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

Rational design of a polyphenyl octacarboxylate HOF for highly selective separation of benzene over cyclohexane

合理设计聚苯基八羧酸酯HOF用于苯与环己烷的高选择性分离

Liu, Biying; Wang, Ying; She, Miao; Liu, Tianfu; Luo, Manxin; Xie, Yongxin; Liu, Defei; Du, Ziyi; Huang, Liyun; Yuan, Wenbing

Redox engineering of thermophilic fungus Myceliophthora thermophila enhances production of L‑malic acid by consolidated bioprocessing

通过对嗜热真菌 Myceliophthora thermophila 进行氧化还原工程改造,可提高其 L-苹果酸的产量,并促进生物加工的整合。

Zhang, Yuying; Fan, Rui; Wu, Taju; Gu, Shuying; Liu, Defei; Lin, Liangcai; Wang, Min; Li, Jingen; Tian, Chaoguang

MTD: A cloud-based omics database and interactive platform for Myceliophthora thermophila

MTD:一个基于云的组学数据库和嗜热丝孢霉属真菌交互式平台

Dong, Jiacheng; Mao, Zhitao; Li, Haoran; Wang, Ruoyu; Wang, Yutao; Jia, Haokai; Li, Jingen; Liu, Qian; Zhang, Chenglin; Liao, Xiaoping; Liu, Defei; Ma, Hongwu; Tian, Chaoguang

Construction of an enzyme-constrained metabolic network model for Myceliophthora thermophila using machine learning-based k(cat) data

利用基于机器学习的k(cat)数据构建嗜热丝孢菌的酶约束代谢网络模型

Wang, Yutao; Mao, Zhitao; Dong, Jiacheng; Zhang, Peiji; Gao, Qiang; Liu, Defei; Tian, Chaoguang; Ma, Hongwu

The Weimberg pathway: an alternative for Myceliophthora thermophila to utilize D-xylose

魏姆伯格途径:嗜热丝孢霉利用D-木糖的另一种途径

Liu, Defei; Zhang, Yongli; Li, Jingen; Sun, Wenliang; Yao, Yonghong; Tian, Chaoguang

The arabinose transporter MtLat-1 is involved in hemicellulase repression as a pentose transceptor in Myceliophthora thermophila.

阿拉伯糖转运蛋白 MtLat-1 作为嗜热丝孢菌中的戊糖转运受体参与半纤维素酶的抑制

Gu Shuying, Zhao Zhen, Xue Fanglei, Liu Defei, Liu Qian, Li Jingen, Tian Chaoguang

Construction and application of high-quality genome-scale metabolic model of Zymomonas mobilis to guide rational design of microbial cell factories

构建和应用高质量的运动发酵单胞菌基因组规模代谢模型,指导微生物细胞工厂的合理设计

Wu, Yalun; Yuan, Qianqian; Yang, Yongfu; Liu, Defei; Yang, Shihui; Ma, Hongwu

Development of the thermophilic fungus Myceliophthora thermophila into glucoamylase hyperproduction system via the metabolic engineering using improved AsCas12a variants

利用改良的 AsCas12a 变体进行代谢工程,将嗜热真菌 Myceliophthora thermophila 开发为葡糖淀粉酶高产系统

Zhijian Zhu, Manyu Zhang, Dandan Liu, Defei Liu, Tao Sun, Yujing Yang, Jiacheng Dong, Huanhuan Zhai, Wenliang Sun, Qian Liu, Chaoguang Tian

PFK2/FBPase-2 is a potential target for metabolic engineering in the filamentous fungus Myceliophthora thermophila

PFK2/FBPase-2 是丝状真菌嗜热菌代谢工程的潜在靶点

Hu, Die; Zhang, Yongli; Liu, Defei; Wang, Depei; Tian, Chaoguang

MtTRC-1, a Novel Transcription Factor, Regulates Cellulase Production via Directly Modulating the Genes Expression of the Mthac-1 and Mtcbh-1 in Myceliophthora thermophila

MtTRC-1 是一种新型转录因子,它通过直接调节嗜热毁丝霉中的 Mthac-1 和 Mtcbh-1 基因表达来调节纤维素酶的产生

Nan Li, Yin Liu, Defei Liu, Dandan Liu, Chenyang Zhang, Liangcai Lin, Zhijian Zhu, Huiyan Li, Yujie Dai, Xingji Wang, Qian Liu, Chaoguang Tian