Transformative Gene Editing Methods: Precision in Genetically Modified Crops through Trait Modification
Gangadhara Doggalli, Kavya, Oinam Bobochand Singh, Manojkumar H G, Mitali Srivastava, Chaya G B, Abhishek V Karadagi, Vinodh Kumar P N
Journal of Scientific Research and Reports · pp. 615–628 · Published 10 Aug 2024
10.9734/jsrr/2024/v30i82283Abstract
Global climate change and adverse abiotic and biotic factors are significantly limiting agricultural productivity, presenting substantial challenges for crop scientists striving to meet the growing global food demand. The primary aim of plant biology research is to enhance food security by increasing crop yields, improving resistance to stresses, and boosting nutrient content. While traditional breeding has successfully produced high-yielding crop varieties, persistent challenges remain. Advanced biotechnological methods, including overexpression, RNA interference, and genome editing, offer promising solutions to these challenges. Innovations like next-generation sequencing, high-throughput genotyping, precision editing, and space technology have accelerated crop improvement programs. Site-specific nucleases such as TALENs and CRISPR/Cas systems have revolutionized biological research by enabling precise genome modifications essential for agriculture. These technologies facilitate targeted genome modifications, allowing for the development of traits crucial for food security and expediting trait development in key crops. The integration of cutting-edge tools and technologies has significantly advanced these strategies, driving the enhancement of crop species. CRISPR/Cas genome-wide screens open new opportunities for discovering and expanding traits vital for food security. This discussion explores the development and application of various site-specific nuclease systems in plant genome engineering, highlighting their potential to precisely enhance traits, thereby increasing crop productivity and resilience against climate change. Cutting-edge genome-editing technologies, particularly CRISPR/Cas systems, are poised to transform the agricultural landscape and play a pivotal role in ensuring future food security. These technologies offer a vision of a future where agriculture can adapt to changing environmental conditions and meet the growing global demand for food. Advances in genetic engineering, gene editing, and synthetic biology drive crop trait modifications, aiming to enhance productivity, improve nutritional quality, and provide resistance to pests, diseases, and environmental stresses. These innovations are essential for securing a sustainable agricultural future and ensuring the global population has access to sufficient, nutritious food.
Cited by 4
Hassan Rehman Ali, Shayhaq Sayed, Muhammad Farooq · Physical Education, Health and Social Sciences · 2026
S. Anand, Ravindran Lalithambika Visakh, B. K. Shrithar Bhalaji · Plant Breeding · 2025
R. Chavhan, S. G. Jaybhaye, V. Hinge · Frontiers in Genome Editing · 2025
Anu Chaudhary, Rohit Kumar Singh, Tanvi Bisht · Plant-microbiome Interactions for Climate-resilient Agriculture · 2025
Related research
- A Brief Review of Oyster-associated Microbiota — shares topic coverage
- Pivotal Role of High Sensitivity Variant Calls and Confirmation Methods for Next-Generation Sequencing Findings: A Case Report — shares topic coverage
- From Antigens to Alleles: Evolving Strategies in Blood Group Typing — shares topic coverage
- Next-Generation Sequence: A Review on Metagenomic Approach to Discovery of Novel Enzymes from the Soil Environment — shares topic coverage
- Spider Species Identification: Bridging Traditions with Molecular and Deep Learning Approaches — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
4
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.