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Titlebook: Omics of Climate Resilient Small Millets; Ramesh Namdeo Pudake,Amolkumar U. Solanke,P. Rajen Book 2022 The Editor(s) (if applicable) and T

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Genome-Wide Identification and Expression Profiling of Noncoding RNAs in Response to Abiotic Stresshanism(s). This chapter discusses various classes of ncRNAs in small millets and their putative roles in modulating plant responses against drought, salt, cold, etc. Further, databases and online tools pertaining to the identification and analysis of Noncoding RNAs are presented.
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Plant Regeneration and Transgenic Approaches for the Development of Abiotic Stress-Tolerant Small M millets. The production of small millets is mainly affected due to biotic and abiotic factors. Biotic factors include fungal, bacterial, and viral infections whereas drought, salinity, waterlogging, and lodging are the abiotic factors that greatly affect their production and yield. Reliable and rob
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Mining Genes and Markers Across Minor Millets Using Comparative Genomics Approaches,arnyard millet. The availability of whole and draft genome sequences of these millets can be used for further studies, such as SNP identification, next-generation sequencing-based allele discovery, association and linkage map construction, identification of candidate genes for agronomically importan
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Current Status of Bioinformatics Resources of Small Millets,s. There are several areas of research still unexplored in small millets as genomic resources are meager compared to other major cereals. However, considering very high nutritional potential of these crops, there is a need to generate lot of database resources for small millets. In this chapter we h
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Advances in Omics for Enhancing Abiotic Stress Tolerance in Finger Millets,nce of markers in ragi can serve as a platform for genomic selection in finger millet. On the other hand, lots of omics data has been generated from genomics, transcriptomics, proteomics, and a few metabolomics and ionomics studies in this crop. These data are available on various online databases a
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Genome-Editing Approaches for Abiotic Stress Tolerance in Small Millets, need to identify and characterize those novel traits in small millets to generate stress-resistant and high-yielding cultivars, which is not possible by conventional breeding approaches. With the advancement of long sequencing tools and multi-omics techniques, it is now easier to generate larger ge
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