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

Artificial intelligence based prediction and multi-objective RSM optimization of tectona grandis biodiesel with Elaeocarpus Ganitrus

基于人工智能的预测和多目标响应面法优化柚木与杜英的生物柴油生产

Kannan, V Vinoth; Kanabar, Bhavesh; Gowrishankar, J; Khatibi, Ali; Kamangar, Sarfaraz; Arabi, Amir Ibrahim Ali; Thomai, Pushparaj; Lozanović, Jasmina

A Comprehensive Framework for Parkinson's Disease Detection Using Spiral Drawings and Advanced Machine Learning Techniques

基于螺旋图和先进机器学习技术的帕金森病检测综合框架

Saadh, Mohamed J; Abdulsahib, Waleed K; Doshi, Hardik; Yadav, Anupam; Gowrishankar, J; Kundlas, Mayank; Mansurova, Nargiza; Joshi, Kamal Kant; Sead, Fadhil Feez; Farhood, Bagher

Correction for Nandineni et al., "Osmosensitivity Associated with Insertions in argP (iciA) or glnE in Glutamate Synthase-Deficient Mutants of Escherichia coli"

对 Nandineni 等人的论文“大肠杆菌谷氨酸合成酶缺陷突变体中 argP (iciA) 或 glnE 插入相关的渗透敏感性”的更正

Nandineni, Madhusudan R; Laishram, Rakesh S; Gowrishankar, J

Rho-dependent transcription termination is essential to prevent excessive genome-wide R-loops in Escherichia coli

Rho依赖性转录终止对于防止大肠杆菌基因组中R环的过度形成至关重要。

Leela, J Krishna; Syeda, Aisha H; Anupama, K; Gowrishankar, J

R-loops in bacterial transcription: their causes and consequences

细菌转录中的R环:其成因和后果

Gowrishankar, J; Leela, J Krishna; Anupama, K

A dnaC mutation in Escherichia coli that affects copy number of ColE1-like plasmids and the PriA-PriB (but not Rep-PriC) pathway of chromosomal replication restart

大肠杆菌中影响 ColE1 样质粒拷贝数和染色体复制重启的 PriA-PriB(而非 Rep-PriC)通路的 dnaC 突变

Harinarayanan, R; Gowrishankar, J

Distinct signatures for mutator sensitivity of lacZ reversions and for the spectrum of lacI/lacO forward mutations on the chromosome of nondividing Escherichia coli

非分裂大肠杆菌染色体上 lacZ 回复突变敏感性和 lacI/lacO 正向突变谱的独特特征

Bharatan, Shanti M; Reddy, Manjula; Gowrishankar, J

In vitro properties of RpoS (sigma(S)) mutants of Escherichia coli with postulated N-terminal subregion 1.1 or C-terminal region 4 deleted

大肠杆菌RpoS(σ(S))突变体的体外特性,推测其N端亚区1.1或C端区域4缺失

Gowrishankar, J; Yamamoto, Kaneyoshi; Subbarayan, P R; Ishihama, Akira

An N-terminally truncated RpoS (sigma(S)) protein in Escherichia coli is active in vivo and exhibits normal environmental regulation even in the absence of rpoS transcriptional and translational control signals.

大肠杆菌中 N 端截短的 RpoS (σ(S)) 蛋白在体内具有活性,即使在没有 rpoS 转录和翻译控制信号的情况下,也能表现出正常的环境调节

Rajkumari K, Gowrishankar J

Improvement in K+-limited growth rate associated with expression of the N-terminal fragment of one subunit (KdpA) of the multisubunit Kdp transporter in Escherichia coli

大肠杆菌中多亚基Kdp转运蛋白的一个亚基的N端片段(KdpA)的表达可提高K+限制生长速率

Sardesai, A A; Gowrishankar, J