iLearnPlus: a comprehensive and automated machine-learning platform for nucleic acid and protein sequence analysis, prediction and visualization
文献类型: 外文期刊
第一作者: Chen, Zhen
作者: Chen, Zhen;Zhao, Quanzhi;Zhao, Pei;Li, Chen;Li, Fuyi;Xiang, Dongxu;Daly, Roger J.;Song, Jiangning;Webb, Geoffrey, I;Chen, Yong-Zi;Akutsu, Tatsuya;Kurgan, Lukasz
作者机构:
期刊名称:NUCLEIC ACIDS RESEARCH ( 影响因子:16.971; 五年影响因子:15.542 )
ISSN: 0305-1048
年卷期: 2021 年 49 卷 10 期
页码:
收录情况: SCI
摘要: Sequence-based analysis and prediction are fundamental bioinformatic tasks that facilitate understanding of the sequence(-structure)-function paradigm for DNAs, RNAs and proteins. Rapid accumulation of sequences requires equally pervasive development of new predictive models, which depends on the availability of effective tools that support these efforts. We introduce iLearnPlus, the first machine-learning platform with graphical- and web-based interfaces for the construction of machine-learning pipelines for analysis and predictions using nucleic acid and protein sequences. iLearnPlus provides a comprehensive set of algorithms and automates sequence-based feature extraction and analysis, construction and deployment of models, assessment of predictive performance, statistical analysis, and data visualization; all without programming. iLearnPlus includes a wide range of feature sets which encode information from the input sequences and over twenty machine-learning algorithms that cover several deep-learning approaches, outnumbering the current solutions by a wide margin. Our solution caters to experienced bioinformaticians, given the broad range of options, and biologists with no programming background, given the point-and-click interface and easy-to-follow design process. We showcase iLearnPlus with two case studies concerning prediction of long noncoding RNAs (lncRNAs) from RNA transcripts and prediction of crotonylation sites in protein chains. iLearnPlus is an open-source platform available at https://github.com/Superzchen/iLearnPlus/ with the webserver at http://ilearnplus.erc.monash.edu/.
分类号:
- 相关文献
作者其他论文 更多>>
-
The UDP-glycosyltransferase gene OsUGT706E2 negatively regulates rice tolerance to blast disease and abiotic stresses
作者:Chen, Pingli;Jiang, Liqun;Zhang, Lanlan;Sun, Bingrui;Lv, Shuwei;Zhang, Jing;Yu, Hang;Mao, Xingxue;Fan, Zhilan;Li, Chen;Chen, Wenfeng;Liu, Qing
关键词:UDP-glycosyltransferase; Blast disease; Cold stress; Osmotic stress
-
Unveiling the Roles of LncRNA MOIRAs in Rice Blast Disease Resistance
作者:Liu, Qing;Zhang, Lanlan;Jiang, Liqun;Li, Chen;Xue, Jiao
关键词:rice blast disease; lncRNAs; Magnaporthe oryzae; disease resistance; crop yield
-
Comparative and Phylogenetic Analysis of Six New Complete Chloroplast Genomes of Rubus (Rosaceae)
作者:Shi, Yujie;Chen, Zhen;Zeng, Wei;Jiang, Jingyong;Li, Xiaobai
关键词:Rubus; chloroplast genome; comparative analysis; phylogeny; monophyletic group
-
Rapid detection of pigeon adenovirus 2 using a TaqMan real-time PCR assay
作者:Chen, Cuiteng;Zhu, Chunhua;Chen, Zhen;Cai, Guozhang;Lin, Lin;Zhang, Shizhong;Jiang, Bin;Miao, Zhongwei;Fu, Guanghua;Huang, Yu;Wan, Chunhe
关键词:pigeon adenovirus 2; fiber 2; TaqMan-qPCR assay; YPDS; epidemiological surveillance
-
Root microbiota analysis of Oryza rufipogon and Oryza sativa reveals an orientation selection during the domestication process
作者:Jiang, Liqun;Ke, Da;Sun, Bingrui;Zhang, Jing;Lyu, Shuwei;Yu, Hang;Chen, Pingli;Mao, Xingxue;Liu, Qing;Chen, Wenfeng;Fan, Zhilan;Li, Chen;Huang, Li;Yin, Sanjun;Deng, Yizhen
关键词:root-associated microbiota; Oryza rufipogon; Oryza sativa; ITS and 16S rRNA; diversity analysis
-
Comparative Analysis of Chloroplast Genomes of "Tiantai Wu-Yao" (Lindera aggregata) and Taxa of the Same Genus and Different Genera
作者:Shi, Yujie;Chen, Zhen;Zeng, Wei;Jiang, Jingyong;Li, Xiaobai
关键词:Lauraceae; Lindera; chloroplast genome; comparative analysis; phylogeny
-
Quantifying corn LAI using machine learning and UAV multispectral imaging
作者:Cheng, Qian;Ding, Fan;Xu, Honggang;Li, Zongpeng;Chen, Zhen;Guo, Shuzhe
关键词:Corn; LAI; Unmanned aerial vehicle; Ensemble learning; Water and fertilizer stress