Leveraging Automated Machine Learning for Environmental Data-Driven Genetic Analysis and Genomic Prediction in Maize Hybrids
文献类型: 外文期刊
作者: He, Kunhui;Yu, Tingxi;Gao, Shang;Chen, Shoukun;Li, Liang;Zhang, Xuecai;Huang, Changling;Xu, Yunbi;Wang, Jiankang;Prasanna, Boddupalli M.;Hearne, Sarah;Li, Xinhai;Li, Huihui
作者机构:
关键词: environmental data;genetic analysis;genomic selection;genotype-by-environment interactions;machine learning
期刊名称: ADVANCED SCIENCE
ISSN:
年卷期: 2025 年
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: Genotype, environment, and genotype-by-environment (GxE) interactions play a critical role in shaping crop phenotypes. Here, a large-scale, multi-environment hybrid maize dataset is used to construct and validate an automated machine learning framework that integrates environmental and genomic data for improved accuracy and efficiency in genetic analyses and genomic predictions. Dimensionality-reduced environmental parameters (RD_EPs) aligned with developmental stages are applied to establish linear relationships between RD_EPs and traits to assess the influence of environment on phenotype. Genome-wide association study identifies 539 phenotypic plasticity trait-associated markers (PP-TAMs), 223 environmental stability TAMs (Main-TAMs), and 92 GxE-TAMs, revealing distinct genetic bases for PP and GxE interactions. Training genomic prediction models with both TAMs and RD_EPs increase prediction accuracy by 14.02% to 28.42% over that of genome-wide marker approaches. These results demonstrate the potential of utilizing environmental data for improving genetic analysis and genomic selection, offering a scalable approach for developing climate-adaptive maize varieties.
分类号:
- 相关文献
作者其他论文 更多>>
-
Tight junction protein claudin-1 is a novel internalization factor for swine enteric coronaviruses infection
作者:Li, Zhongyuan;Chen, Jianfei;Chen, Yunyan;Hu, Shouping;Li, Huan;Li, Liang;Xue, Mei;Feng, Li
关键词:coronavirus;claudin-1;internalization;spike protein
-
The newly developed porcine-origin parainfluenza virus PIV5-JS17 serves as an exogenous gene delivery system for swine
作者:Cong, Guangyi;Li, Huan;Li, Liang;Chen, Jianfei;Fu, Fang;Deng, Huiwei;Hu, Zedong;Wang, Linan;Li, Yijing;Xue, Mei;Feng, Li
关键词:parainfluenza virus type 5;gene delivery;viral vector;exogenous gene expression cassette;optimal insertion site
-
Ultra-efficient nucleic acids extraction using solvent-responsive magnetic MXene nanocomposite
作者:Li, Fukai;Wang, Jiale;Li, Kai;Wang, Min;Zhou, Jian;Yang, Mengrui;Zhang, Xiao;Li, Liang
关键词:Nucleic acids;MXene;Magnetic;RT-qPCR;Plant
-
A novel aggregation-induced emission-featured hyperbranched poly(amido amine)s stabilized copper nanoclusters-cerium (III) sensor for detection of thiol flavor compounds in processed meat
作者:Tian, Xiaoxian;Li, Liang;Zheng, Xiaochun;Liu, Bai-Tong;Chen, Li;Wang, Zhenyu;Bi, Yongzhao;Song, Guangchun;Li, Shaobo;Meng, Qingye;Li, Cheng;Zhang, Dequan
关键词:Thiol flavor compounds;Detection;Dual-channel fluorescence;Hyperbranched poly(amido amine);Copper nanocluster
-
Accurate genomic prediction for grain yield and grain moisture content of maize hybrids using multi-environment data
作者:Wang, Jingxin;Liu, Liwei;He, Kunhui;Gebrewahid, Takele Weldu;Gao, Shang;Tian, Qingzhen;Li, Zhanyi;Song, Yiqun;Guo, Yiliang;Li, Yanwei;Cui, Qinxin;Zhang, Luyan;Wang, Jiankang;Huang, Changling;Li, Liang;Guo, Tingting;Li, Huihui
关键词:GBLUP;genomic prediction;genotype-by-environment interaction;grain yield;maize hybrids;multi-environment
-
Phenylpropanoids metabolism: recent insight into stress tolerance and plant development cues
作者:Ninkuu, Vincent;Aluko, Oluwaseun Olayemi;Yan, Jianpei;Zeng, Hongmei;Liu, Guodao;Zhao, Jun;Li, Huihui;Chen, Songbi;Dakora, Felix Dapare
关键词:phenylpropanoids;plant interactions;post-transcription;post-translation;epigenetics modifications;plant development
-
Unveiling Salt Tolerance Mechanisms in Plants: Integrating the KANMB Machine Learning Model With Metabolomic and Transcriptomic Analysis
作者:Chen, Shoukun;Zhang, Hao;Gao, Shuqiang;He, Kunhui;Yu, Tingxi;Gao, Shang;Wang, Jiankang;Li, Huihui
关键词:KANMB;metabolomic;salt tolerance;Spartina alterniflora;transcriptomic