文献类型: 外文期刊
作者: Li, Qing;Lai, Jinsheng;Chen, Jian;Li, Lin;Song, Weibin;Xin, Beibei;Zhao, Hainan;Xiao, Yingjie;Tian, Feng;Li, Gang;Liang, Yameng;Liu, Lei;Tan, Baocai;Wang, Baobao;Wu, Yongrui;Yang, Xiaohong;Di, Hong;Ma, Zeyang;Song, Rentao;Zhan, Junpeng;Zhang, Xuan;Qin, Feng;Chen, Yifang;Dai, Mingqiu;Jiang, Caifu;Shi, Yiting;Wang, Yi;Wu, Qi;Yang, Shuhua;Yuan, Lixing;Zhang, Mei;Zhao, Han;Xu, Mingliang;Chen, Jiafa;Ding, Junqiang;Duan, Canxing;Gao, Xiquan;Gou, Mingyue;Lai, Zhibing;Li, Peijin;Wang, Guan-Feng;Weng, Jianfeng;Wu, Jianyu;Wu, Liuji;Yang, Qin;Zhang, Yan;Zhao, Haiming;Zhou, Yu;Wan, Xiangyuan;An, Xueli;Huang, Wei;Jin, Weiwei;Wu, Suowei;Wang, Haiyang;Chen, Huabang;Tang, Jihua;Zhang, Zhaogui;Xie, Chuanxiao;Chen, Shaojiang;Liu, Chenxu;Qi, Xiantao;Wang, Hai;Wang, Xiangfeng;Yan, Jun;Yan, Jianbing
作者机构:
关键词: maize;functional genomics;molecular breeding;genome;yield;quality;abiotic stress;biotic stress;nutrient use efficiency;male sterility;heterosis
期刊名称: SCIENCE CHINA-LIFE SCIENCES
ISSN: 1674-7305
年卷期: 2025 年
页码:
收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版)
摘要: Maize (Zea mays L.) is not only an important cereal crop, but also a model plant species for genetic, cytologic, genomic, and molecular studies. Maize possesses tremendous phenotypic and genetic diversity. During the past few decades, researchers have made significant advances in multiple areas, including the genomic compositions and variations of maize and its ancestors, the genetic and genomic bases of maize domestication and evolution, the genetic architecture of various agronomic traits (yield, quality, biotic and abiotic stress responses, nutrient use efficiency, fertility and heterosis), and the development of novel molecular breeding technologies. In this review, we summarize these research achievements and provide a perspective for future maize research and breeding.
分类号:
- 相关文献
作者其他论文 更多>>
-
Nitrogen Input Alters Root Exudate Profiles and Nitrification Inhibition in Teosinte and Maize
作者:Liu, Shurong;Wang, Yubin;Zhu, Lihong;Im, Jong-Hee;Lee, Dong-Sun;Rhee, Sung-Keun;Yang, Zhen;Jung, Man-Young;Cai, Gaochao;Duan, Canxing
关键词:biological nitrification inhibition (BNI);metabolomics;nitrogen cycling;root exudates;teosinte
-
Nano-Stimulated Immunity: Synthesis and Functionalization of CuS Induce Multilevel Defense Responses against Fusarium in Tomato (Solanum lycopersicum)
作者:Qin, Luyao;Deng, Chaoyi;Boyjoo, Yash;Sharma, Sudhir;Ashraf, Hina;Wang, Meng;Zhao, Lijuan;Sabliov, Cristina M.;Bhaw-Luximon, Archana;Dimkpa, Christian O.;Wang, Yi;Chen, Shibao;White, Jason C.
关键词:CuS nanoparticles;nanobio interaction;plantdisease;gene expression
-
Clumped canopy architecture raises global crop yield and reduces N2O emissions
作者:Yan, Yuli;Dang, Chaoya;Liu, Lei;Wang, Zihao;Chen, Liyuan;Jin, Zhenong;Kuzyakov, Yakov;Chen, Jing M.;Zhou, Feng;Zhou, Yanlian;Tian, Hanqin;Liu, Xuejun;Zhu, Qing;Shang, Ziyin;Jiang, Yu;Gu, Baojing;Ding, Yanfeng;Penuelas, Josep;Wang, Songhan
关键词:
-
Probiotics encapsulated by calcium pectin/chitosan-calcium pectin/sodium alginate-pectin-whey through biofilm-based microencapsulation strategy and their preventive effects on ulcerative colitis
作者:Rao, Yu;Deng, Jia;Zhang, Chengyi;Song, Yunlong;Liu, Lei
关键词:Biofilm-based probiotics microencapsulation;Microencapsulate characteristics;Tolerance properties;Ulcerative colitis;Gut microbiota
-
A genome-wide association study and transcriptome analysis reveal the genetic basis for the Southern corn rust resistance in maize
作者:Wang, Yang;Mu, Chunhua;Li, Xiangdong;Duan, Canxing;Wang, Jianjun;Lu, Xin;Li, Wangshu;Xu, Zhennan;Sun, Shufeng;Zhang, Ao;Zhou, Zhiqiang;Wen, Shenghui;Hao, Zhuanfang;Han, Jienan;Qu, Jianzhou;Du, Wanli;Li, Fenghai;Weng, Jianfeng
关键词:maize;southern corn rust;genome-wide association study;transcriptome
-
Transcriptomic Profiling Reveals Regulatory Pathways of Tomato in Resistance to Verticillium Wilt Triggered by VdR3e
作者:Wang, Xiao;Tan, Qian;Bao, Xiyue;Gong, Xinyue;Zhao, Lingmin;Chen, Jieyin;Liu, Lei;Li, Ran
关键词:tomato;Verticillium wilt;Verticillium dahliae race 3;disease resistance;transcriptome sequencing;immune response
-
RPSR1, a major quantitative trait locus for Pythium stalk rot resistance in maize
作者:He, Shengfeng;Chen, Junbin;Liu, Chuang;Liu, Dandan;Wang, Lei;Duan, Canxing;Zhu, Wangsheng
关键词:Maize;Pythium stalk rot;Quantitative trait loci (QTL);LRR-RLK;ZmPEPR2