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Research Article Open access CC BY 4.0

Cultivating Tomorrow: Harnessing Gene Editing and Silencing for Precision Horticulture

Shubham Jain, G. Ranganna, Priyanka Shivaji Jadhav, Ujjwal Shrivastava, Ankita Sood, Lalu Prasad, Suraj Luthra, Anushi

Journal of Advances in Biology & Biotechnology · pp. 147–160 · Published 9 Feb 2024

10.9734/jabb/2024/v27i1688

Abstract

Precision Horticulture, propelled by gene editing and silencing technologies, emerges as a transformative approach to address the demands of sustainable and efficient crop production. Utilizing CRISPR-Cas9 and RNA interference, horticulturists can precisely modify and regulate plant genomes, ushering in a new era of tailored crops. Gene editing enables the development of crops with heightened resistance to pests, diseases, and improved adaptability. This targeted enhancement, coupled with accelerated breeding processes, results in resilient varieties that meet the challenges of evolving agricultural landscapes. Concurrently, gene silencing technologies allow for the suppression of undesirable traits, extending the shelf life of produce and minimizing post-harvest losses. Integration of these technologies into Precision Horticulture not only optimizes crop traits but also promotes sustainability by reducing reliance on chemical inputs. The approach aligns with environmental conservation, ensuring a more ecologically balanced and resource-efficient cultivation. However, responsible deployment and ethical considerations are paramount for widespread acceptance, highlighting the need for a harmonious balance between technological innovation and ethical utilization in shaping the future of horticulture.

Gene editing development resistance targeted

Cited by 3

RNA Interference and Spray-Induced Gene Silencing (SIGS): A Next-Generation Tool in Horticultural Biotechnology

Nishtha Dixit, N. Kaushik, Maria Fe Andres · BIO Web of Conferences · 2026

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