期刊文献+

玉米耐旱性的遗传机理及分子育种研究进展 被引量:4

Research Progress on Genetic Mechanism and Molecular Breeding of Drought Tolerance in Maize
在线阅读 下载PDF
导出
摘要 干旱是影响玉米生产的重要逆境因子,提高玉米品种的耐旱性可以有效降低产量损失。该文概述了利用连锁分析、关联分析、转录组学、蛋白质组学等技术进行的玉米耐旱性遗传机理研究,并对分子标记辅助选择、转基因和基因编辑等现阶段主要的分子育种方法和发展前景进行了论述,以期进一步推动玉米耐旱性研究。 Drought is an important stress factor affecting maize production.Improving drought tolerance of maize varieties can effectively reduce yield loss.In order to promote the further research,studies on the genetic mechanism of maize drought tolerance using linkage analysis,association analysis,transcriptomics and proteomics were reviewed,and the main methods and prospects of molecular breeding were discussed.
作者 贾钰莹 孙成韬 于佳霖 刘晓丽 JIA Yu-ying(Maize Research Institute,Liaoning Academy of Agricultural Sciences,Shenyang,Liaoning 110161)
出处 《园艺与种苗》 CAS 2019年第12期37-39,共3页 Horticulture & Seed
基金 辽宁省自然科学基金(20170520432) 国家重点研发计划项目(2017YFD0300700) 国家重点研发计划项目(2017YFD0300701-A01B)
关键词 玉米 干旱 遗传机理 分子育种 Maize Drought Genetic mechanism Molecular breeding
  • 相关文献

参考文献2

二级参考文献25

  • 1罗武庭.DJ—2可变矩形电子束曝光机的DMA驱动程序[J].LSI制造与测试,1989,10(4):20-26. 被引量:373
  • 2Lockhart D J, Winzeler EA. Genomics, gene expression and DNA arrays. Nature, 2000, 405(6788): 827-836.
  • 3Magi A, Benelli M, Gozzini A, Girolami F, Torricelli F, Brandi ML. Bioinformatics for next generation sequencing data. Genes, 2010, 1(2): 294-307.
  • 4Shendure J, Ji H. Next-generation DNA sequencing. Nat Biotechnol, 2008, 26(10): 1135-1145.
  • 5Metzker ML. Sequencing technologies-the next generation. Nat Rev Genet, 2010, 11(1): 31~46.
  • 6Margulies M, Egholm M, Altman WE, Attiya S, Bader JS, Bemben LA, Berka J, Braverman MS, Chen YJ, Chen ZT, Dewell SB, Du L, Fierro JM, Gomes XV, Godwin BC, He W, Helgesen S, Ho CH, Irzyk GP, Jando SC, Alenquer ML, Jarvie TP, Jirage KB, Kim JB, Knight JR, Lanza JR, Lea- mon JH, Lefkowitz SM, Lei M, Li J, Lohman KL, Lu H, Makhijani VB, McDade KE, McKenna MP, Myers EW, Nickerson E, Nobile JR, Plant R, Puc BP, Ronan MT, Roth GT, Sarkis GJ, Simons JF, Simpson JW, Srinivasan M, Tartaro KR, Tomasz A, Vogt KA, Volkmer GA, Wang SH, Wang Y, Weiner MP, Yu PG, Begley RF, Rothberg JM. Genome sequencing in microfabricated high-density pico- litre reactors. Nature, 2005, 437(7057): 376-380.
  • 7Ozsolak F, Milos PM. RNA sequencing: advances, chal- lenges and opportunities. Nat Rev Genet, 2011, 12(2): 87-98.
  • 8Au KF, Jiang H, Lin L, Xing Y, Wong WH. Detection of splice junctions from paired-end RNA-seq data by SpliceMap. Nucleic Acids Res, 2010, 38(14): 4570-4578.
  • 9Edgren H, Murumagi A, Kangaspeska S, Nicorici D, Hongisto V, Kleivi K, Rye IH, Nyberg S, Wolf M, Borre- sen-Dale AL, Kallioniemi O. Identification of fusion genes in breast cancer by paired-end RNA-sequencing. Genome Biol, 2011, 12(1): R6.
  • 10Wilhelm BT, Marguerat S, Watt S, Schubert F, Wood V,Goodhead I, Penkett C J, JaneRogers J, B~ihler J. Dynamic repertoire of a eukaryotic transcriptome surveyed at sin- gle-nucleotide resolution. Nature, 2008, 453(7199): 1239- 1243.

共引文献231

同被引文献25

引证文献4

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部