana; Yakushi, Toshiharu

Improvement of protein quality and reduction of anti-nutritional factors in soybean meal by solid-state fermentation with Bacillus siamensis MH03

利用暹罗芽孢杆菌MH03进行固态发酵改善豆粕蛋白质质量并降低抗营养因子含量

Chotinu-Kul, Tanawut; Theeragool, Gunjana; Chonudomkul, Duenrut

Implication of amino acid metabolism and cell surface integrity for the thermotolerance mechanism in the thermally adapted acetic acid bacterium Acetobacter pasteurianus TH-3

氨基酸代谢和细胞表面完整性对热适应性醋酸菌巴斯德醋杆菌TH-3耐热机制的影响

Matsumoto, Nami; Matsutani, Minenosuke; Tanimoto, Yoko; Nakanishi, Rina; Tanaka, Shuhei; Kanesaki, Yu; Theeragool, Gunjana; Kataoka, Naoya; Yakushi, Toshiharu; Matsushita, Kazunobu

Complete Genome Sequencing and Comparative Genomic Analysis of the Thermotolerant Acetic Acid Bacterium, Acetobacter pasteurianus SKU1108, Provide a New Insight into Thermotolerance

对耐热醋酸菌巴斯德醋杆菌SKU1108进行全基因组测序和比较基因组分析,为耐热性研究提供了新的见解

Matsutani, Minenosuke; Hirakawa, Hideki; Hiraoka, Eri; Theeragool, Gunjana; Yakushi, Toshiharu; Matsushita, Kazunobu

Bacillus subtilis spoVE gene is transcribed by sigma E-associated RNA polymerase

枯草芽孢杆菌spoVE基因由σE相关RNA聚合酶转录

Miyao, A; Theeragool, G; Takeuchi, M; Kobayashi, Y