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High-throughput technologies are those that allow the generation of large-scale data related to omic analysis (such as genomics, transcriptomics, proteomics, phenomics, and metabolomics). Currently, the development and use of these technologies has gone hand-in-hand with the development of bioinformatics tools, which have allowed the integration of omics-based data to understand crucial knowledge about the molecular systems that underlie the various functions of the plants. In recent years, there has been a huge development in the field of high-throughput biology, which is attributed to an era of tech startups. Genomics studies in plants, for instance, have benefited from advances in high-th...
Billions of plants species in our planet have been facing various kinds of abiotic and biotic stresses which are ultimately leading to severe ecological damages as well as severe food insecurity challenges. Depending on the regions, abiotic stresses refer to extremely high and low temperatures, ultraviolet radiation, high or low light, salinity, floods, drought, heavy metals, etc., while biotic stresses refer to damages caused by insects, herbivores, nematodes, fungi, bacteria, or weeds. These stresses have been further accelerating and even becoming worse every day under the influence of unpredictable drastic climate change events. In order to cope with such stresses, varieties of plants an...
Horticultural crops are an excellent source of vitamins, antioxidants, and fibers that play an important role in human health. The discovery of modern genomic tools, the continuous generation of genomic data, and the application of comparative and functional genomics are high importance innovations with numerous applications in crop breeding. The utilization of all these new techniques in combination with the analysis of genomic data using bioinformatics tools, contribute to a better understanding of the function of various agronomic traits of interest as well as horticultural crops breeding. Over the last few years, novel genome editing tools such as the CRISPR-Cas9, have been developed and revolutionized molecular technologies due to their simplicity, high efficiency, and specificity.