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Canada-0-Engineering 公司名錄
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公司新聞:
- 欢迎访问《生物工程学报》编辑部网站! - Chinese Journal of . . .
本研究旨在构建高效表达重组FNIII8-10的毕赤酵母表达体系,采用毕赤酵母系统成功表达重组FNIII8-10,但存在分泌效率低的问题,通过信号肽理性设计与发酵工艺调控相结合的策略显著提高了其分泌表达效率。
- 欢迎访问《生物工程学报》编辑部网站! - Chinese Journal of . . .
欢迎访问《生物工程学报》编辑部网站!
- [Directed evolution of cellobiose 2-epimerase and its . . .
We had engineered Caldicellulosiruptor morganii CE (Cm CE) to construct the enzyme Cm CE D226G for catalyzing the isomerization of lactose to lactulose However, the poor thermostability and catalytic efficiency of Cm CE D226G limits its application under high substrate concentrations To address these issues, we employed directed evolution to improve the catalysis performance of Cm CE D226G
- 万方数据知识服务平台
万方数据学术资源发现获取服务系统[简称:万方智搜] V3 0 证书号:软著登字第11363462号 京ICP证:010071 营业执照 京公网安备11010802020237号 京ICP备08100800号-1 ©北京万方数据股份有限公司 万方数据电子出版社 在线客服 客服电话:4000115888
- lt;br gt; [利用大肠杆菌工程菌株从橙皮素生产新橙皮苷 . . .
该研究为新橙皮苷高产菌株的构建和应用奠定了基础,也为微生物生产其他黄酮苷提供了潜在的选择。 新橙皮苷是一种黄酮苷,广泛用于食品和制药行业。 目前新橙皮苷的生产主要依靠从植物中提取。 微生物发酵作为一种环境友好、高效、经济的方法具有广阔的前景。 在本研究中,我们通过引入来自拟南芥的糖基转移酶UGT73B2、来自葡萄的鼠李糖合酶VvRHM-NRS和来自柑橘的鼠李糖转移酶Cm1,2RhaT,设计并构建了大肠杆菌菌株中新橙皮苷的生物合成途径。 经过模块和尿苷二磷酸(UDP)-葡萄糖合成途径的优化,工程菌株在5 L生物反应器中产生4 64 g L新橙皮苷,橙皮素摩尔转化率为45 8%。 这是迄今为止报道的微生物中新橙皮苷生物合成的最高滴度。
- Baculovirus expression system-based expression of horseshoe crab factor . . .
Baculovirus expression system-based expression of horseshoe crab factor C and its activity April 2025 Chinese Journal of Biotechnology 41 (4):1428-1439 DOI: 10 13345 j cjb 250006
- [Discovery and protein engineering of penicillin G acylase for . . .
In this study, we identified and engineered penicillin G acylase and obtained a highly active mutant Ks PGA M7 (M168F F313G) for the synthesis of cefradine The mutant achieved a conversion rate over 95% in the scaled-up reaction
- BBX transcriptional factors family in plants-a review - 道客巴巴
植物 BBX 转录因子基因家族的研究进展 生物工程学报, 2020, 36 (4): 666–677 Yang N, Cong Q, Cheng LJ BBX transcriptional factors family in plants–a review Chin J Biotech, 2019, 36 (4): 666–677 摘 要: 转录因子在调控植物生长、发育及环境适应性等方面发挥重要作用。
- [Development and characterization of tobacco suspension cell chassis . . .
In conclusion, this study developed NBS-1, a tobacco suspension cell chassis with excellent growth and transformation, high flavonoid content and minimal nicotine content, which has important guiding significance for the development of tobacco suspension cell chassis
- 2023年第39卷第11期文章目次 - Chinese Journal of . . .
DOI: 10 13345 j cjb 230651 CSTR: 32114 14 j cjb 230651 2023, 39 (11):4335-4357 DOI: 10 13345 j cjb 230334 CSTR: 32114 14 j cjb 230334 2023, 39 (11):4358-4375 DOI: 10 13345 j cjb 230085 CSTR: 32114 14 j cjb 230085 2023, 39 (11):4376-4396 DOI: 10 13345 j cjb 230095 CSTR: 32114 14 j cjb 230095 2023, 39 (11):4397-4412
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