CRISPR-Cas technology: an emerging opportunity for precise identification of diseases in plants

被引:0
|
作者
Shanmugaraj, C. [1 ]
Kumar, H. M. Akshay [2 ]
Jaiganesh, V. [3 ]
Biswas, M. K. [4 ]
Gangaraj, R. [5 ]
机构
[1] ICAR Indian Inst Hort Res IIHR, Hessaraghatta Lake Post, Bengaluru 560089, India
[2] ICAR Indian Agr Res Inst IARI, Dhemaji 787035, Assam, India
[3] TNAU Citrus Res Stn CRS, Tirunelveli 627951, Tamil Nadu, India
[4] Visva Bharati Univ, Palli Siksha Bhavana, Sriniketan 731235, West Bengal, India
[5] ICAR Indian Inst Vegetable Res, Reg Res Stn, Sargatia 274406, India
关键词
CRISPR-Cas diagnostics; Plant pathogens; Detection techniques; Disease management; Sustainable agriculture; NUCLEIC-ACID DETECTION; AMPLIFICATION; CRISPR-CAS12A; ENDONUCLEASE; DIAGNOSTICS; DEFENSE; ASSAY;
D O I
10.1007/s41348-024-01025-6
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Plant diseases pose a major risk to worldwide agriculture, negatively impacting crop production and economic stability. The introduction of Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) associated with Cas proteins has marked a new phase in identifying plant pathogens, providing unmatched accuracy, sensitivity, and specificity. This review delves into the effect of CRISPR-Cas technologies on agricultural disease management strategies. Techniques like SHERLOCK, DETECTR, and HOLMES demonstrate the potential for swift and on-site pathogen identification, merging high sensitivity with precision. Moreover, combining assays such as Recombinase Polymerase Amplification (RPA) and Loop-mediated Isothermal Amplification (LAMP) with CRISPR/Cas improves diagnostic capabilities, making them ideal for field use due to their rapidity and cost-efficiency. These advancements indicate a transition toward sustainable agriculture by enhancing the ability to diagnose plant diseases more effectively. Utilizing CRISPR-Cas systems for detecting plant diseases not only strengthens global food security but also opens avenues for innovative, sustainable disease management practices in agriculture.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] CRISPR-Cas Technology: Emerging Applications in Clinical Microbiology and Infectious Diseases
    Serajian, Sahar
    Ahmadpour, Ehsan
    Oliveira, Sonia M. Rodrigues
    Pereira, Maria de Lourdes
    Heidarzadeh, Siamak
    PHARMACEUTICALS, 2021, 14 (11)
  • [2] Novel approaches of crispr-cas technology in airway diseases
    Chinnapaiyan, S.
    Dutta, R.K.
    Unwalla, H.J.
    Critical Reviews in Biomedical Engineering, 2020, 48 (03) : 169 - 176
  • [3] The emerging patent landscape of CRISPR-Cas gene editing technology
    Egelie, Knut J.
    Graff, Gregory D.
    Strand, Sabina P.
    Johansen, Berit
    NATURE BIOTECHNOLOGY, 2016, 34 (10) : 1025 - 1032
  • [4] Establishing CRISPR-Cas Technology in Pakistan
    Naeem, Mohammad Abdul
    CRISPR JOURNAL, 2021, 4 (04): : 467 - 468
  • [5] CRISPR-Cas Technology in Plant Science
    Peter M. Rogowsky
    Potato Research, 2017, 60 : 353 - 360
  • [6] CRISPR-Cas: A continuously evolving technology
    Kumari, Sarita
    Singh, Sumeet Kumar
    Sharma, Vinay Kumar
    Kumar, Rajesh
    Mathur, Manas
    Upadhyay, Tarun Kumar
    Prajapat, Rakesh Kumar
    INDIAN JOURNAL OF AGRICULTURAL SCIENCES, 2021, 91 (09): : 1274 - 1279
  • [7] CRISPR-Cas Technology in Plant Science
    Rogowsky, Peter M.
    POTATO RESEARCH, 2017, 60 (3-4) : 353 - 360
  • [8] CRISPR-Cas Technology in Viral Therapeutics
    Woodland, David L.
    VIRAL IMMUNOLOGY, 2017, 30 (08) : 547 - 547
  • [9] CRISPR-Cas Technology In and Out of the Classroom
    Dahlberg, Lina
    Carmona, Anna M. Groat
    CRISPR JOURNAL, 2018, 1 (02): : 107 - 114
  • [10] CRISPR-Cas gene editing technology and its application prospect in medicinal plants
    Miaoxian Guo
    Hongyu Chen
    Shuting Dong
    Zheng Zhang
    Hongmei Luo
    Chinese Medicine, 17