Genetic Engineering Technologies for Improving Crop Yield and Quality

被引:6
作者
Ye, Runle [1 ]
Yang, Xi [1 ]
Rao, Yuchun [1 ]
机构
[1] Zhejiang Normal Univ, Coll Chem & Life Sci, Jinhua 321004, Zhejiang, Peoples R China
来源
AGRONOMY-BASEL | 2022年 / 12卷 / 04期
基金
中国国家自然科学基金;
关键词
genetic engineering; transgenic technology; gene editing technology; crop quality and yield; HIGHLY EFFICIENT; DNA RECOGNITION; GENOMIC DNA; BASE; CRISPR; RNA; SPECIFICITY; PLANTS; GUIDE; TRANSFORMATION;
D O I
10.3390/agronomy12040759
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Genetic engineering refers to the specific molecular biological modification of DNA sequences. With the rapid development of genetic engineering methods, especially the breakthroughs in guiding endonuclease technology, gene remodeling of crops has become simpler, more precise, and efficient. Genetic engineering techniques can be used to develop crops with superior traits such as high trace elements and high plant nutrients, providing an important tool to meet the needs of nearly 7.6 billion people in the world for crop yield and quality and to achieve sustainable development. This review first introduces transgenic technology and gene editing technology and analyzes the achievements in improving the efficiency of genetic transformation and regeneration in recent years. Then, it focuses on reviewing the applications of related genetic engineering technologies in improving the yield and quality of rice, maize, and wheat. In addition, the problems of genetic engineering technology in crop applications are discussed. The aim is to provide a reference for research on the development of genetic engineering technologies and the improvement of crop yield and quality.
引用
收藏
页数:15
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共 112 条
  • [1] Programmable deletion, replacement, integration and inversion of large DNA sequences with twin prime editing
    Anzalone, Andrew, V
    Gao, Xin D.
    Podracky, Christopher J.
    Nelson, Andrew T.
    Koblan, Luke W.
    Raguram, Aditya
    Levy, Jonathan M.
    Mercer, Jaron A. M.
    Liu, David R.
    [J]. NATURE BIOTECHNOLOGY, 2022, 40 (05) : 731 - +
  • [2] Search-and-replace genome editing without double-strand breaks or donor DNA
    Anzalone, Andrew V.
    Randolph, Peyton B.
    Davis, Jessie R.
    Sousa, Alexander A.
    Koblan, Luke W.
    Levy, Jonathan M.
    Chen, Peter J.
    Wilson, Christopher
    Newby, Gregory A.
    Raguram, Aditya
    Liu, David R.
    [J]. NATURE, 2019, 576 (7785) : 149 - +
  • [3] Precise insertion and guided editing of higher plant genomes using Cpf1 CRISPR nucleases
    Begemann, Matthew B.
    Gray, Benjamin N.
    January, Emma
    Gordon, Gina C.
    He, Yonghua
    Liu, Haijun
    Wu, Xingrong
    Brutnell, Thomas P.
    Mockler, Todd C.
    Oufattole, Mohammed
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [4] Xanthomonas AvrBs3 Family-Type III Effectors: Discovery and Function
    Boch, Jens
    Bonas, Ulla
    [J]. ANNUAL REVIEW OF PHYTOPATHOLOGY, VOL 48, 2010, 48 : 419 - 436
  • [5] Breaking the Code of DNA Binding Specificity of TAL-Type III Effectors
    Boch, Jens
    Scholze, Heidi
    Schornack, Sebastian
    Landgraf, Angelika
    Hahn, Simone
    Kay, Sabine
    Lahaye, Thomas
    Nickstadt, Anja
    Bonas, Ulla
    [J]. SCIENCE, 2009, 326 (5959) : 1509 - 1512
  • [6] Iterative capped assembly: rapid and scalable synthesis of repeat-module DNA such as TAL effectors from individual monomers
    Briggs, Adrian W.
    Rios, Xavier
    Chari, Raj
    Yang, Luhan
    Zhang, Feng
    Mali, Prashant
    Church, George M.
    [J]. NUCLEIC ACIDS RESEARCH, 2012, 40 (15) : e117
  • [7] [蔡元星 Cai Yuanxing], 2018, [中国细胞生物学学报, Chinese Journal of Cell Biology], V40, P252
  • [8] Genome Engineering With Zinc-Finger Nucleases
    Carroll, Dana
    [J]. GENETICS, 2011, 188 (04) : 773 - 782
  • [9] Genome editing: a robust technology for human stem cells
    Chandrasekaran, Arun Pandian
    Song, Minjung
    Ramakrishna, Suresh
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2017, 74 (18) : 3335 - 3346
  • [10] Minimal PAM specificity of a highly similar SpCas9 ortholog
    Chatterjee, Pranam
    Jakimo, Noah
    Jacobson, Joseph M.
    [J]. SCIENCE ADVANCES, 2018, 4 (10):