S. Saranyadevi, Selva Kumar T
The integrated nanotechnology and plant genome editing are opening novel prospects for precision-based agriculture and ecological sustainability. Though some recent works highlighted advances in the two areas, there is still a gap in extensive reviews to relate emerging nanotechnologies, especially those influenced by quantum biology, to practical uses in plant systems. This review fills the gap by addressing how next-generation nanomaterials and nano-enabled tools are transforming plant genome editing and environmental genomics. Recent advances in nanoscale delivery systems, such as biodegradable nanoparticles and nano-biohybrid systems, enhance the specificity and targeting of gene editing. The development of real-time gene expression monitoring with nanosensors and the application of programmable nano-chips also contribute to controlled and adaptive crop engineering. The review discusses modification strategies of the epigenome, including targeted DNA methylation and histone modification, facilitating long-term crop adaptation. It also explores nano-enabled strategies in plant-microbe interactions, phytoremediation, and soil health. Additionally, optogenetic devices and light-dependent nanodevices serve as novel techniques for spatially targeted genome regulation. Together with these technological improvements, the development of environmentally responsible nanomaterials could be used safely and sustainably. Lastly, this review describes major ethical, legal, and ecological issues related to advanced genome editing technologies.
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title={Next generation nanotechnology in plant genome editing for susta 2026 Next M},
author={S. Saranyadevi and Selva Kumar T},
year={2026},
language={en}
}TY - JOUR TI - Next generation nanotechnology in plant genome editing for susta 2026 Next M AU - S. Saranyadevi AU - Selva Kumar T PY - 2026 LA - en ER -
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