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Author Spotlight: Streamlining Rice Breeding with CRISPR/Cas for Obtaining Optimal Phenotypic and Agronomic Traits
Published on: January 3, 2025
Crop gene regulatory networks for precision breeding in saline environments
Yifan Kan1, Huan Dong2, Yuanlu Ren3
1State Key Laboratory of Forage Breeding-by-Design and Utilization, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China; Huaiyin Institute of Technology, Huaian, 223003, China.
None:
The escalating crisis of soil salinization poses a formidable threat to global agriculture, degrading arable land and jeopardizing food security. Crops under salt stress endure a complex array of challenges, including osmotic imbalance, ionic toxicity, and oxidative damage. Identifying critical genes conferring salt tolerance and elucidating the molecular mechanisms underlying crop salt stress responses are pivotal for harnessing biotechnological advancements in crop breeding. This review provides these core molecular pathways, highlighting key salt-responsive genes and their intricate regulatory networks. Furthermore, we elucidate the utilization of marker-assisted selection (MAS), gene editing, transgenic technology, genomic selection (GS) artificial intelligence (AI)-driven breeding and other cutting-edge biotechnologies in translating salt stress-responsive genes into crop improvement. In conclusion, the integration of molecular insights and advanced breeding tools provides a clear blueprint for the developing of high-yielding, salt-tolerant crop varieties, thereby providing a robust strategy to ensure sustainable food productivity in saline environments.
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