<p>Maize (<i>Zea mays</i> 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.</p>

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Decades’ progress and prospects on maize functional genomics and molecular breeding

  • Qing Li,
  • Jinsheng Lai,
  • Jian Chen,
  • Lin Li,
  • Weibin Song,
  • Beibei Xin,
  • Hainan Zhao,
  • Yingjie Xiao,
  • Feng Tian,
  • Gang Li,
  • Yameng Liang,
  • Lei Liu,
  • Baocai Tan,
  • Baobao Wang,
  • Yongrui Wu,
  • Xiaohong Yang,
  • Hong Di,
  • Zeyang Ma,
  • Rentao Song,
  • Junpeng Zhan,
  • Xuan Zhang,
  • Feng Qin,
  • Yifang Chen,
  • Mingqiu Dai,
  • Caifu Jiang,
  • Yiting Shi,
  • Yi Wang,
  • Qi Wu,
  • Shuhua Yang,
  • Lixing Yuan,
  • Mei Zhang,
  • Han Zhao,
  • Mingliang Xu,
  • Jiafa Chen,
  • Junqiang Ding,
  • Canxing Duan,
  • Xiquan Gao,
  • Mingyue Gou,
  • Zhibing Lai,
  • Peijin Li,
  • Guan-Feng Wang,
  • Jianfeng Weng,
  • Jianyu Wu,
  • Liuji Wu,
  • Qin Yang,
  • Yan Zhang,
  • Haiming Zhao,
  • Yu Zhou,
  • Xiangyuan Wan,
  • Xueli An,
  • Wei Huang,
  • Weiwei Jin,
  • Suowei Wu,
  • Haiyang Wang,
  • Huabang Chen,
  • Jihua Tang,
  • Zhaogui Zhang,
  • Chuanxiao Xie,
  • Shaojiang Chen,
  • Chenxu Liu,
  • Xiantao Qi,
  • Hai Wang,
  • Xiangfeng Wang,
  • Jun Yan,
  • Jianbing Yan

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.