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- W4285123619 endingPage "539" @default.
- W4285123619 startingPage "515" @default.
- W4285123619 abstract "Global climate irregularities and the freshwater shortage have become a serious ecological problem posing threats to global food security. Drought stress threatens every stage of plant development and causes huge crop loss during panicle development and anthesis. Crop productivity and quality are important aspects to ensure food security. Hence, it is essential to understand the knowledge about the response of plants towards the drought stress for improving the existing varieties for high yield under the water-limited conditions to fulfill the growing food demand from an increasing population. Even if conventional and mutation breeding were successfully used in the development in the past for developing desired varieties, due to technological limitations, these methods cannot fulfill the predicted 2050 future global food demands. Further, genetically modified crops are usually not considered owing to regulatory concerns. Due to the complex nature of the drought resistance mechanism which is governed by many QTLs, genes, transporters, stress proteins, transcription factors, hormones, metabolites, and microRNAs, a multipronged approach is required to develop new stress resilience varieties. High-throughput genomics, phenomics, and employing new breeding techniques such as genome editing offer a rapid targeted improvement of the genotype of agriculturally important traits. In the current book chapter, we have summarized the biochemical and genetic aspects of drought tolerance in plants. Furthermore, we also focused on the current technical limitations and future application of the genome-editing systems for crop improvement for sustainable agriculture under water-limited conditions." @default.
- W4285123619 created "2022-07-14" @default.
- W4285123619 creator A5005760448 @default.
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- W4285123619 creator A5076584236 @default.
- W4285123619 date "2022-01-01" @default.
- W4285123619 modified "2023-10-16" @default.
- W4285123619 title "Portfolio of Drought Stress Response and Genetic Enhancement Strategies for Development of Future Drought-Tolerant Crop" @default.
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