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

Time Series Data Mining for Linking the Shape of Bacterial Growth Curves to Biological Functions

利用时间序列数据挖掘将细菌生长曲线的形状与生物学功能联系起来

Lao, Zehui; Ying, Bei-Wen

Population Dynamics of Escherichia coli Growing under Chemically Defined Media

在化学成分明确的培养基中生长的大肠杆菌种群动态

Aida, Honoka; Ying, Bei-Wen

Data-driven analysis reveals distinct genomic and environmental contributions to bacterial growth curves

数据驱动分析揭示了基因组和环境因素对细菌生长曲线的不同影响

Gong, Jiarun; Ying, Bei-Wen

Experimental evolution for the recovery of growth loss due to genome reduction

实验进化用于恢复因基因组缩减导致的生长损失

Hitomi, Kenya; Ishii, Yoichiro; Ying, Bei-Wen

Data-driven discovery of the interplay between genetic and environmental factors in bacterial growth

利用数据驱动方法发现细菌生长过程中遗传因素和环境因素之间的相互作用

Aida, Honoka; Ying, Bei-Wen

Machine learning-assisted medium optimization revealed the discriminated strategies for improved production of the foreign and native metabolites

机器学习辅助的培养基优化揭示了提高外源和内源代谢物产量的区分策略。

Aida, Honoka; Uchida, Keisuke; Nagai, Motoki; Hashizume, Takamasa; Masuo, Shunsuke; Takaya, Naoki; Ying, Bei-Wen

Efforts to Minimise the Bacterial Genome as a Free-Living Growing System

努力将细菌基因组最小化为自由生活生长系统

Aida, Honoka; Ying, Bei-Wen

Primordial mimicry induces morphological change in Escherichia coli

原始拟态诱导大肠杆菌形态变化

Lu, Hui; Aida, Honoka; Kurokawa, Masaomi; Chen, Feng; Xia, Yang; Xu, Jian; Li, Kai; Ying, Bei-Wen; Yomo, Tetsuya

Experimental Evolution Expands the Breadth of Adaptation to an Environmental Gradient Correlated With Genome Reduction

实验进化扩展了对环境梯度适应的范围,这与基因组缩减相关

Kurokawa, Masaomi; Nishimura, Issei; Ying, Bei-Wen

Correlation between the spatial distribution and colony size was common for monogenetic bacteria in laboratory conditions

在实验室条件下,单殖细菌的空间分布与菌落大小之间通常存在相关性。

Xue, Heng; Kurokawa, Masaomi; Ying, Bei-Wen